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不同增重率一岁肉牛公牛精液微生物群和抗生素抗性的纵向特征分析

A Longitudinal Characterization of the Seminal Microbiota and Antibiotic Resistance in Yearling Beef Bulls Subjected to Different Rates of Gain.

作者信息

Webb Emily M, Holman Devin B, Schmidt Kaycie N, Crouse Matthew S, Dahlen Carl R, Cushman Robert A, Snider Alexandria P, McCarthy Kacie L, Amat Samat

机构信息

Department of Microbiological Sciences, North Dakota State University, Fargo, North Dakota, USA.

Lacombe Research and Development Centre, Agriculture and Agri-Food Canada, Lacombe, Alberta, Canada.

出版信息

Microbiol Spectr. 2023 Mar 14;11(2):e0518022. doi: 10.1128/spectrum.05180-22.

Abstract

In this study, we evaluated the seminal and fecal microbiota in yearling beef bulls fed a common diet to achieve moderate (1.13 kg/day) or high (1.80 kg/day) rates of weight gain. Semen samples were collected on days 0 and 112 of dietary intervention ( = 19/group) as well as postbreeding ( = 6/group) using electroejaculation, and the microbiota was assessed using 16S rRNA gene sequencing, quantitative PCR (qPCR), and culturing. The fecal microbiota was also evaluated, and its similarity with seminal microbiota was assessed. A subset of seminal bacterial isolates ( = 33) was screened for resistance against 28 antibiotics. A complex and dynamic microbiota was detected in bovine semen, and the community structure was affected by sampling time ( = 0.16, 0.001). Microbial richness increased significantly from day 0 to day 112, and diversity increased after breeding (0.05). Seminal microbiota remained unaffected by the differential rates of gain, and its overall composition was distinct from fecal microbiota, with only 6% of the taxa shared between them. A total of 364 isolates from 49 different genera were recovered under aerobic and anaerobic culturing. Among these seminal isolates were pathogenic species and those resistant to several antibiotics. Overall, our results suggest that bovine semen harbors a rich and complex microbiota which changes over time and during the breeding season but appears to be resilient to differential gains achieved via a common diet. Seminal microbiota is distinct from the fecal microbiota and harbors potentially pathogenic and antibiotic-resistant bacterial species. Increasing evidence from human and other animal species supports the existence of a commensal microbiota in semen and that this seminal microbiota may influence not only sperm quality and fertility but also female reproduction. Seminal microbiota in bulls and its evolution and factors shaping this community, however, remain largely underexplored. In this study, we characterized the seminal microbiota of yearling beef bulls and its response to the bull age, different weight gains, and mating activity. We compared bacterial composition between seminal and fecal microbiota and evaluated the diversity of culturable seminal bacteria and their antimicrobial resistance. Our results obtained from sequencing, culturing, and antibiotic susceptibility testing provide novel information on the taxonomic composition, evolution, and factors shaping the seminal microbiota of yearling beef bulls. This information will serve as an important basis for further understanding of the seminal microbiome and its involvement in reproductive health and fertility in cattle.

摘要

在本研究中,我们评估了采食普通日粮以实现中等(1.13千克/天)或高(1.80千克/天)增重率的一岁肉牛公牛的精液和粪便微生物群。在日粮干预的第0天和第112天(每组n = 19)以及配种后(每组n = 6),采用电刺激采精法采集精液样本,并使用16S rRNA基因测序、定量聚合酶链反应(qPCR)和培养法评估微生物群。还评估了粪便微生物群,并评估了其与精液微生物群的相似性。对一部分精液细菌分离株(n = 33)进行了28种抗生素的耐药性筛选。在牛精液中检测到一个复杂且动态变化的微生物群,群落结构受采样时间影响(P = 0.16,P = 0.001)。从第0天到第112天,微生物丰富度显著增加,配种后多样性增加(P < 0.05)。精液微生物群不受不同增重率的影响,其总体组成与粪便微生物群不同,两者之间只有6%的分类群相同。在需氧和厌氧培养条件下,共分离出49个不同属的364株细菌。这些精液分离株中包括致病菌种和对几种抗生素耐药的菌种。总体而言,我们的结果表明,牛精液中存在丰富且复杂的微生物群,其在时间和繁殖季节会发生变化,但似乎对通过普通日粮实现的不同增重具有抗性。精液微生物群与粪便微生物群不同,含有潜在的致病和耐药细菌物种。来自人类和其他动物物种的越来越多的证据支持精液中存在共生微生物群,并且这种精液微生物群不仅可能影响精子质量和生育能力,还可能影响雌性生殖。然而,公牛精液微生物群及其演变以及塑造这个群落的因素在很大程度上仍未得到充分探索。在本研究中,我们对一岁肉牛公牛的精液微生物群及其对公牛年龄、不同增重和交配活动的反应进行了表征。我们比较了精液和粪便微生物群之间的细菌组成,并评估了可培养精液细菌的多样性及其抗菌耐药性。我们通过测序、培养和抗生素敏感性测试获得的结果提供了关于一岁肉牛公牛精液微生物群的分类组成、演变和塑造因素的新信息。这些信息将作为进一步了解精液微生物组及其在牛生殖健康和生育能力中作用的重要基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8329/10100376/bcbe03502508/spectrum.05180-22-f001.jpg

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