The influence of cows stresses resistance on cheese yield and quality

O. Chernenko, O. Chernenko, O. Chernenko, O. I. Chernenko, O. Chernenko, A. Chernenko, Олександр Миколайович Черненко, O. I. Chernenko, O. I. Chernenko, Олена Іванівна Черненко, Оlena Pokhil, O. Pokhil, O. Pokhil, O. Pokhyl, O. Pokhyl, E. Pokhil, E. Pokhil, E. Pokhil, O. Pohyl, O. Pohyl, O. Pohyl, O. Pohil, O. Pohil, Elena N. Pohyl, Elena N. Pohyl, Н. M. Pohyl, Олена Миколаївна Похил, R. Sanzhara, R. Sanzhara, R. Sanzhara, R. A. Sanjara, Роман Андрійович Cанжара, Helen Khmeleva, O. Khmeleva, E. Khmeleva, E. Khmeleva, O. Khmeleva, E. Khmeleva, O. Khmeleva, O. Khmeleva, Олена Володимирівна Хмельова, R. Mylostyvyi, R. Milostiviy, Roman Milostivyiy, R. Mylostyvyi, R. Mylostyvyi, R. Mylostyvy, R. Mylostyvyi, Роман Васильович Милостивий
{"title":"The influence of cows stresses resistance on cheese yield and quality","authors":"O. Chernenko, O. Chernenko, O. Chernenko, O. I. Chernenko, O. Chernenko, A. Chernenko, Олександр Миколайович Черненко, O. I. Chernenko, O. I. Chernenko, Олена Іванівна Черненко, Оlena Pokhil, O. Pokhil, O. Pokhil, O. Pokhyl, O. Pokhyl, E. Pokhil, E. Pokhil, E. Pokhil, O. Pohyl, O. Pohyl, O. Pohyl, O. Pohil, O. Pohil, Elena N. Pohyl, Elena N. Pohyl, Н. M. Pohyl, Олена Миколаївна Похил, R. Sanzhara, R. Sanzhara, R. Sanzhara, R. A. Sanjara, Роман Андрійович Cанжара, Helen Khmeleva, O. Khmeleva, E. Khmeleva, E. Khmeleva, O. Khmeleva, E. Khmeleva, O. Khmeleva, O. Khmeleva, Олена Володимирівна Хмельова, R. Mylostyvyi, R. Milostiviy, Roman Milostivyiy, R. Mylostyvyi, R. Mylostyvyi, R. Mylostyvy, R. Mylostyvyi, Роман Васильович Милостивий","doi":"10.15421/2021_103","DOIUrl":null,"url":null,"abstract":"The study of the influence of types of stress resistance of Ukrainian red dairy cows on milk safety indicators, technological properties of milk associated with the production of rennet cheese, and the organoleptic qualities of cheese and its yield are presented. The experimental animals were divided into three groups according to the standard deviation value of 0.67 from the average concentration of cortisol in the studied group of animals of the same age during the calving. Blood for the study of cortisol concentration in cows was taken in the morning hours before feeding after a stress load. The stress load was a complex of technological factors associated with blood sampling, fixation of animals for one hour, and the presence of veterinary specialists and support personnel. Among 117 experimental cows, groups of 12 animals were formed to study the cheese suitability of milk and cheese quality. The method of balanced analog groups was applied. The animals were of the same breed, peers in age, average body condition, gentle-dense constitution type, and the intergroup difference in body weight were not reliable. The need for these studies arose due to the constant technological stresses that animals experience in the conditions of their operation, and the effect of the type of stress resistance on the cheese suitability of milk and the quality of rennet cheese produced from it remains an insufficiently studied issue, which determined their scientific novelty and relevance. It was found that milk, which was obtained from cows with high and medium resistance to stress, meets the requirements for raw materials for cheese preparation and has high technological properties, in contrast to peers with low-stress resistance, in which milk according to the fermentation test was attributed to the third class and found unsuitable for the production of rennet cheese. This is evidenced by the twice lengthened phases of milk coagulation under milk-clotting enzyme and double quality of rennet fermenter for its coagulation, which led to a decrease in the quality of the finished product - rennet cheese \"Lyubitelskiy\", which, according to the results of the examination, had a bitter taste and a rubbery consistency. However, the yield of finished products did not depend on the group of cows differing in stress resistance. It is concluded that milk obtained from cows of the first two groups can be used for the production of cheese according to a reduced technological process, as a result of which the energy costs for the production of finished products will be reduced and the cost of cheese will decrease. Keywords: cortisol, milk safety, rennet fermentation test, coagulation and gelation phase, organoleptic properties of cheese, cheese yield   References Abeykoon, C. D., Rathnayake, R. M. C., Johansson, M., Silva, G. L. L. P., Ranadheera, C. S., Lundh, A., & Vidanarachchi, J. K. (2016). Milk Coagulation Properties and Milk Protein Genetic Variants of Three Cattle Breeds/Types in Sri Lanka. Procedia Food Science, 6, 348–351. https://doi.org/10.1016/j.profoo.2016.02.070 Beilharz, R.G., & Zeeb, K. (1982). Social dominance in dairy cattle. Applied Animal Ethology, 8, 79–97. https://doi.org/10.1016/0304-3762(82)90134-1 Bergamaschi, M., Cipolat-Gotet, C., Stocco, G., Valorz, C., Bazzoli I., Sturaro, E.  (2016). Cheesemaking in highland pastures: Milk technological properties, cream, cheese and ricotta yields, milk nutrients recovery, and products composition. Journal of Dairy Science, 99 (12), 9631–9646. https://doi.org/10.3168/jds.2016-11199 Borell, E., Dobson, H., & Prunier, A. (2007). Stress, behaviour and reproductive performance in female cattle and pigs. Hormones and Behavior, 52 (1), 130–138. https://doi.org/10.1016/j.yhbeh.2007.03.014 Carroll, J. A., & Forsberg, N. E. (2013). Influence of stress and nutrition on cattle immunity. Veterinary Clinics of North America: Food Animal Practice, 23 (1), 105–149. https://doi.org/10.1016/j.cvfa.2007.01.003 Chernenko, O. M. (2015). Molochna produktvynist golshtynskyh koriv riznyh typiv konstytucii. [Dairy performance of Holstein cows of different types of constitution]. Naukovyy visnyk «AskaniyaNova» – Scientific bulletin Askaniya-Nova. Nova Kakhovka PYEL, 8, 104–114 (in Ukrainian). Chernenko, O. M. (2015). The efficiency of the use of breeding servising bulls based on their adaptive capacity. Science and Technology Bulletein of Scientific Research Center for Biosafety and Environmental Control of Agro-Industrial Complex, 3 (1), 153–157 (in Ukrainian). Chernenko, ?. ?., Sanzhara, R. A., Shulzhenko, N. M., Mylostyvyi, R. V., & Denisyk, O. V. (2019). Heavy metals, nitrates and radionuclides in milk of cows depending on their stress resistance. Regulatory Mechanisms in Biosystems, 10(4), 526–531. https://doi.org/10.15421/021977 Davidov, R. B. (1958). Sostav i tekhnologicheskie svojstva moloka v zavisimosti ot porody zhivotnogo [Composition and technological properties of milk depending on the breed of animal]. Nauchno-issledovatelskie raboty po izucheniyu vystavochnyh zhivotnyh. Moscow: Fotoizdat BSKHV (in Russian). De Kort, E., Minor, M., Snoeren, T., van Hooijdonk, T., & van der Linden, E. (2011). Effect of calcium chelators on physical changes in casein micelles in concentrated micellar casein solutions. International Dairy Journal, 21(12), 907–913. https://doi.org/10.1016/j.idairyj.2011.06.007 Frank, J., & Griffin, T. (1989). Stress and immunity: A unifying concept. Veterinary Immunology and Immunopathology, 20 (3), 263–312. https://doi.org/10.1016/0165-2427(89)90005-6 Giesecke, W. H., & Bigalke, R. D. (1985). The effect of stress on udder health of dairy cows. Onderstepoort Journal of Veterinary Research, 52, 175–193. Gorewit, R. C., Svennersten, K., Butler, W. R., & Uvnas-Moberg, K. (1992). Endocrine responses in cows milked by hand and machine. Journal of Dairy Science, 75 (2), 443–448. https://doi.org/10.3168/jds.s0022-0302(92)77780-7 Holt, C. (2004). An equilibrium thermodynamic model of the sequestration of calcium phosphate by casein micelles and its application to the calculation of the partition of salts in milk. European Biophysics Journal, 33(5). https://doi.org/10.1007/s00249-003-0377-9 Lacetera, N., Bernabucci, U., Ronchi, B., Scalia, D., & Nardone, A. (2001). Moderate summer heat stress does not modify immunological parameters of Holstein dairy cows. International Journal of Biometeorology, 46 (1), 33–37. https://doi.org/10.1007/s00484-001-0115-x Salak-Johnson, J. L., & McGlone, J. J. (2006). Making sense of apparently conflicting data: Stress and immunity in swine and cattle. Journal of Animal Science. 85 (13), 81–88. https://doi.org/10.2527/jas.2006-538 Wenzel, C., Schonreiter-Fischer, S., & Unshelm, J. (2003). Studies on step-kick behavior and stress of cows during milking in an automatic milking system. Livestock Production Science, 83, 237–246. https://doi.org/10.1016/S0301-6226(03)00109-X Wolfenson, D., Roth, Z., & Meidan, R. (2000). Impaired reproduction in heat-stressed cattle: Basic and applied aspects. Animal Reproduction Science, 60 (2), 535–547. https://doi.org/10.1016/S0378-4320(00)00102-0","PeriodicalId":23422,"journal":{"name":"Ukrainian Journal of Ecology","volume":"4 1","pages":"224-228"},"PeriodicalIF":0.0000,"publicationDate":"2021-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Ukrainian Journal of Ecology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.15421/2021_103","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0

Abstract

The study of the influence of types of stress resistance of Ukrainian red dairy cows on milk safety indicators, technological properties of milk associated with the production of rennet cheese, and the organoleptic qualities of cheese and its yield are presented. The experimental animals were divided into three groups according to the standard deviation value of 0.67 from the average concentration of cortisol in the studied group of animals of the same age during the calving. Blood for the study of cortisol concentration in cows was taken in the morning hours before feeding after a stress load. The stress load was a complex of technological factors associated with blood sampling, fixation of animals for one hour, and the presence of veterinary specialists and support personnel. Among 117 experimental cows, groups of 12 animals were formed to study the cheese suitability of milk and cheese quality. The method of balanced analog groups was applied. The animals were of the same breed, peers in age, average body condition, gentle-dense constitution type, and the intergroup difference in body weight were not reliable. The need for these studies arose due to the constant technological stresses that animals experience in the conditions of their operation, and the effect of the type of stress resistance on the cheese suitability of milk and the quality of rennet cheese produced from it remains an insufficiently studied issue, which determined their scientific novelty and relevance. It was found that milk, which was obtained from cows with high and medium resistance to stress, meets the requirements for raw materials for cheese preparation and has high technological properties, in contrast to peers with low-stress resistance, in which milk according to the fermentation test was attributed to the third class and found unsuitable for the production of rennet cheese. This is evidenced by the twice lengthened phases of milk coagulation under milk-clotting enzyme and double quality of rennet fermenter for its coagulation, which led to a decrease in the quality of the finished product - rennet cheese "Lyubitelskiy", which, according to the results of the examination, had a bitter taste and a rubbery consistency. However, the yield of finished products did not depend on the group of cows differing in stress resistance. It is concluded that milk obtained from cows of the first two groups can be used for the production of cheese according to a reduced technological process, as a result of which the energy costs for the production of finished products will be reduced and the cost of cheese will decrease. Keywords: cortisol, milk safety, rennet fermentation test, coagulation and gelation phase, organoleptic properties of cheese, cheese yield   References Abeykoon, C. D., Rathnayake, R. M. C., Johansson, M., Silva, G. L. L. P., Ranadheera, C. S., Lundh, A., & Vidanarachchi, J. K. (2016). Milk Coagulation Properties and Milk Protein Genetic Variants of Three Cattle Breeds/Types in Sri Lanka. Procedia Food Science, 6, 348–351. https://doi.org/10.1016/j.profoo.2016.02.070 Beilharz, R.G., & Zeeb, K. (1982). Social dominance in dairy cattle. Applied Animal Ethology, 8, 79–97. https://doi.org/10.1016/0304-3762(82)90134-1 Bergamaschi, M., Cipolat-Gotet, C., Stocco, G., Valorz, C., Bazzoli I., Sturaro, E.  (2016). Cheesemaking in highland pastures: Milk technological properties, cream, cheese and ricotta yields, milk nutrients recovery, and products composition. Journal of Dairy Science, 99 (12), 9631–9646. https://doi.org/10.3168/jds.2016-11199 Borell, E., Dobson, H., & Prunier, A. (2007). Stress, behaviour and reproductive performance in female cattle and pigs. Hormones and Behavior, 52 (1), 130–138. https://doi.org/10.1016/j.yhbeh.2007.03.014 Carroll, J. A., & Forsberg, N. E. (2013). Influence of stress and nutrition on cattle immunity. Veterinary Clinics of North America: Food Animal Practice, 23 (1), 105–149. https://doi.org/10.1016/j.cvfa.2007.01.003 Chernenko, O. M. (2015). Molochna produktvynist golshtynskyh koriv riznyh typiv konstytucii. [Dairy performance of Holstein cows of different types of constitution]. Naukovyy visnyk «AskaniyaNova» – Scientific bulletin Askaniya-Nova. Nova Kakhovka PYEL, 8, 104–114 (in Ukrainian). Chernenko, O. M. (2015). The efficiency of the use of breeding servising bulls based on their adaptive capacity. Science and Technology Bulletein of Scientific Research Center for Biosafety and Environmental Control of Agro-Industrial Complex, 3 (1), 153–157 (in Ukrainian). Chernenko, ?. ?., Sanzhara, R. A., Shulzhenko, N. M., Mylostyvyi, R. V., & Denisyk, O. V. (2019). Heavy metals, nitrates and radionuclides in milk of cows depending on their stress resistance. Regulatory Mechanisms in Biosystems, 10(4), 526–531. https://doi.org/10.15421/021977 Davidov, R. B. (1958). Sostav i tekhnologicheskie svojstva moloka v zavisimosti ot porody zhivotnogo [Composition and technological properties of milk depending on the breed of animal]. Nauchno-issledovatelskie raboty po izucheniyu vystavochnyh zhivotnyh. Moscow: Fotoizdat BSKHV (in Russian). De Kort, E., Minor, M., Snoeren, T., van Hooijdonk, T., & van der Linden, E. (2011). Effect of calcium chelators on physical changes in casein micelles in concentrated micellar casein solutions. International Dairy Journal, 21(12), 907–913. https://doi.org/10.1016/j.idairyj.2011.06.007 Frank, J., & Griffin, T. (1989). Stress and immunity: A unifying concept. Veterinary Immunology and Immunopathology, 20 (3), 263–312. https://doi.org/10.1016/0165-2427(89)90005-6 Giesecke, W. H., & Bigalke, R. D. (1985). The effect of stress on udder health of dairy cows. Onderstepoort Journal of Veterinary Research, 52, 175–193. Gorewit, R. C., Svennersten, K., Butler, W. R., & Uvnas-Moberg, K. (1992). Endocrine responses in cows milked by hand and machine. Journal of Dairy Science, 75 (2), 443–448. https://doi.org/10.3168/jds.s0022-0302(92)77780-7 Holt, C. (2004). An equilibrium thermodynamic model of the sequestration of calcium phosphate by casein micelles and its application to the calculation of the partition of salts in milk. European Biophysics Journal, 33(5). https://doi.org/10.1007/s00249-003-0377-9 Lacetera, N., Bernabucci, U., Ronchi, B., Scalia, D., & Nardone, A. (2001). Moderate summer heat stress does not modify immunological parameters of Holstein dairy cows. International Journal of Biometeorology, 46 (1), 33–37. https://doi.org/10.1007/s00484-001-0115-x Salak-Johnson, J. L., & McGlone, J. J. (2006). Making sense of apparently conflicting data: Stress and immunity in swine and cattle. Journal of Animal Science. 85 (13), 81–88. https://doi.org/10.2527/jas.2006-538 Wenzel, C., Schonreiter-Fischer, S., & Unshelm, J. (2003). Studies on step-kick behavior and stress of cows during milking in an automatic milking system. Livestock Production Science, 83, 237–246. https://doi.org/10.1016/S0301-6226(03)00109-X Wolfenson, D., Roth, Z., & Meidan, R. (2000). Impaired reproduction in heat-stressed cattle: Basic and applied aspects. Animal Reproduction Science, 60 (2), 535–547. https://doi.org/10.1016/S0378-4320(00)00102-0
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奶牛抗逆性对奶酪产量和品质的影响
介绍了乌克兰红奶牛的抗逆性类型对牛奶安全指标、与凝乳酶奶酪生产相关的牛奶技术特性、奶酪的感官品质及其产量的影响。将实验动物按产犊期间与实验组同龄动物皮质醇平均浓度的标准差值0.67分为三组。用于研究奶牛皮质醇浓度的血液是在早晨应激负荷后进食前的几个小时采集的。压力负荷是与采血、动物固定一小时以及兽医专家和支持人员在场有关的复杂技术因素。选取117头试验奶牛,每组12头,研究牛奶的奶酪适宜性和奶酪品质。采用平衡模拟组法。同一品种、同龄、平均体质、温和致密体质,组间体重差异不可靠。对这些研究的需求是由于动物在其操作条件下经历的持续的技术压力,以及抗压力类型对牛奶的奶酪适用性和由其生产的凝乳酶奶酪质量的影响仍然是一个研究不足的问题,这决定了它们的科学新颖性和相关性。结果表明,高、中等抗逆性奶牛产的奶满足奶酪原料要求,具有较高的工艺性能,而低抗逆性奶牛产的奶经发酵试验属于第三类,不适合生产凝乳酶奶酪。在凝乳酶作用下,牛奶凝固的阶段延长了两倍,凝乳酶发酵罐的凝乳质量也提高了一倍,这就证明了这一点,这导致成品凝乳酶奶酪“Lyubitelskiy”的质量下降,根据检查结果,这种奶酪有苦味和橡胶状的稠度。然而,成品的产量并不取决于奶牛群体的抗逆性。综上所述,前两组奶牛的牛奶可以通过简化的工艺流程用于奶酪的生产,从而降低生产成品的能源成本,降低奶酪的成本。关键词:皮质醇,牛奶安全性,凝乳酶发酵试验,凝血和凝胶期,奶酪的感官特性,奶酪产量参考文献Abeykoon, C. D., Rathnayake, R. M. C., Johansson, M., Silva, G. L. L. P., Ranadheera, C. S., Lundh, A., & Vidanarachchi, J. K.(2016)。斯里兰卡三种牛品种/类型的乳凝固特性和乳蛋白遗传变异。食品科学进展,6,348-351。https://doi.org/10.1016/j.profoo.2016.02.070 Beilharz, r.g., & Zeeb, K.(1982)。奶牛的社会支配地位。应用动物行为学,8,79-97。https://doi.org/10.1016/0304-3762(82)90134-1 Bergamaschi, M., Cipolat-Gotet, C., Stocco, G., Valorz, C., Bazzoli I., Sturaro, E.(2016)。高原牧场的奶酪制作:牛奶的技术特性、奶油、奶酪和乳清干酪的产量、牛奶营养成分的恢复和产品成分。乳业学报,2009(12):931 - 946。https://doi.org/10.3168/jds.2016-11199 Borell, E., Dobson, H., & Prunier, A.(2007)。压力、雌性牛和猪的行为和繁殖性能。心理学报,2015(1),344 - 344。https://doi.org/10.1016/j.yhbeh.2007.03.014 Carroll, j.a., & Forsberg, n.e.(2013)。应激和营养对牛免疫力的影响。北美兽医诊所:食用动物实践,23(1),105-149。https://doi.org/10.1016/j.cvfa.2007.01.003 Chernenko, o.m.(2015)。Molochna产品学家golshtynsky koriv riznyh typiv konstytuci。[不同体质类型荷斯坦奶牛的产乳性能]。Naukovyy visnyk«AskaniyaNova»-科学公报Askaniya-Nova。Nova Kakhovka PYEL, 8,104 - 114(乌克兰语)。Chernenko, O. M.(2015)。基于适应能力的繁育服务公牛的使用效率。农工综合体生物安全与环境控制科学研究中心科技通报,3(1),153-157。Chernenko ?。?., Sanzhara, r.a., Shulzhenko, n.m., Mylostyvyi, r.v., and Denisyk, o.v.(2019)。牛奶中的重金属、硝酸盐和放射性核素取决于奶牛的抗逆性。生物工程学报,2014(4):526-531。https://doi.org/10.15421/021977 Davidov, r.b.(1958)。 介绍了乌克兰红奶牛的抗逆性类型对牛奶安全指标、与凝乳酶奶酪生产相关的牛奶技术特性、奶酪的感官品质及其产量的影响。将实验动物按产犊期间与实验组同龄动物皮质醇平均浓度的标准差值0.67分为三组。用于研究奶牛皮质醇浓度的血液是在早晨应激负荷后进食前的几个小时采集的。压力负荷是与采血、动物固定一小时以及兽医专家和支持人员在场有关的复杂技术因素。选取117头试验奶牛,每组12头,研究牛奶的奶酪适宜性和奶酪品质。采用平衡模拟组法。同一品种、同龄、平均体质、温和致密体质,组间体重差异不可靠。对这些研究的需求是由于动物在其操作条件下经历的持续的技术压力,以及抗压力类型对牛奶的奶酪适用性和由其生产的凝乳酶奶酪质量的影响仍然是一个研究不足的问题,这决定了它们的科学新颖性和相关性。结果表明,高、中等抗逆性奶牛产的奶满足奶酪原料要求,具有较高的工艺性能,而低抗逆性奶牛产的奶经发酵试验属于第三类,不适合生产凝乳酶奶酪。在凝乳酶作用下,牛奶凝固的阶段延长了两倍,凝乳酶发酵罐的凝乳质量也提高了一倍,这就证明了这一点,这导致成品凝乳酶奶酪“Lyubitelskiy”的质量下降,根据检查结果,这种奶酪有苦味和橡胶状的稠度。然而,成品的产量并不取决于奶牛群体的抗逆性。综上所述,前两组奶牛的牛奶可以通过简化的工艺流程用于奶酪的生产,从而降低生产成品的能源成本,降低奶酪的成本。关键词:皮质醇,牛奶安全性,凝乳酶发酵试验,凝血和凝胶期,奶酪的感官特性,奶酪产量参考文献Abeykoon, C. D., Rathnayake, R. M. C., Johansson, M., Silva, G. L. L. P., Ranadheera, C. S., Lundh, A., & Vidanarachchi, J. K.(2016)。斯里兰卡三种牛品种/类型的乳凝固特性和乳蛋白遗传变异。食品科学进展,6,348-351。https://doi.org/10.1016/j.profoo.2016.02.070 Beilharz, r.g., & Zeeb, K.(1982)。奶牛的社会支配地位。应用动物行为学,8,79-97。https://doi.org/10.1016/0304-3762(82)90134-1 Bergamaschi, M., Cipolat-Gotet, C., Stocco, G., Valorz, C., Bazzoli I., Sturaro, E.(2016)。高原牧场的奶酪制作:牛奶的技术特性、奶油、奶酪和乳清干酪的产量、牛奶营养成分的恢复和产品成分。乳业学报,2009(12):931 - 946。https://doi.org/10.3168/jds.2016-11199 Borell, E., Dobson, H., & Prunier, A.(2007)。压力、雌性牛和猪的行为和繁殖性能。心理学报,2015(1),344 - 344。https://doi.org/10.1016/j.yhbeh.2007.03.014 Carroll, j.a., & Forsberg, n.e.(2013)。应激和营养对牛免疫力的影响。北美兽医诊所:食用动物实践,23(1),105-149。https://doi.org/10.1016/j.cvfa.2007.01.003 Chernenko, o.m.(2015)。Molochna产品学家golshtynsky koriv riznyh typiv konstytuci。[不同体质类型荷斯坦奶牛的产乳性能]。Naukovyy visnyk«AskaniyaNova»-科学公报Askaniya-Nova。Nova Kakhovka PYEL, 8,104 - 114(乌克兰语)。Chernenko, O. M.(2015)。基于适应能力的繁育服务公牛的使用效率。农工综合体生物安全与环境控制科学研究中心科技通报,3(1),153-157。Chernenko ?。?., Sanzhara, r.a., Shulzhenko, n.m., Mylostyvyi, r.v., and Denisyk, o.v.(2019)。牛奶中的重金属、硝酸盐和放射性核素取决于奶牛的抗逆性。生物工程学报,2014(4):526-531。https://doi.org/10.15421/021977 Davidov, r.b.(1958)。 Sostav i technicheskie svojstva moloka v zavisimosti ot porody zhivotnogo[根据动物品种的牛奶成分和技术特性]。nauchno - issledodoatelskie rababoty (n .)。莫斯科:Fotoizdat BSKHV(俄语)。De Kort, E., Minor, M., Snoeren, T., van Hooijdonk, T., and van der Linden, E.(2011)。钙螯合剂对浓缩胶束酪蛋白溶液中酪蛋白胶束物理变化的影响。国际乳业杂志,21(12),907-913。https://doi.org/10.1016/j.idairyj.2011.06.007 Frank, J., & Griffin, T.(1989)。压力和免疫:一个统一的概念。兽医免疫学与免疫病理学,20(3),263-312。https://doi.org/10.1016/0165-2427(89)90005-6 Giesecke, W. H, & Bigalke, R. D.(1985)。应激对奶牛乳腺健康的影响。畜牧兽医杂志,52,175-193。Gorewit, R. C., Svennersten, K., Butler, W. R.和Uvnas-Moberg, K.(1992)。手工和机器挤奶奶牛的内分泌反应。乳品学报,32(2),444 - 444。https://doi.org/10.3168/jds.s0022-0302(92)77780-7霍尔特,C.(2004)。酪蛋白胶束固存磷酸钙的平衡热力学模型及其在牛奶中盐分配计算中的应用。生物物理学报,33(5)。https://doi.org/10.1007/s00249-003-0377-9 Lacetera, N., Bernabucci, U., Ronchi, B., Scalia, D., and Nardone, A.(2001)。适度的夏季热应激对荷斯坦奶牛的免疫指标没有影响。气象学报,46(1),33-37。https://doi.org/10.1007/s00484-001-0115-x Salak-Johnson, j.l., & McGlone, j.j.(2006)。解释明显矛盾的数据:猪和牛的压力和免疫力。动物科学学报,35(3),39 - 43。https://doi.org/10.2527/jas.2006-538 Wenzel, C., Schonreiter-Fischer, S., and Unshelm, J.(2003)。自动挤奶系统中奶牛步踢行为及应激的研究。畜牧生产科学,83,237-246。https://doi.org/10.1016/S0301-6226(03)00109-X Wolfenson, D, Roth, Z., & Meidan, R.(2000)。热应激牛的生殖障碍:基本和应用方面。动物生殖学报,36(2),535-547。https://doi.org/10.1016/s0378 - 4320 (00) 00102 - 0 Sostav i technicheskie svojstva moloka v zavisimosti ot porody zhivotnogo[根据动物品种的牛奶成分和技术特性]。nauchno - issledodoatelskie rababoty (n .)。莫斯科:Fotoizdat BSKHV(俄语)。De Kort, E., Minor, M., Snoeren, T., van Hooijdonk, T., and van der Linden, E.(2011)。钙螯合剂对浓缩胶束酪蛋白溶液中酪蛋白胶束物理变化的影响。国际乳业杂志,21(12),907-913。https://doi.org/10.1016/j.idairyj.2011.06.007 Frank, J., & Griffin, T.(1989)。压力和免疫:一个统一的概念。兽医免疫学与免疫病理学,20(3),263-312。https://doi.org/10.1016/0165-2427(89)90005-6 Giesecke, W. H, & Bigalke, R. D.(1985)。应激对奶牛乳腺健康的影响。畜牧兽医杂志,52,175-193。Gorewit, R. C., Svennersten, K., Butler, W. R.和Uvnas-Moberg, K.(1992)。手工和机器挤奶奶牛的内分泌反应。乳品学报,32(2),444 - 444。https://doi.org/10.3168/jds.s0022-0302(92)77780-7霍尔特,C.(2004)。酪蛋白胶束固存磷酸钙的平衡热力学模型及其在牛奶中盐分配计算中的应用。生物物理学报,33(5)。https://doi.org/10.1007/s00249-003-0377-9 Lacetera, N., Bernabucci, U., Ronchi, B., Scalia, D., and Nardone, A.(2001)。适度的夏季热应激对荷斯坦奶牛的免疫指标没有影响。气象学报,46(1),33-37。https://doi.org/10.1007/s00484-001-0115-x Salak-Johnson, j.l., & McGlone, j.j.(2006)。解释明显矛盾的数据:猪和牛的压力和免疫力。动物科学学报,35(3),39 - 43。https://doi.org/10.2527/jas.2006-538 Wenzel, C., Schonreiter-Fischer, S., and Unshelm, J.(2003)。自动挤奶系统中奶牛步踢行为及应激的研究。畜牧生产科学,83,237-246。https://doi.org/10.1016/S0301-6226(03)00109-X Wolfenson, D, Roth, Z., & Meidan, R.(2000)。热应激牛的生殖障碍:基本和应用方面。动物生殖学报,36(2),535-547。https://doi.org/10.1016/s0378 - 4320 (00) 00102 - 0
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