Meat Science and Animal Biologics Discovery Program, Department of Animal and Dairy Sciences, University of Wisconsin, Madison, WI 53706, USA.
Meat Science and Animal Biologics Discovery Program, Department of Animal and Dairy Sciences, University of Wisconsin, Madison, WI 53706, USA.
Poult Sci. 2022 May;101(5):101786. doi: 10.1016/j.psj.2022.101786. Epub 2022 Feb 18.
Optimal broiler performance is dependent on several factors such as bird genetics, environment management, and nutrition. The gastrointestinal tract microbial ecology and metabolic activities have long been considered factors contributing to broiler performance responses. However, until recently, it was difficult to define the impact of the gastrointestinal microorganisms on the broiler host. With advances in microbiome sequencing technology, there has been a rapid increase in data generated using both experimental and commercial broiler operations. As the gastrointestinal microbiome data becomes more in-depth, opportunities to link microbiota composition to broiler performance metrics such as broiler growth rate and feed conversion efficiency have emerged. In parallel, with the increased understanding of the microbiota, there has been a shift to modulate the microbiome in order to alter metabolic patterns such as fermentation products. In this review, fermentation pathways and metabolites and the relationship with the microbiome will be discussed. Additionally, this review will connect these patterns and interpretations with current broiler performance data and the potential future directions these relationships could take the broiler industry.
肉鸡的最佳性能取决于多种因素,例如鸟类遗传、环境管理和营养。胃肠道微生物生态和代谢活动一直被认为是影响肉鸡性能反应的因素。然而,直到最近,人们还很难确定胃肠道微生物对肉鸡宿主的影响。随着微生物组测序技术的进步,使用实验和商业肉鸡操作产生的数据呈快速增长。随着胃肠道微生物组数据变得更加深入,出现了将微生物群落组成与肉鸡生长速度和饲料转化率等性能指标联系起来的机会。与此同时,随着对微生物组的理解不断加深,人们已经开始转向调节微生物组,以改变发酵产物等代谢模式。在这篇综述中,将讨论发酵途径和代谢产物以及它们与微生物组的关系。此外,本综述将把这些模式和解释与当前的肉鸡性能数据联系起来,并探讨这些关系可能为肉鸡产业带来的未来方向。