Ratriyanto Adi, Mosenthin Rainer
Department of Animal Science, Faculty of Agriculture, Sebelas Maret University, Surakarta, Indonesia.
Institute of Animal Science, University of Hohenheim, Stuttgart, Germany.
J Anim Physiol Anim Nutr (Berl). 2018 Dec;102(6):1634-1650. doi: 10.1111/jpn.12990. Epub 2018 Sep 20.
This review focuses on the osmoregulatory function of betaine and its effect in terms of alleviating heat stress in poultry. Poultry appear to be particularly sensitive to temperature-associated environmental challenges, especially heat stress. High ambient temperatures are deleterious to productive performance in poultry, including broilers, laying hens, quails and turkeys, resulting in considerable economic losses. Heat stress impairs overall poultry production by decreasing feed intake and negatively affecting intestinal development, leading to reduced nutrient digestibility. Apart from inducing a high mortality rate, heat stress is known to depress growth rate and reduce meat yield in broilers. In layers, lower feed intake impairs ovarian function, leading to decreased feed efficiency, egg production and egg quality. In addition, reduced immune functions, such as thyroid activity and antibody production, are evident in poultry exposed to heat stress. Heat stress increases the production of oxidants, causing oxidative stress and lipid peroxidation of cell membranes. Poultry respond physiologically and behaviourally when encountering the negative effects of heat stress, attempting to return the body to homeostasis. This requires energy at the expense of weight gain or egg production. Due to its zwitterionic structure, betaine has osmoprotective properties that aid in protecting intestinal cell proteins and enzymes from environmental stress, including high ambient temperature, thereby counteracting performance losses. Betaine also exerts an osmoregulatory role in cells, regulating water balance, and this results in more stable tissue metabolism. Inclusion of betaine in the diet may be beneficial for alleviating physical reactions to heat stress, as indicated by increases in nutrient digestibility. In broilers, betaine supplementation increases weight gain and breast muscle yield, while improving feed conversion. In layers, betaine supplementation improves egg production, egg quality traits and immune indices. In conclusion, due to its osmoregulatory functions, betaine plays an important role in alleviating heat stress in poultry.
本综述聚焦于甜菜碱的渗透调节功能及其在缓解家禽热应激方面的作用。家禽似乎对与温度相关的环境挑战特别敏感,尤其是热应激。高环境温度对家禽(包括肉鸡、蛋鸡、鹌鹑和火鸡)的生产性能有害,会导致相当大的经济损失。热应激通过减少采食量和对肠道发育产生负面影响,损害家禽的整体生产,导致营养物质消化率降低。除了导致高死亡率外,热应激还会降低肉鸡的生长速度并减少肉产量。在蛋鸡中,采食量降低会损害卵巢功能,导致饲料效率、产蛋量和蛋品质下降。此外,暴露于热应激的家禽会出现免疫功能降低,如甲状腺活性和抗体产生减少。热应激会增加氧化剂的产生,导致氧化应激和细胞膜脂质过氧化。家禽在遇到热应激的负面影响时会在生理和行为上做出反应,试图使身体恢复内稳态。这需要能量,代价是体重增加或产蛋量下降。由于其两性离子结构,甜菜碱具有渗透保护特性,有助于保护肠道细胞蛋白质和酶免受包括高环境温度在内的环境压力影响,从而抵消生产性能损失。甜菜碱在细胞中还发挥渗透调节作用,调节水平衡,从而使组织代谢更稳定。日粮中添加甜菜碱可能有助于减轻对热应激的生理反应,营养物质消化率的提高表明了这一点。在肉鸡中,添加甜菜碱可增加体重和胸肌产量,同时提高饲料转化率。在蛋鸡中,添加甜菜碱可提高产蛋量、蛋品质性状和免疫指标。总之,由于其渗透调节功能,甜菜碱在缓解家禽热应激方面发挥着重要作用。