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氨对肉鸡肠道微生物群和生长性能的影响。

Effects of Ammonia on Gut Microbiota and Growth Performance of Broiler Chickens.

作者信息

Han Hongyu, Zhou Ying, Liu Qingxiu, Wang Guangju, Feng Jinghai, Zhang Minhong

机构信息

State Key Laboratory of Animal Nutrition, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing 100193, China.

出版信息

Animals (Basel). 2021 Jun 8;11(6):1716. doi: 10.3390/ani11061716.

Abstract

In order to investigate the influence of ammonia on broiler intestinal microflora and growth performance of broiler chickens, 288 21-day-old male Arbor Acres broilers with a similar weight were randomly divided into four groups with different NH3 levels: 0 ppm, 15 ppm, 25 ppm, and 35 ppm. The growth performance of each group was recorded and analyzed. Additionally, 16s rRNA sequencing was performed on the cecal contents of the 0 ppm group and the 35 ppm group broilers. The results showed the following: a decrease in growth performance in broilers was observed after 35 ppm ammonia exposure for 7 days and 25 ppm ammonia exposure for 14 days. At phylum level, the relative abundance of phylum was increased after 35 ppm ammonia exposure. At genus level, ammonia increased the relative abundance of and decreased the relative abundance of , , , and Negative correlation between and growth performance, and positive correlation between bacteria genera (including , , , and ) and growth performance was observed. In conclusion, ammonia exposure caused changes in the structure of cecal microflora, and several species were either positively or negatively correlated with growth performance. These findings will help enhance our understanding of the possible mechanism by which ammonia affect the growth of broilers.

摘要

为了研究氨气对肉鸡肠道微生物群和生长性能的影响,将288只体重相近的21日龄雄性艾维茵肉鸡随机分为四组,设置不同的氨气水平:0 ppm、15 ppm、25 ppm和35 ppm。记录并分析每组的生长性能。此外,对0 ppm组和35 ppm组肉鸡的盲肠内容物进行16s rRNA测序。结果如下:暴露于35 ppm氨气7天和25 ppm氨气14天后,肉鸡的生长性能下降。在门水平上,暴露于35 ppm氨气后,某一门的相对丰度增加。在属水平上,氨气增加了某属的相对丰度,降低了某属、某属、某属、某属和某属的相对丰度。观察到某属与生长性能呈负相关,细菌属(包括某属、某属、某属、某属和某属)与生长性能呈正相关。总之,氨气暴露导致盲肠微生物群结构发生变化,几种菌属与生长性能呈正相关或负相关。这些发现将有助于加深我们对氨气影响肉鸡生长的可能机制的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb6d/8228959/2e67b9188819/animals-11-01716-g001.jpg

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