Summer 2026
Winter 2026, Pages 1-154

English Standard Summary Title: J. Anim. Pro.

Publish Order: Quarterly Journal of Scientific Research

 Publication Language: Persian with English Abstract

Average Review Time : 5 Weeks

Acceptance Rate: 47%

Initial review timeframe: 7 days

Type of Review: Double Blind

Publication status: Open access to all articles

 

  • The Journal of Animal Production is one of the leading journals in the field of animal and poultry sciences in the country. Since 2010, this journal publishes research and review papers in the areas of animal and poultry science, bees, feed technology and livestock products in Persian with a extended abstract in English and Persian.

 

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Genetic analysis of birth weight of Holstein cows in Isfahan province and its association with future productive and reproductive traits

Pages 155-165

https://doi.org/10.22059/jap.2026.407593.623888

Hossein Khoshroo, Hossein Naeemipour, Seyed Homayon Farhangfar, Hadi Sarir

Abstract Objective: Birth weight is expected to be correlated with future productive and reproductive traits. Several studies have examined the association between birth weight (BW) of Holstein cows and their productive and reproductive traits. In fact, BW is expected to be associated with some of productive and reproductive traits. The main objective of this research was to conduct a genetic analysis of BW and to evaluate its association with some future productive and reproductive traits of Holstein cows in Isfahan province. Method: A dataset of 51,427 records of dairy cows in 82 herds of Isfahan province during the calving years from 2001 to 2023 was used in this research. The considered traits were BW, 305-day milk yield (MY), 305-day fat yield (FY), 305-day protein yield (PY), days to first service (DFS), days open (DO), number of services per conception (NSPC), and age at first calving (AFC). Genetic analysis was performed using a series of bivariate animal models. Fixed effects of herd, calving year, calving season, and age at first calving, along with the random additive genetic effect were included in the model. The model was fitted to the data using DMU software. Results: Mean BW (± SD) of female calves was 39.05± 4.52 kg. The mean values for MY, FY, and PY traits were 11432± 1731, 324.09± 90.63, and 301.26 ± 68.74 kg, respectively. The mean values for reproductive traits, including DO, DFS, AFC, and NSPC were 122.8 ± 45.35, 68.55± 21.09, 726± 59.19 day, and 1.64± 0.95, respectively. Heritability estimates for BW of female calves, MY, FY, and PY were 0.24, 0.26, 0.36, and 0.39, respectively while the heritability estimates for AFC, NSPC, DFS , and DO were 0.15, 0.08, 0.08, 0.02, and 0.02, respectively. Overall, BW of calves had low phenotypic and genetic correlations with their future productive and reproductive traits. Phenotypic and genetic trends for BW were found to be -0.26 ± 0.03 kg per year and 0.024 ± 0.005 kg per year, respectively, which were statistically significant (P < 0.01). The findings of the present research indicated that one kilogram increase in BW of Holstein calves was associated with an increase of 33.77 kg, 0.79 kg, and 0.814 kg for MY, FT, and PY, respectively. Additionally, DFS, DO, AFC, and NSPC in the first lactation period increased by 0.151, 0.115, 0.992 day, and 0.155, respectively. Conclusion: Current research findings showed that BW gain in female calves is predicted to improve productive and reproductive traits in dairy cows. The positive genetic trend for BW suggests that BW genetically increased over the time of period, which implies that this trait has been selected directly or indirectly over the time of period. The moderate heritability estimate of BW suggests that rapid genetic change of BW could affect economically important traits, and hence, a multiple trait selection index is required to design a balanced breeding program for the economic traits.

The effect of the ratio of whole crop barley to forage pea on fermentation quality and digestibility of whole barley-pea mixed crop silage

Pages 167-180

https://doi.org/10.22059/jap.2026.399215.623860

Faezeh Khani, Ali Assadi-Alamouti, Behzad Khorrami

Abstract Objective: Due to increasingly adverse climatic conditions, livestock producers in Iran are experiencing challenges with forage supply. Barley (Hordeum vulgare) is a suitable cereal crop for intercropping with forage pea (Pisum arvense L.), as it can supply a significant portion of the protein demand for growing livestock and dairy cows with a reasonable protein yield per hectare. Given the benefits of legume-cereal forage intercropping and the national trend toward winter cropping for forage production, the legume-cereal ratio in forage crop mixtures is critical to achieving maximum agronomic performance, water use efficiency, nutritional value, and livestock utilization. Thus, the objective of this study was to evaluate the impact of various proportions of whole-crop barley to forage pea on silage fermentation quality and digestibility.  Methods: Whole crop barley and forage pea were harvested at specific growth stages (early dough stage for barley and mid-flowering to late flowering/early pod formation for forage pea). The experiment comprised four treatments: 1- 100% barley silage, 2- 80% barley+ 20% forage pea silage, 3- 70% barley+ 30% forage pea silage, and 4- 60% barley+ 40% forage pea silage, each with three replicates in a completely randomized design.  Result: Increasing the proportion of forage pea led to a reduction in dry matter and an increase in pH, and significantly increased crude protein and crude ash contents, while not affecting the values of crude fat, acid detergent fiber, neutral detergent fiber, lignin, and acid detergent insoluble nitrogen. Also, increasing the proportion of forage pea significantly elevated the percentage of ammonia nitrogen in the silage. The acetic, propionic, and butyric acid concentrations of all silages were not significantly different and were within the range of well-fermented silages. A mixed silage of 20% forage pea had a higher gas production volume, organic matter digestibility, metabolizable energy, and short-chain fatty acids compared with forage barley ensiled as the sole crop (P<0.05).  Conclusions: The results showed that the addition of forage pea to barley silage increased crude protein and reduced fiber, while maintaining the dry matter and water-soluble carbohydrates advantage of barley forage. This method may be an economically viable method in hot climates to enhance feed quality, reduce costs, and be environmentally sustainable. The results of the present study indicated that a 20% inclusion level of forage pea mixed with barley forage is recommended; however, the optimal intercropping ratio of barley-pea forage will be confirmed by further research on the animal performance in conjunction with the results of the agronomic performance of the mixed-crop silages.

The effects of probiotic and biochar supplementation on performance, nutrient digestibility and blood parameters in Holstein suckling calves

Pages 167-180

https://doi.org/10.22059/jap.2026.405678.623878

Mahdi Nasrabadi, Khalil zaboli

Abstract Objective: The suckling calf is particularly susceptible to digestive and respiratory disease because of its immature immune system and increased mortality, making it one of the major challenges of the livestock industry. The nutritional strategy to enhance the performance of suckling calves by supplementing their diet with feed additives, such as probiotic and biochar, was evaluated in this study. Method: Twenty-eight female newborn Holstein calves (41.2 ± 3.8 kg) were used in a 2×2 factorial arrangement within a completely randomized design over a 70‑day experimental period. Experimental treatments were as follows:1- basal diet without additive (control), 2- basal diet with 2 g/day of probiotic, 3- basal diet with 1% biochar and 4- basal diet with 2 g/day of probiotic plus 1% biochar. The basal diet was formulated with a 10:90 forage-to-concentrate ratio to meet nutrient requirements. Water and starter feed were provided ad libitum throughout the experiment. Feed intake was recorded daily, body weight and skeletal growth changes were assessed every two weeks. Blood samples were collected on days 0 (birth time), 35 and 70, and fecal samples were collected to evaluate diet digestibility in the last week of the experiment from all calves. All calves were observed for three days at the end of the experiment to record their feeding behaviors (standing, lying, eating, and ruminating) and non-feeding behaviors (licking, sucking, and chewing on environmental objects). Results: Results indicated that calves that were supplemented with dietary biochar had significantly higher starter feed intake and weaning body weight compared with the non‑biochar groups (P<0.05). Wither height, hip height and abdominal circumference of the calves also increased with biochar supplementation (P<0.05). Concurrent supplementation with probiotic and biochar (treatment 4) further enhanced wither height and hip height (P<0.05). probiotic and biochar supplementation improved apparent digestibility of organic matter and crude protein (P<0.05), respectively, whereas the digestibility of other nutrients was unaffected by experimental treatments. Biochar supplementation also increased blood glucose concentration (P<0.05). Dietary treatments did not significantly affec any of the feeding behaviors. Interaction effects of probiotic and biochar were not significant on any of the parameters measured in this study. Conclusions: Overall, dietary supplementation with biochar, either alone or in combination with probiotic, showed significant positiv effects on performance, skeletal growth indices, and digestibility of nutrients in suckling calves, suggesting that biochar may be used as a functional feed additive to support early-life health and productivity.

Correlation of mineral in soil, forage, and blood serum of Dalagh dairy ewes in the ragnglands of Golestan province

Pages 197-213

https://doi.org/10.22059/jap.2026.407651.623887

Pooria pezeshknejad, mohammad asadi, shoheil mirhabibi

Abstract Objective: the Golestan Province has rangelands of high value but these are threatened by climate change and human activities that can lower productivity and ecosystem function. Since soil is the primary substrate for supplying mineral elements to the soil-plant-livestock food chain, assessing the status of macro and micro-elements within this system is of special interest. Recent field studies indicate that there may be metabolic disorders in the sheep of the region, which may be caused by mineral deficiencies at various levels of this food chain. The present study was aimed at investigatingthe association ofthe minerals in the soil and forage of rangelands Golestan Province with the serum element levels in lactating Dall lambs and also correlating the levels of these elements across different matrices and to determining the effect of environmental factors on their bioavailability. Method: The present study was conducted in June 2024 in Golestan Province, Iran. Fifty soil samples were collected from five different areas of the province (Maraveh Tappeh, Incheh Borun, Ghaleh Miran, Chahar Bagh, and Gomishan). Fifty samples of mature rangeland forage, containing a uniform mixture of forage species from the area and a dry weight of 50 g, were harvested, packaged, and transferred to the laboratory to measurethe target elements. To determine serum element concentrations in sheep, blood samples were taken from 50 heads of Dalagh sheep in the study areas (10 per area) and sent to the laboratory. The data were statistically analyzed in a completely randomized design with 5 treatments and 10 replications using SAS 9 software (Tukey; P<0.05). Pearson correlation analysis was performed using R software (version 4.5.1). Results: Soil analysis results indicated the macro-elements calcium (P=0.0001), magnesium (P=0.0001), potassium (P=0.0311), and sulfur (P=0.0017), differed significantly among rangelands and were more sensitive to to ecological and soil characteristics of the regions, whereasonly phosphorus concentration (P=0.0033) differed significantly among rangelands in forage analysis and theother macro and micro-elements were in the same range and were not significantly different among the rangelands. Concentration of elements in animal blood serum also reflected this pattern, except for calcium (P=0.0217) and phosphorus (P=0.0011) which were significantly differentamong rangelands. Correlation analysis indicated that the correlation pattern between mineral elements in the soil-forage-animal serum chain was not consistent and varied based on element type. The metallic micronutrients (iron, zinc, copper, and manganese) showing stronger and more consistent correlation coefficients among soil, plant, and animal blood serum than the macro-elements, and correlations for macro-elements were generally weaker and more variable within this chain. Conclusion: Among the rangelands studied, based on the general pattern of mineral elements in soil, forage, and blood serum, the Ghaleh Miran and Gomishan rangelands were more stable and balanced in terms of mineral concentration throughout the soil-forage-serum chain, while the Chahar Bagh rangeland, although some elements were available in soil and forage, had a macro-element imbalance (e.g., calcium-to-phosphorus ratio) at the serum level in animals, possibly due to absorption or homeostatic regulation of these elements in livestock.. The Ghaleh Miran and Gomishan rangelands, on the other hand, had more favorable conditions, whereas the Maraveh Tappeh and Incheh Borun rangelands showed greater fluctuations and a less stable pattern in the concentration of some elements, and the Chahar Bagh rangeland displayed a different pattern with regard to mineral balance at the animal serum level. The results support the conclusion that the stability and biological balance of the mineral transfer chain is more important than soil richness in determining the health and efficiency of this chain in rangelands.

Optimization of Functional and physiological responses of arian broiler chickens based on dietary ME, protein, lysine, and methionine +cysteine using Taguchi method

Pages 215-232

https://doi.org/10.22059/jap.2026.406624.623880

Mohammad Sedghi, zahra sarrami, Razie ghasemi, Mojtaba Abbasi, Ishmael Mohammadi

Abstract Objective: In recent years, the poultry industry has shown increasing interest in low-protein diets due to their economic and environmental benefits, including reduced feed costs and lower nitrogen excretion. However, reducing dietary protein levels may lead to deficiencies in essential amino acids. Therefore, extensive research over recent decades has focused on evaluating the relationships between dietary nutrients, production performance, and nutritional requirements of broiler chickens, particularly metabolizable energy, protein, and essential amino acids. The primary objective of these studies has been to provide more accurate estimations of nutritional requirements to maximize the genetic potential for growth and performance in poultry. Method: To investigate the effects of dietary metabolizable energy, protein, methionine+ cysteine, and lysine levels on performance and physiological responses of Arian broiler chickens, a total of 2,160 one-day-old chicks (mixed sex) were used in a 4×4×4×4 factorial experiment with 16 treatments, 5 replicates per treatment, and 27 birds per replicate. Nutrient levels were formulated at 97, 100, 103, and 106% of the recommended requirements according to the Arian catalog. Performance parameters, including body weight gain, feed intake, and feed conversion ratio (FCR), were recorded. At 35 days of age, blood samples were collected from one bird per replicate for the serum biochemical parameters (cholesterol, triglycerides, HDL, LDL, albumin, globulin, ALP, AST, and ALT). Antibody titers against sheep red blood cells (SRBC) were measured at 28 and 35 days of age. At the end of the experimental period, five birds per treatment were slaughtered to determine carcass, liver, and lymphoid organ weights. Additionally, intestinal tissue samples were collected from one bird per replicate to evaluate micromorphological traits, including villus height and width, crypt depth, villus height to crypt depth ratio, and muscular layer thickness. Results: The results of statistical analysis indicated that the optimal nutrient levels for maximizing daily weight gain over the entire rearing period were 103% of energy and lysine requirements, 106% of protein requirements, and the standard level of methionine+ cysteine. Standard levels of energy and protein, 97% of methionine +cysteine requirements, and 103% of lysine requirements were optimal for feed intake. Increasing dietary energy and protein levels improved the FCR and the European production efficiency index. Serum cholesterol and triglyceride concentrations increased with increasing dietary energy levels. Higher dietary energy with lower protein levels resulted in higher HDL concentrations. Higher levels of energy and protein elevated serum total protein, globulin, and the activities of AST and ALT enzymes. Moreover, dietary lysine level affected villus height and surface area. Conclusion: Overall, the results of the present study indicate that feeding more than 103% of metabolizable energy required may have detrimental effects on performance and feed intake. Whereas, increasing dietary protein up to 106% of the requirement improved performance; but since there was no significant difference in performance at 103% and 106% protein levels, 103% protein is economically recommended. Furthermore, for optimal performance in Arian broiler chickens, the recommended standard level of methionine+ cysteine and 103% of lysine requirements are also suggested.

Determination of the optimal arginine level in Japanese quail diets to improve growth performance and carcass yield

Pages 233-246

https://doi.org/10.22059/jap.2025.398291.623857

Ali Reza Ghiasvand, Hassan Shirzadi, Hossein Ali Ghasemi, Kamran Taherpour, Shokoufeh Hasanvand, Ali Khatibjoo

Abstract Objective: The aim of this study was to determine the optimal arginine level in the diet of Japanese quails (Coturnix coturnix japonica) and to evaluate its effect on growth performance, feed efficiency, and carcass yield using broken-line and quadratic regression models. Method: 600 twenty-one-day-old Japanese quail chicks were randomly assigned to five treatments with digestible arginine levels of 0.75%, 1.00%, 1.25%, 1.50%, and 1.75%, with six replicates per treatment and 20 quails per replicate. The experimental diets were similar in all essential nutrients except for arginine. The experiment was conducted from day 21 to day 35, and during the experimental period, the effects of different arginine levels on body weight (BW) gain, feed efficiency, carcass yield, and the chemical composition of breast and thigh meat were measured. Results: Results indicated that arginine affected BWG and feed efficiency (P<0.05) of the quails, with the 1.25% arginine treatment being significantly different than the 0.75% and 1.00% treatments and having no difference with the 1.50% treatment (P<0.05). No treatment effect was observed for feed intake, suggesting that greater arginine levels improved the efficiency of feed utilization due to increased BW gain. Arginine requirement was estimated using both broken-line linear and quadratic regression models, with the broken-line linear model with a single slope identifying breakpoints at 1.15% for BW gain and 1.21% for feed efficiency, whereas the quadratic broken-line model predicted breakpoints at 1.30% and 1.29%, respectively. The quadratic regression model predicted that the highest BW gain occurred at 1.37% arginine and the highest occurred at 1.36% arginine. For carcass yield, the 1.25% arginine treatment yielded the highest carcass yield on day 35, which was significantly different than the 0.75% and 1.75% treatments. Both broken-line and quadratic regression models suggested that the optimal level for carcass yield was 1.12% and 1.26% and 1.32% arginine, respectively. Conclusions: The results of this study indicate that broken-line linear and quadratic regression models can be used to accurately estimate the arginine requirement in the diet of Japanese quails, and the optimal arginine level for improving growth performance and carcass yield in Japanese quails was found to be within the range of 1.15% to 1.37%, whichcan serve as a reference for improving dietary formulations in the quail farming industry and lowering feed costs.

Effects of mineral, organic and Zinc nano-sources on performance, blood biochemical, and immune parameters and meat quality of Broiler chickens

Pages 247-258

https://doi.org/10.22059/jap.2026.408531.623893

vahid mohammadi, Shokoofeh Ghazanfari, Abdullah Mohammadi Sang-Cheshmeh

Abstract Objective: Trace elements, particularly zinc (Zn), play a pivotal role in the metabolic processes and growth of broiler chickens. Recent technological advancements have facilitated the synthesis of novel Zn complexes engineered for enhanced nutrient delivery. Consequently, this study was designed to evaluate the effects of various dietary Zn sources on growth performance, carcass characteristics, immunological parameters, and the lipid oxidative stability of broiler meat. Method: A total of 200 one-day-old Ross 308 broiler chicks were randomly distributed into five experimental treatments, each with four replicates. The treatments consisted of a basal corn-soybean meal diet (Control) or the basal diet supplemented with 40 mg/kg of Zn-sulfate, Zn-methionine, Zn-nano sulfate, or Zn-nano methionine. Feed and water were provided for ad libitum consumption. Environmental temperature and relative humidity were strictly regulated within optimal ranges. Assessments included growth performance, carcass traits, hematological profiles, and thigh meat quality. The nano-complexes were engineered utilizing nano-chelate technology. Results: At the end of the starter period, the lowest feed intake (FI) was observed in birds supplemented with Zn-nano sulfate (P<0.05). This reduced FI resulted in diminished growth during this phase, showing a significant difference compared to the other groups (P<0.05). Over the entire experimental period (days 1 to 42), a numerical trend toward increased body weight gain (BWG) was noted among treatments (P=0.06). The most favorable feed conversion ratio (FCR) was recorded in the Zn-nano methionine group, which differed significantly from the Control and Zn-nano sulfate groups (P<0.05). Carcass yield was significantly affected by the treatments (P<0.05), with the lowest yields observed in the Control and Zn-nano sulfate groups. Furthermore, the relative weight of the abdominal fat pad was significantly higher in the Control and Zn-nano sulfate groups compared to other treatments (P<0.05). Dietary Zn sources also significantly influenced serum lymphocyte percentages (P < 0.05); the most robust cell-mediated immune response was observed in birds fed Zn-nano methionine and Zn-methionine. Regarding oxidative stability, the extent of lipid oxidation in thigh meat from the Control group was significantly higher at 50, 100, and 150 minutes post-mortem compared to all other treatment groups (P<0.05). Conclusion: In conclusion, supplementation of broiler diets with 40 mg/kg of nanoscale Zn sources, particularly Zn-nano methionine and Zn-nano sulfate, differentially influenced growth performance, selected immunological traits, and meat quality.

Ultrasonographic study of udder and teat in pregnant and non-pregnant native goats in Khorram Abad

Pages 259-272

https://doi.org/10.22059/jap.2026.401627.623868

Milad Rostami, Arash Kheradmand, Majid Masoudi Fard

Abstract Objective: Due to the economic losses caused by mammary gland diseases in ruminants, a quick and accurate diagnosis of is necessary and new, precise and rapid techniques such as ultrasonography should be employed . Ultrasonography has the advantage of being non-invasive and can be used to study a variety of mammary gland structures. Using of "Water bath" and dipping of udder within the water is the primary ultrasonic mothod with high resolution in order to diagnostic study of different structures of udder and teat. This method causes the teat to be without any under pressure and therefor prevents teat deformity upon examination. Thus, the teat remains in its normal form, and ultrasonographic images acquired will be the most clear and resoulative.  Method: The objective of this study was to compare udder and teat in pregnant and non-pregnant native goats, and right and left quarter in each udder. In this respect, 50 slaughtered native goats at the Golshan slaughterhouse of Khorramabad were sampled and divided into two groups of pregnant and non-pregnant udder (25 samples in each group) based on the presence of the embryo in the uterus and isolated from them. Ultrasonography of udder and teat were performed using a water bath and a linear probe at frequency of 7.5 MHz. All samples were examined and two groups of specimens were measured using the ruler option of the instrument. Udder cistern diameter, teat end width, teat cistern depth, teat wall thickness and teat canal length were statistically compared using student t test. Results: This study found that the measured parameters of the teat cistern depth and teat end width in pregnant goats were significantly different than that of non-pregnant goats (P<0.05), whereas there was no significant difference in the measured parameter of teat wall thickness between pregnant and non-pregnant goats. There were no significant differences between the teat canal length and the udder cistern diameter in the comparison of the quarter leaves of pregnant and non-pregnant goats  and in the comparison of right quarter,. Also, there was no significant difference between left quarter and right quarter in any of the measured parameters in both pregnant goats and non-pregnant goats. Conclusion: Based on the findings of this study, ultrasonography of udder and teat appears to be a promising and practical technique for diagnosis imaging of the health status and/or potential pathological disorders of udder and teat of native goats in the farm or research studies.

Analysis of spatial effects on chicken meat supply and demand in Iran: A spatial panel approach

Pages 273-287

https://doi.org/10.22059/jap.2026.406981.623882

Vahid Kalantar, Hamed Najafi Alamdarloo, Seyed Habibollah Mosavi

Abstract Objective: As a primary source of dietary protein, chicken meat represents a major component of household consumption in Iran. This study investigates the economic and spatial drivers of provincial chicken supply and demand, aiming to provide a robust framework for regionally targeted policy formulation. The analysis covers the period between 2002 and 2024 Method: Utilizing provincial panel data, this study models supply and demand functions via traditional panel techniques and spatial econometric frameworks. Based on rigorous specification and diagnostic testing, a fixed-effects estimation approach was adopted. The model incorporates key explanatory variables, including producer prices for live chickens (supply determinants), retail chicken prices (demand determinants), input costs, exchange rates, household income, and red meat prices as a substitute. Furthermore, the analysis computes historical price elasticities to track longitudinal changes in consumer price sensitivity. Results: Following the preliminary diagnostic tests, the fixed-effects panel model was determined to be the most appropriate framework for analyzing chicken meat supply and demand dynamics. The results indicated that the price of live poultry exerted a significant positive impact on supply. Conversely, while the retail price of chicken meat negatively affected demand, the price of red meat showed a positive correlation with chicken demand, reflecting a substitution effect. Furthermore, spatial analysis confirmed that provincial supply and demand were significantly influenced by spatial dependencies. The identification of positive spatial autocorrelation in supply and negative spatial autocorrelation in demand suggests divergent geographic distribution patterns for these two variables. Conclusions: This study applied spatial econometric approaches to examine how regional interactions shape Iran’s chicken meat market. The findings showed that both supply and demand were determined not only by within-province economic conditions but also by developments in neighboring provinces, confirming the presence of significant spatial interdependence. The estimated supply function indicated that live chicken prices positively affected supply, whereas higher input costs and exchange rate fluctuations adversely influenced production. On the demand side, household income and the price of red meat, as a substitute good, exerted positive effects on chicken consumption, while the price of chicken meat itself negatively affected demand. Compared with earlier studies that estimated the price elasticity of chicken meat at approximately −0.93-0.93−0.93, the present study found a substantially lower elasticity of about −0.25-0.25−0.25. This finding suggests that chicken meat has increasingly become a necessity in the food basket of Iranian households, with consumers exhibiting lower sensitivity to price changes. As a result, price adjustments in this market are likely to face limited consumer responsiveness. The observed substitution effect between chicken and red meat further indicates that rising red meat prices encourage households to shift their consumption toward chicken. Spatial analysis also revealed convergence in supply, implying that production levels in one province tended to influence those of neighboring provinces. More broadly, the spatial econometric models confirmed that variables such as input prices, exchange rates, and household income played significant roles in shaping provincial supply and demand patterns. Overall, the results underscore the importance of designing region-specific policies that account for spatial linkages rather than relying solely on uniform national interventions. Despite limitations related to data availability and model specification, this study highlights the critical role of spatial factors in formulating more effective, balanced, and context-sensitive policies for Iran’s chicken meat market.

Evaluation of the effects of encapsulated acidifier and herbal extracts on growth performance and immune response of broiler chickens at different stock densities

Articles in Press, Accepted Manuscript, Available Online from 22 July 2026

https://doi.org/10.22059/jap.2026.407492.623886

Yaser Keyhani, Mohammad Hossein Palizdar, Mahmoud Karami

Abstract Objective: The Stock density is one of the most important management factors in the poultry industry, directly affecting the health, performance, and welfare of broiler chickens. However, high stocking density can exert various negative effects on birds ‘physiological status and performance, particularly during the later stages of growth. To alleviate the adverse impacts of high stocking density, the use of natural and safe feed additives such as herbal extracts and organic acids has been proposed as an alternative to antibiotic growth promoters in poultry nutrition. The present study was conducted to evaluate the effects of dietary encapsulated acidifier and herbal extracts administered via drinking water on growth performance, carcass characteristics, jejunal morphology, ileal microbial population, and immune response of broiler chickens under different stocking densities.
Methods: A total of 630 one-day-old male and female Ross 308 broiler chicks, with an average initial body weight of 42.61 ± 0.58 g, were used. The experiment was arranged in a completely randomized design with a 3 × 3 factorial arrangement, consisting of nine treatments and five replicates per treatment. Stocking densities were set at 12, 14, and 16 birds per square meter. Experimental treatments were included three stocking densities (12, 14, and 16 birds/m²) and three additive types (control, encapsulated acidifier, and herbal extracts). Growth performance parameters, including feed intake, body weight gain, and feed conversion ratio, were recorded during the starter (1–10 d), grower (11–24 d), and finisher (25–42 d) periods. Carcass characteristics, jejunal morphology, ileal microbial population and relative antibody titers against infectious bronchitis (IB), infectious bursal disease (IBD), and newcastle disease virus (NDV) were measured at 42 days of age.
Results: The results indicated that both the acidifier and herbal extracts significantly mitigated the adverse effects of the greatest stocking density (16 birds/m²) on body weight and weight gain. Birds reared at 12 birds/m² showed a greater relative breast weight compared to those reared at 16 birds/m² (P<0.05). Increasing stocking density from 12 to 16 birds/m² decreased relative spleen weight (P<0.05). The use of acidifier and plant extract supplements in the diet of broiler chickens increased the villus height compared to diets without additives (P<0.05). The interaction effects of additive type and density level showed that the use of acidifier and plant extract supplements in the diet of broiler chickens raised at a density of 16 compared to a density of 16 without additives significantly increased the number of Lactobacillus and significantly decreased the number of Coliforms (P<0.05). A significant interaction between stocking density and additive type was observed, showing that supplementation with herbal extracts at both 12 and 16 birds/m² increased the antibody titer against IBD compared with un supplemented groups at the same densities (P<0.05). Moreover, broilers receiving herbal extract supplementation exhibited grater antibody titers against NDV than those fed diets with acidifier or without additives (P<0.05). Increasing stocking density from 12 or 14 to 16 birds/m² significantly reduced antibody titers against IB (P<0.05).
Conclusion: In conclusion, supplementation with encapsulated acidifier and herbal extracts improved growth performance, villus height, ileal microbial population, spleen weight, and antibody titers against NDV and IBD, suggesting their potential to alleviate the negative effects of high stocking density stress in broiler chickens.

Effect of Different Levels of Pahak on Growth Performance, Blood Biochemistry, Carcass Traits, Intestinal Morphology, and Gut Microbiota in Japanese Quail (Coturnix japonica)

Articles in Press, Accepted Manuscript, Available Online from 28 July 2026

https://doi.org/10.22059/jap.2026.406767.623881

Enayat Rahmatnejad, Hassan Habibi, Hassan Shirzadi, Mohammad Amin Kohanmoo

Abstract Objective: This study was conducted to evaluate the effects of different levels of Pahak (green Khalal-stage date) on growth performance, blood biochemistry, carcass characteristics, intestinal morphology, and gastrointestinal microbial population in Japanese quail.
Methods: A total of 360 chicks were used in a completely randomized design with four dietary treatments and six replicates per treatment (15 birds per replicate) for a 35-day experimental period. The treatments consisted of: (1) control (basal diet without Pahak); (2) 5% dietary Pahak; (3) 10% dietary Pahak; and (4) 15% dietary Pahak.
Results: Body weight was not influenced by the dietary inclusion of Pahak at any stage of the experiment. Inclusion of 5% Pahak reduced feed intake and improved feed conversion ratio as well as energy and protein efficiency ratios, whereas 15% Pahak increased feed intake (P < 0.05). Dietary inclusion of 10% and 15% Pahak decreased total cholesterol levels, and all three Pahak levels reduced the cardiac risk ratio and atherogenic index (P < 0.05). Diets containing 10% and 15% Pahak respectively decreased and increased relative carcass and liver weights (P < 0.05). The lowest liver weights were recorded in birds receiving control diet and 5% Pahak, whereas the highest liver weight occurred with the 15% inclusion level (P < 0.05). Compared with the control group, feeding 5% Pahak increased villus height and decreased submucosal thickness in the duodenum (P < 0.05). The greatest submucosal thickness was observed in birds fed 15% Pahak (P < 0.05). Compared with the control group, inclusion of 10% and 15% Pahak reduced villus height, villus thickness, and the villus height-to-crypt depth ratio in the ileum (P < 0.05). Moreover, the 15% Pahak level increased both submucosal and muscular layer thicknesses (P < 0.05). Feeding 5% and 10% Pahak led to a moderate reduction in the average number of goblet cells in the ileum, whereas 15% Pahak markedly reduced goblet cell counts (P < 0.05). Among treatments, the largest and smallest ileal villus surface areas were observed in birds fed 5% and 15% Pahak, respectively (P < 0.05). Although crypt depth was not significantly affected by Pahak, its values increased quadratically with increasing Pahak level (P < 0.05). Compared with the control, inclusion of 10% and 15% Pahak increased Salmonella-Shigella, Clostridia, and coliform colonization in the ileum (P < 0.05). Compared to the control, the inclusion of 5% Pahak reduced the total aerobic bacterial colonization in the cecum, while the 15% level increased the colonization of these bacteria (P < 0.05). Moreover, the colonization of Salmonella-Shigella and coliforms in the cecum of birds fed the 15% Pahak diet increased compared to the other treatments (P < 0.05).
Conclusion: It is concluded from the results that Pahak can be safely utilized at a dietary inclusion rate of 5% for Japanese quail during the first 35 days of the rearing period, with no deleterious effects on productive performance.

The Effect of Chemical Treatment of Rice Straw and Bran on the Chemical Composition and In Vitro Fermentation Parameters

Articles in Press, Accepted Manuscript, Available Online from 29 July 2026

https://doi.org/10.22059/jap.2026.408019.623891

Khatam Aminoroayaee, Tahere Amirabadi Farahani, Golnaz Taasoli, Saeid Karimi Dehkordi, Fariba Rezaei Sarteshnizi

Abstract Objective: Agricultural residues are used as part of ruminant diets. Optimal utilization of these materials and reducing their wastage is essential. Proper processing (treating) of these residues improve the palatability. Rice straw and rice bran are two major residues after rice harvesting and processing which, chemical processing mostly improve their digestibility. Chemical treatment weakens hydrogen bonding inside the rice straw; resulting in improved fiber digestion. Therefore, this experiment was carried out to study the effect of chemical processing (with nitric acid, sodium hydroxide, and sodium hypochlorite) as a desilication method on the chemical composition, fermentation parameters, and in vitro digestibility of nutrients of rice straw and rice bran and compare them wheat straw and bran.
Method: Desilication of rice straw and bran was carried out using nitric acid, sodium hydroxide, and sodium hypochlorite, pressure, heating and drying. The experimental treatments included 1- Straws: 1- wheat straw as positive control, 2- untreated rice straw, 3-treated rice straw and 2- Brans: 1- wheat bran as positive control, 2- untreated rice bran and 3- treated rice bran). Chemical composition, concentration of silica and in vitro gas production parameters and neutral detergent fiber digestibility of all treatments were measured and metabolizable energy, organic matter digestibility and short-chain fatty acids concentration were estimated.
Results: The results showed that chemical treatment reduced the contents of silica, crude protein, ether extract and ash in treated rice straw (P > 0.05) compared to the untreated rice straw. Potential of gas production, lag time, ammonia nitrogen concentration, total protozoa population, neutral detergent fiber, and acid detergent fiber were not affected by chemical processing of rice straw; however, gas production rate and estimated short chain fatty acid concentration increased (P > 0.05) and pH decreased (P < 0.05) in treated rice straw compared to untreated rice straw and wheat straw.
In vitro neutral detergent fiber digestibility tended to increase in treated rice straw compared to untreated rice straw and wheat straw. Dry matter, crude protein, ether extract and ash contents decreased and pH increased with chemical processing (P > 0.05). Furthermore, gas production potential, gas production rate, ammonia nitrogen concentration and neutral detergent fiber decreased in treated rice bran compared to untreated rice bran (P > 0.05). Lag time, total protozoa population, Epidinium and Entodinium population, estimated metabolizable energy, organic matter digestibility and short-chain fatty acids concentration were not affected by chemical treatment in rice bran.
Conclusions: Chemical processing of rice by-products by reducing anti-nutritional compounds such as silica and improving some fermentation and digestibility characteristics, facilitate use of fiber fraction of these material in the livestock diet.

Effects of Sodium Selenite and selenium-methionine on Productive Parameters, Hepatic Antioxidant Status, Gene Expression and Selenium Deposition in Egg and Liver of Laying Hens

Articles in Press, Accepted Manuscript, Available Online from 31 July 2026

https://doi.org/10.22059/jap.2026.409153.623895

zahra tahami, Behrouz Dastar, ehsan oskoueian, Seyed Reza Hashemi

Abstract objective: Enhancing the nutritional quality of eggs through enrichment with micronutrients such as selenium is a value-adding strategy in the poultry industry. Selenium-enriched eggs can not only help supply this essential element in the human diet but may also lead to improved oxidative stability and longer shelf life of the product due to their enhanced antioxidant profile. Furthermore, selenium's role in regulating the expression of genes involved in oxidative stress response and detoxification pathways reveals another layer of its positive effects on cellular health. Given the inherent differences among various selenium sources in absorption, metabolism, and bioavailability, a precise evaluation of their impact on performance, health, and product quality in laying hens is essential. Therefore, this study aimed to compare the effects of dietary supplementation with two common selenium sources (sodium selenite and selenomethionine) at two different levels on production performance, oxidative stress indicators, selenium accumulation in eggs and liver, and the expression of key antioxidant genes in the liver of laying hens.
Method: An experiment was conducted using 300 Hy-Line W-36 laying hens in a completely randomized design with 5 treatments, 4 replicates, and 10 birds per replicate. The experimental treatments included: 1) Basal diet (without selenium), 2) Basal diet + 0.5 mg/kg sodium selenite, 3) Basal diet + 1 mg/kg sodium selenite, 4) Basal diet + 0.5 mg/kg selenomethionine, and 5) Basal diet + 1 mg/kg selenomethionine. Performance traits, including feed intake, body weight gain, and feed conversion ratio, were measured periodically. Antioxidant activity, expression of GPx and TXNRD1 genes, and selenium deposition in egg yolk, egg albumen, and liver were evaluated. Statistical analysis of the data was performed using SAS software.
Results: The results showed that supplementation with different organic and inorganic selenium sources had no significant effect on average weight gain, feed intake, or feed conversion ratio in laying hens during any production period (P>0.05). Similarly, plasma antioxidant activity and malondialdehyde (MDA) levels were not significantly affected by different selenium sources (P>0.05). However, selenium supplementation led to a significant decrease in hepatic MDA levels compared to the control group (P<0.05). Treatments receiving organic selenium showed significantly lower hepatic MDA production compared to those receiving inorganic selenium (P<0.05). Supplementation with 1 mg/kg organic selenium resulted in significantly higher selenium deposition in dried egg yolk and albumen compared to other experimental treatments (P<0.05). Selenium supplementation significantly increased selenium concentration in fresh egg yolk and albumen (P<0.05) and significantly elevated selenium concentration in the liver (P<0.05). Treatments receiving organic selenium showed higher expression levels of GSH and TXNRD1 genes compared to those receiving inorganic selenium (P<0.05).
Conclusions: Based on the findings, although selenium did not significantly affect performance indicators, dietary supplementation with 1 mg/kg selenomethionine reduced MDA levels, increased selenium content in eggs, and positively regulated the expression of antioxidant genes. Therefore, it can be recommended as an effective nutritional strategy to enhance bird health and improve the nutritional quality of eggs.

The effect of vitamin and mineral supplement injection during the transition period on biochemical parameters, antioxidant and hormonal indices of Dalagh ewes and the performance of their lambs

Articles in Press, Accepted Manuscript, Available Online from 01 August 2026

https://doi.org/10.22059/jap.2026.405323.623875

Mohammad Asadi, Hossein Emrani, Kazem Yussefi Kelarikolaei, Sholeh Ghorbani, Ayda Teymouri

Abstract Objective: Increased inflammation and oxidative stress during the transition period may, in addition to having negative effects on ewe health, also have negative effects on fetal health and development. Vitamins and minerals are known for their anti-inflammatory and antioxidative properties. Vitamins and minerals are essential for the health and production of ewes because they act as cellular antioxidants and immune modulators. Given the importance of micronutrient nutrition during the transition period of ewes, a study was conducted to investigate the effect of vitamin and mineral supplementation during late pregnancy on blood biochemical parameters, antioxidant and hormonal indices of the Dalagh ewes, and the performance of their lambs.
Method: Forty Dalagh ewes were allocated to four treatments with ten replicates in a completely randomized design during the final stage of pregnancy. The experimental treatments were as follows: 1) Control group: no vitamin and mineral supplement injection, 2) Vitamin group: ewes receiving injectable vitamin supplement, 3) Mineral group: ewes receiving injectable mineral supplement, and 4) Vitamin + mineral group: ewes receiving simultaneously injectable vitamin and mineral supplements. All injections were administered 21 days before lambing and the amounts for mineral and vitamin supplements per ewe were 20 and 5 mg, respectively. The vitamin supplement contained vitamins A, D3, E, B1, B2, B3, B6, B12, and C, while the mineral supplement included calcium, copper, magnesium, and phosphorus.
Results: The albumin concentration and albumin:globulin ratio in the blood of ewes that received minerals and vitamins by injection were lower than those in the control group, and the albumin and albumin:globulin ratio in ewes that received minerals and vitamins simultaneously were lower than those in other treatments (P≥0.05). In the serum of ewes that received minerals and vitamins, the concentration of globulin and ceruloplasmin was higher than that in the control ewes, and their concentration in the serum of ewes that received minerals and vitamins simultaneously was higher than those in other treatments (P≥0.05). Cortisol, catalase, glutathione peroxidase, malondialdehyde, superoxide dismutase, total antioxidant status, and alkaline phosphatase were lower than those in the control group (P≥0.05). Total antioxidant status and alkaline phosphatase in ewes that received minerals and vitamins simultaneously were lower than other treatments (P≥0.05). In the serum of ewes that received minerals and vitamins, hemoglobin concentration was higher than that of control ewes (P≥0.05). Placental expulsion time was adjusted by micronutrient injection, and the shortest placental expulsion time belonged to ewes that received minerals and vitamins simultaneously (P≥0.05). On the other hand, lamb birth weight improved in ewes injected with minerals and vitamins, and the highest lamb birth weight was for the treatment injected with minerals and vitamins simultaneously (P≥0.05). 45-day weight, lamb weight gain during the period, daily weight gain, and apparent dry matter digestibility were improved by maternal injection of minerals and vitamins. Also, the number of lambs with diarrhea and days of diarrhea decreased in treatments where the mother received minerals and vitamins, and the lowest number of lambs with diarrhea was in the group receiving vitamins and minerals and vitamins simultaneously (P≥0.05).
Conclusion: In general, simultaneous prepartum injection of minerals and vitamins in ewes during the transition period is recommended. This approach enhances antioxidant capacity, improves immune function, and leads to better health and performance in their lambs.

Comparison of the morphological characteristics of the Iranian native honey bee (Apis mellifera meda) and the Buckfast breed (Apis mellifera buckfast)

Articles in Press, Accepted Manuscript, Available Online from 01 August 2026

https://doi.org/10.22059/jap.2026.410454.623898

Maryam Lotfi, Behrouz Dastar, Ahmad Nadimi

Abstract Objective: The honey bee, as one of the most important pollinators in agricultural and natural ecosystems, comprises 10 species belonging to the genus Apis, family Apidae, and order Hymenoptera. One of the most significant species is the European honey bee (Apis mellifera L.), which is now found in most parts of the world. One method for identifying them is through morphometric characteristics, which not only serve as a key tool in their classification but also show a significant correlation with colony performance, efficiency, and adaptation. The aim of this study was to compare the morphometric traits of the native Iranian honey bee (Apis mellifera meda) with the Buckfast hybrid (Apis mellifera buckfast) under the climatic conditions of Gorgan.
Method: The research was conducted at the honey bee breeding farm of Gorgan University of Agricultural Sciences and Natural Resources in July 2025. Six colonies from each genotype were selected, and from each colony 10 worker bees were randomly collected from the entrance of the hive. In total, 120 specimens (60 from each genotype) were anesthetized with ethyl acetate and preserved in 95% ethanol. The target body parts were then dissected and mounted on microscope slides using Canada balsam.Subsequently, 11 traits were measured under the standard Ruttner protocol using a stereomicroscope equipped with a digital camera and image analysis software. These traits included forewing length and width, wing venation angles A4, D7 and G18, cubital index (length of veins a and b in the cubital cell), hind leg components (length of femur, tibia and first tarsal segment), and proboscis length. All data were organized in Microsoft Excel and statistically analyzed in SAS using the t-test and Pearson’s correlation coefficient.
Results: The results showed that the Buckfast breed had significantly greater forewing length and D7 angle than the native Iranian breed (P < 0.05), while no significant differences were observed in the other morphometric traits. Correlation analysis indicated that in the Buckfast breed, significant relationships were mainly confined to within-wing traits. In contrast, in the native Iranian breed, significant positive correlations were observed between wing traits and locomotory traits (hind leg components). These findings suggest a greater structural integration and proportionality between flight and locomotory organs in the native Iranian breed compared with the Buckfast breed.
Conclusion: The results indicated that under the climatic conditions of Gorgan, Buckfast and native bees did not differ significantly in most morphometric traits, and the superiority of the Buckfast breed was limited to forewing length and the D7 angle. Considering the overall morphological similarity between the two breeds, relying solely on these traits is not sufficient to demonstrate the superiority of the Buckfast breed. Therefore, a definitive evaluation requires further studies focusing on functional traits such as productivity, foraging behavior, and resistance to diseases.

Genetic Diversity Analysis of the Interleukin-4 Receptor Gene (IL-4R) Sequence in Bos taurus and Bos indicus Cattle

Articles in Press, Accepted Manuscript, Available Online from 02 August 2026

https://doi.org/10.22059/jap.2026.410018.623896

Arghavan Bastam, Gholam Dashab, Hossein Bazzi

Abstract ABSTRACT
Objective: The interleukin-4 receptor gene (IL-4R) is a critical component of immune signaling pathways and plays an essential role in regulating immune responses and reproductive functions in mammals. The present study aimed to investigate the genetic diversity of the IL-4R gene sequence and to compare nucleotide variation, substitution patterns, selective pressures, and phylogenetic relationships between European cattle (Bos taurus) and Indian cattle (Bos indicus).
Method: For this purpose, 26 nucleotide sequences related to different breeds of both European and Indian species were extracted from the NCBI and Ensemble databases and aligned. Alignment of gene sequences was performed using the CLUSTAL-W algorithm in MEGA software version11. Then, the number and types of mutations and the amount of polymorphism, nucleotide diversity, the number of positions where similar or non-similar substitutions occurred, the percentage of gene divergence, the percentage of transitional and transversional substitutions and gene conversion were calculated using MEGA11 and Dnaspv5 software. The percentage of nucleotide transition and transversion substitutions was calculated using the composite maximum likelihood method. Haplotype diversity was calculated based on the maximum likelihood method and genetic distance was calculated based on the Tamura-Nei model and finally the phylogenetic tree was drawn using the Neighbor-joining (NJ) method. To assess selective pressure acting on the IL-4R gene, the ratio of nonsynonymous to synonymous substitutions (dN/dS) was estimated.
Results: Nucleotide diversity was estimated to be 0.33 in European cattle and 0.214 in Indian cattle, demonstrating a higher level of genetic variability in Bos taurus compared to Bos indicus. In all analyzed populations, the frequency of transitional substitutions was higher than that of transversional substitutions. The dN/dS ratio was calculated as 0.9 for European cattle, indicating that purifying selection has predominantly acted on the IL-4R gene during its evolution in this group. In contrast, the dN/dS ratio in Indian cattle was estimated to be 1.11, suggesting evidence of positive selection acting on this gene locus. Phylogenetic analysis revealed distinct evolutionary patterns of the IL-4R gene among the studied populations. Although both cattle groups share a common ancestor, European cattle exhibit greater evolutionary divergence and appear to have a longer evolutionary history for this gene compared to Indian cattle.
Conclusions: The findings of the present study indicated different evolutionary patterns in European and Indian cattle. The dominance of pure selection in European cattle and the presence of evidence of positive selection in Indian cattle indicate that the IL-4R gene has been under different selective pressures during the evolutionary process. Therefore, in addition to a better understanding of the molecular evolution and genetic diversity of immune genes in cattle, the aforementioned results can be used in future breeding strategies in cattle, especially in the field of immune function and disease resistance.

Soaked straw and alfalfa utilization in dairy cattle ration

Volume 12, Issue 2, Autumn 2010, Pages 37-50

Ahmad Afzalzadeh, Hadi Ghorbani Farmad, mohsen danesh mesgaran, Ali Akbar Khadem

Abstract The effect of feeding of soaked barley straw on milk production and composition and rumen characteristics was studied. The degradability of soaked barley straw (for 24, 48 and 72 hours) and unsoaked barley straws were studied in the first experiment. The unsoaked barley straw had more readily degraded fraction (a) than soaked straw treatments (p> 0.05). There was no significant difference between slowly degradable fractions (b) and degradation rates (c, %h) in various treatments of barley straw. The degradability parameters of different rations also studied. The differences between readily (a) and slowly (b) degradable fractions were not significant. In the second experiment the effect of partial replacement of alfalfa hay with unsoaked barley straw and 24h soaked barley straw on performance of 9 multiparous lactating dairy cows in midlactation (580.9 ± 39.3 BW) with 27.8 ± 4.5 kg daily milk yield was studied in a crossover design. The effects of different treatments on milk yield (p< 0.05), milk fat (g/kg yield) (p< 0.05), N-NH3 rumen liquor (p< 0.0001), rumination and chewing activity (min/d) were significant. The rumination and chewing activity (min/d) were increased in diets that contained barley straw. In conclusion utilization of soaked barley straw in ration of midlactation cows is recommended.

The effect of dietary Curcumin supplementation on testicular histology parameters in aged broiler breeder roosters

Volume 20, Issue 3, Autumn 2018, Pages 487-498

https://doi.org/10.22059/jap.2018.257170.623279

Amin Kazemizadeh, Ahmad Zare Shahneh, Ali Reza Yousefi, Hasan Mehrabani Yeganeh, Zarbakht Ansari Pirsaraei

Abstract The present study was conducted to investigate the effect of dietary Curcumin supplementation on histological parameters of testis in aged Ross 308 broiler breeder roosters. A total of twelve 48-week old broiler breeder roosters in a completely randomized design were randomly assigned to four treatments and three replicates during a 13 weeks of experimental period. Treatments included no dietary Curcumin supplementation (control group), and daily supplementation of 10, 20, and 30 mg Curcumin/birds as mixed in the basal diet. At the end of the experimental period, all of the roosters were slaughtered, and testis tissue samples were collected. Testicular weight was higher in the roosters that daily received 30 mg Curcumin compared with the control group (P<0.05). Dietary supplementation of 20 and 30 mg Curcumin/day increased the diameter of seminiferous tubule compared to the control group (P<0.05). Seminiferous epithelium thickness was dose-dependently increased in Curcumin-supplemented birds compared to the control group (P<0.05). The number of spermatogonia cells was increased in all treatment groups compared to the control group (P<0.05). The number of Leydig cells was also increased in roosters received 20 and 20 mg Curcumin/day compared to the control birds (P<0.05). However, treatments did not affect the number of testis blood vessels (P>0.05). According to the results of the present study, dietary supplementation of 30 mg Curcumin/day/bird improves testis histological parameters in aged broiler breeder roosters.

Determination of optimum levels of energy and protein in grower diet of Japanese quail (Coturnix coturnix Japonica)

Volume 15, Issue 1, Summer 2014, Pages 1-10

https://doi.org/10.22059/jap.2013.36598

Mohammad Yazarloo, Seyed Davood Sharifi, Farid Shariatmadari, Abdolreza Salehi

Abstract In order to determine the optimal levels of energy and protein in grower diet of Japanese quail, 360 day
old Japanese quails were used in a 3×3 factorial arrangement of dietary treatments that comprised three
levels of metabolisable energy (2750, 2850, and 2950 Kcal/kg) and three levels of crude protein (24, 26
and 28 percent) with four replicates per treatment in a completely randomized design. Feed intake and
body weight were measured weekly and feed conversion ratio was calculated. At 35 d of age, four birds
(from both sexes) from each replicate were randomly selected and killed following blood sampling to
evaluate carcass traits. The blood samples were assayed for the sera concentrations of growth hormone.
Results indicated that birds fed on diets containing 2850 kcal/kg metabolisable energy and 26 percent
protein had higher daily weight gain and better feed conversion ratio and carcass yield (P<0.05). The sera
concentration of growth hormone was higher in birds fed on diet containing 2750 kcal/kg metabolisable
energy (P<0.05). This study indicated that Japanese quails can grow faster and more efficiently on diet
containing 2850 kcal/kg metabolisable energy and 26 percent protein. Therefore, the diet containing 2850
kcal/kg metabolisable energy and 26 percent protein could be recommended as dietary metabolisable
energy and protein requirements for growing Japanese quails.

Association study between some of biometric traits and IGF-I gene exon 1 polymorphism in Moghani sheep

Volume 14, Issue 2, Winter 2012, Pages 21-30

https://doi.org/10.22059/jap.2012.32039

F. Pourbayramian, M. Ghaderzadeh, H. A. Deljoo Isaloo, P. Biabani, M. B. Shams Borhan, P. Barenj Foroush

Abstract The current study was designed to estimate the frequency of IGF-I gene 1 polymorphism and investigate if their polymorphisms have association with biometric traits in Moghani sheep by PCR-SSCP method. For this purpose, a number of 100 sheep were randomly chosen from Moghani sheep Jafarabad, Moghan breeding station that located in Ardabil state and blood samples were collected from the left jugular vein using vacuum tubes. DNA were extracted from blood samples that using the salting-out procedure and amplified a fragment of 279 bp in size from IGF-I gene exon 1. The Single-Strand Conformation Polymorphism (SSCP) method was used for genotyping. Electrophoresis of PCR products were done on acrylamide gel that observed the polymorphic in this region. Based on SSCP patterns, three genotypes BC, BD and BB obtained with frequencies of 65, 26 and nine percent, respectively. The genotypes in this locus deviated from HWE. The traits data were analyzed using the SAS program. The BB genotype were associated with Leg girth but no association of the other genotypes with the withers height, back height, body length, breast girth other examined biometric traits were found (P< 0.05).

Study of polymorphism in myostatin gene in Chaal, Zel and Zandi Iranian sheep Breeds

Volume 13, Issue 1, Summer 2011, Pages 33-40

Yonous Miar, A. Reza Salehi, Seyed Ahmad Aleyasin, Somayeh Raouf zadeh

Abstract Myostatin (MSTN), also known as growth and differentiation factor-8 (GDF8), is a member of the transforming growth factor beta (TGF-?) superfamily that decreases growth in mammals. A single nucleotide polymorphism (SNP) in the myostatin (GDF8) 3'UTR of OAR2 has been known as responsible for muscular hypertrophy in foreign breeds. In this study, in order to identify single nucleotide polymorphisms (SNP) in the myostatin (GDF8) gene, blood samples were collected from a population set of Chaal (n = 20), Zandi (n = 24) and Zel sheep (n = 17) lambs. Genomic DNA was extracted from the whole blood samples and polymerase chain reaction (PCR) was carried out in order to amplify a 1003 bp fragment of the target gene and PCR products sequenced to detect single nucleotide polymorphism (SNP). Comparison of the sequence of the target gene in Gene Bank with our results of sequencing showed all animals had the g. + 6223G allele in the 3'UTR of myostatin which do not cause double muscle (DM) phenotype.

Effect of Natuzyme plus in diets containing wheat and canola meal on broiler performance

Volume 13, Issue 2, Winter 2012, Pages 1-10

Golestan Golestani Milanloo, seyed davood sharifi, Akbar Yaghoub far, Ali akbar Khadem

Abstract This study was carried out to investigate the effects of Natuzyme Plus (a multi enzyme) in diets containing wheat and canola meal on broiler performance. A total of 336 day-old Arbor Acres broiler chicks were used in a completely randomized design with six treatments and four replicates. Experimental diets were: 1 . Diet based on corn-soybean meal (control), 2 . Diet containing 30 precent wheat and 3 . Diet containing 30 percent wheat + 10 percent canola meal, which Natozyme was added (350 g/ton) to these diets to make diets containing enzyme (totally six treatments). Adding enzyme to diet containing wheat and canola meal increased significantly feed intake, weight gain and feed conversion ratio (FCR) at starter and overall rearing period (P< 0.01). Use of Natuzyme Plus in diet containing wheat and canola meal reduced significantly the relative weight of digestive organs in compared of same diets without enzyme. The results of this study indicate that the performance of broiler chickens fed the diets containing wheat and canola meal could be improve by supplementing with Natuzyme plus preparations.

Effect of urea-molasses liquid on the nutritive value of barley crop stubble and sheep performance

Volume 13, Issue 2, Winter 2012, Pages 11-18

Hassan Fazaeli, Esmaiel Ismaily Rad, Mohammad Babaie

Abstract This experiment was conducted to improve the nutritive value of barley stubble for two consecutive years. After harvesting crop, at first year, a completely randomized design, with a 3 × 3 factorial experiment was conducted in which 27 plots were divided into nine treatments. The treatments including zero, 2.5 and five percent urea each with zero, three and six percent molasses were mixed with water and sprayed on the stubble (three plots per treatment). During five periods, all plots were sampled before and after spraying with 10 days intervals for the chemical analyses. The crude protein (CP) was increased but crude fiber (CF) decreased in urea-molasses treatments (P< 0.05). The Ash content was increased (P< 0.05) only in the treatments contained 6 percent molasses. At the second year, after harvesting the barley crop, four hectares of stubble was divided in four parts and sprayed with four treatments of urea-molasses liquor including: 1) 2.5 percent urea, 2) 2.5 percent urea +3 percent molasses, 3) 5 percent urea, 4) 5 percent urea +3 percent molasses. Forty eight Shal ewes were divided among the treatments and grazed for 50 days. All ewes showed body weight gain, during the experiment but the body weight changes were not different between the treatments. As a result of twining, the lambing rate was increased about 25 percent for the animals received five percent urea +3 percent molasses comparing to the other treatments.

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