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基因组测序揭示了公猪精子中精液细菌的多样性及其与繁殖潜力的关系。

Genomic Sequencing Reveals the Diversity of Seminal Bacteria and Relationships to Reproductive Potential in Boar Sperm.

作者信息

Zhang Jing, Liu Huan, Yang Qiangzhen, Li Peifei, Wen Yi, Han Xuejun, Li Bushe, Jiang Hongju, Li Xinhong

机构信息

Shanghai Key Lab of Veterinary Biotechnology, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China.

Shanghai Engineering Research Center of Breeding Pig, Shanghai, China.

出版信息

Front Microbiol. 2020 Aug 4;11:1873. doi: 10.3389/fmicb.2020.01873. eCollection 2020.

Abstract

A number of emerging studies suggest that pathogenic microorganisms in semen may cause a decline in the reproductive potential of spermatozoa, and the bacterial diversity and profile of ejaculated boar semen in different seasons are currently unknown. To explore the bacterial composition and changes in ejaculated boar semen from winter and summer, and the underlying mechanism of decline in sperm quality and fertility capacity in summer, 120 ejaculated semen samples were examined for bacterial communities using genomic sequencing technology, and the associations between microbial composition and sperm reproductive potential were investigated. The results showed that Proteobacteria (57.53%), Firmicutes (31.17%), Bacteroidetes (4.24%), and Actinobacteria (3.41%) are the dominant phyla in the ejaculated semen, and the dominant genera were (34.41%) and (19.93%), which belong to the phyla of Proteobacteria and Firmicutes, respectively. Interestingly, the higher diversity of bacteria in ejaculated semen of winter differs from that of summer semen, potentially due to seasonal changes related to changes in semen quality and sperm fertilizing capacity. Furthermore, the highly abundant in winter samples were positively associated with sperm quality and reproductive performance obtained from sows inseminated with such semen samples, while in contrast, the highly abundant in summer samples was negatively associated with sperm quality and reproductive potential. Additionally, our results strongly indicated that is not only a potential probiotic for semen quality and fertility potential but also beneficial for restraining the negative influence of . Overall, our findings significantly contribute to the current understanding of the phenotypes and etiology of male "summer infertility," and may represent a frontier in male reproductive disorders and possible early prevention against pathogenic bacteria.

摘要

一些新出现的研究表明,精液中的病原微生物可能导致精子的生殖潜力下降,而不同季节公猪射精精液的细菌多样性和特征目前尚不清楚。为了探究冬季和夏季公猪射精精液中的细菌组成及变化,以及夏季精子质量和受精能力下降的潜在机制,使用基因组测序技术对120份射精精液样本进行了细菌群落检测,并研究了微生物组成与精子生殖潜力之间的关联。结果表明,变形菌门(57.53%)、厚壁菌门(31.17%)、拟杆菌门(4.24%)和放线菌门(3.41%)是射精精液中的优势菌门,优势属分别是属于变形菌门的 (34.41%)和属于厚壁菌门的 (19.93%)。有趣的是,冬季射精精液中细菌的多样性高于夏季,这可能是由于与精液质量和精子受精能力变化相关的季节变化所致。此外,冬季样本中高度丰富的 与用此类精液样本人工授精的母猪所获得的精子质量和生殖性能呈正相关,而相比之下,夏季样本中高度丰富的 与精子质量和生殖潜力呈负相关。此外,我们的结果有力地表明, 不仅是精液质量和生育潜力的潜在益生菌,而且有助于抑制 的负面影响。总体而言,我们的研究结果显著有助于当前对男性“夏季不育”表型和病因的理解,可能代表男性生殖障碍的前沿领域以及针对病原菌的可能早期预防。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1a8/7438901/9cb06a4c74f8/fmicb-11-01873-g001.jpg

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