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首页> 外文期刊>Veterinary Microbiology >Evolution of the nasopharyngeal microbiota of beef cattle from weaning to 40 days after arrival at a feedlot
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Evolution of the nasopharyngeal microbiota of beef cattle from weaning to 40 days after arrival at a feedlot

机译:从断奶到饲喂后40天,肉牛鼻咽微生物群的演变

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摘要

Bovine respiratory disease complex (BRDc) is a major cause of morbidity and mortality in beef cattle. There is recent evidence suggesting that the nasopharyngeal microbiota has a key role in respiratory health and disease susceptibility in cattle. However, there is a paucity of knowledge regarding evolution of the nasopharyngeal microbiota when cattle are most likely to develop BRDc (i.e., from weaning to 40 days after arrival at a feedlot). The objective was to describe the evolution of the nasopharyngeal microbiota of beef cattle from weaning to 40 days after arrival at a feedlot. Deep nasal swabs (DNS) from 30 Angus-cross steers were collected at weaning, on arrival at a feedlot, and at day 40 after arrival. The DNA was extracted from DNS and the hypervariable region V3 of the 16S rRNA gene was amplified and sequenced (Illumina MiSeq platform). Nasopharyngeal microbiota underwent a profound evolution from weaning to arrival at the feedlot and from arrival to day 40, with the abundance of 92 Operational Taxonomic Units (OTUs) significantly changing over time. Mycoplasma (M. dispar and M. bovirhinis) was the most abundant genus in the nasopharynx, accounting for 53% of the total bacterial population. Because an evolving bacterial community may be less capable of resisting colonization by pathogenic bacteria, the instability of the nasopharyngeal microbiota documented in this study might explain why cattle are most likely to be affected with BRDc during the first weeks after weaning and arrival at a feedlot. (C) 2016 Elsevier B.V. All rights reserved.
机译:牛呼吸系统疾病综合症(BRDc)是肉牛发病和死亡的主要原因。最近的证据表明,鼻咽微生物群在牛的呼吸系统健康和疾病易感性中具有关键作用。但是,当牛最有可能发展BRDc时(即从到达饲养场的断奶到40天),关于鼻咽微生物群进化的知识很少。目的是描述肉牛从断奶到饲喂后40天的鼻咽微生物群的演变。在断奶时,到达饲养场时以及到达后第40天收集了30头安格斯杂交公牛的深鼻拭子(DNS)。从DNS中提取DNA,并扩增和测序16S rRNA基因的高变区V3(Illumina MiSeq平台)。从断奶到到达饲养场以及从到达到第40天,鼻咽微生物群经历了深刻的演变,随着时间的流逝,92个操作分类单位(OTU)的数量发生了显着变化。支原体(M. dispar和M. bovirhinis)是鼻咽中最丰富的属,占细菌总数的53%。由于不断发展的细菌群落对病原菌的定殖能力较弱,因此本研究中记录的鼻咽微生物群的不稳定性可能解释了为什么在断奶并到达饲养场后的头几周内牛最可能受到BRDc的影响。 (C)2016 Elsevier B.V.保留所有权利。

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