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肉牛肠道细菌群落分析及其与采食量、生长和效率的关联。

Analysis of the gut bacterial communities in beef cattle and their association with feed intake, growth, and efficiency.

作者信息

Myer P R, Freetly H C, Wells J E, Smith T P L, Kuehn L A

出版信息

J Anim Sci. 2017 Jul;95(7):3215-3224. doi: 10.2527/jas.2016.1059.

Abstract

The impetus behind the global food security challenge is direct, with the necessity to feed almost 10 billion people by 2050. Developing a food-secure world, where people have access to a safe and sustainable food supply, is the principal goal of this challenge. To achieve this end, beef production enterprises must develop methods to produce more pounds of animal protein with less. Selection for feed-efficient beef cattle using genetic improvement technologies has helped to understand and improve the stayability and longevity of such traits within the herd. Yet genetic contributions to feed efficiency have been difficult to identify, and differing genetics, feed regimens, and environments among studies contribute to great variation and interpretation of results. With increasing evidence that hosts and their microbiomes interact in complex associations and networks, examining the gut microbial population variation in feed efficiency may lead to partially clarifying the considerable variation in the efficiency of feed utilization. The use of metagenomics and high-throughput sequencing has greatly impacted the study of the ruminant gut. The ability to interrogate these systems at great depth has permitted a greater understanding of the microbiological and molecular mechanisms involved in ruminant nutrition and health. Although the microbial communities of the reticulorumen have been well documented to date, our understanding of the populations within the gastrointestinal tract as a whole is limited. The composition and phylogenetic diversity of the gut microbial community are critical to the overall well-being of the host and must be determined to fully understand the relationship between the microbiomes within segments of the cattle gastrointestinal tract and feed efficiency, ADG, and ADFI. This review addresses recent research regarding the bacterial communities along the gastrointestinal tract of beef cattle; their association with ADG, ADFI, and feed efficiency; and the potential implications for beef production.

摘要

全球粮食安全挑战背后的推动力是直接的,因为到2050年需要养活近100亿人口。建立一个粮食安全的世界,让人们能够获得安全和可持续的食物供应,是这一挑战的主要目标。为实现这一目标,牛肉生产企业必须开发出用更少资源生产更多磅动物蛋白的方法。利用遗传改良技术选育饲料效率高的肉牛,有助于了解和提高此类性状在牛群中的留存率和寿命。然而,基因对饲料效率的贡献一直难以确定,而且不同研究之间基因、饲料方案和环境的差异导致结果有很大差异且难以解释。随着越来越多的证据表明宿主与其微生物群以复杂的关联和网络相互作用,研究饲料效率方面肠道微生物种群的变化可能会部分阐明饲料利用效率方面存在的显著差异。宏基因组学和高通量测序的应用对反刍动物肠道的研究产生了重大影响。深入研究这些系统的能力使人们对反刍动物营养和健康所涉及的微生物学和分子机制有了更深入的了解。尽管目前对瘤网胃的微生物群落已有充分记录,但我们对整个胃肠道内的微生物种群的了解仍然有限。肠道微生物群落的组成和系统发育多样性对宿主的整体健康至关重要,必须加以确定,以便充分了解肉牛胃肠道各段内的微生物群与饲料效率、平均日增重和日均采食量之间的关系。本综述阐述了关于肉牛胃肠道细菌群落的最新研究;它们与平均日增重、日均采食量和饲料效率的关联;以及对牛肉生产的潜在影响。

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