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宏基因组学和培养揭示鸡肠道微生物组中广泛的微生物多样性。

Extensive microbial diversity within the chicken gut microbiome revealed by metagenomics and culture.

作者信息

Gilroy Rachel, Ravi Anuradha, Getino Maria, Pursley Isabella, Horton Daniel L, Alikhan Nabil-Fareed, Baker Dave, Gharbi Karim, Hall Neil, Watson Mick, Adriaenssens Evelien M, Foster-Nyarko Ebenezer, Jarju Sheikh, Secka Arss, Antonio Martin, Oren Aharon, Chaudhuri Roy R, La Ragione Roberto, Hildebrand Falk, Pallen Mark J

机构信息

Quadram Institute Bioscience, Norwich, UK.

School of Veterinary Medicine, University of Surrey, Guildford, UK.

出版信息

PeerJ. 2021 Apr 6;9:e10941. doi: 10.7717/peerj.10941. eCollection 2021.

Abstract

BACKGROUND

The chicken is the most abundant food animal in the world. However, despite its importance, the chicken gut microbiome remains largely undefined. Here, we exploit culture-independent and culture-dependent approaches to reveal extensive taxonomic diversity within this complex microbial community.

RESULTS

We performed metagenomic sequencing of fifty chicken faecal samples from two breeds and analysed these, alongside all ( = 582) relevant publicly available chicken metagenomes, to cluster over 20 million non-redundant genes and to construct over 5,500 metagenome-assembled bacterial genomes. In addition, we recovered nearly 600 bacteriophage genomes. This represents the most comprehensive view of taxonomic diversity within the chicken gut microbiome to date, encompassing hundreds of novel candidate bacterial genera and species. To provide a stable, clear and memorable nomenclature for novel species, we devised a scalable combinatorial system for the creation of hundreds of well-formed Latin binomials. We cultured and genome-sequenced bacterial isolates from chicken faeces, documenting over forty novel species, together with three species from the genus , including the newly named species .

CONCLUSIONS

Our metagenomic and culture-based analyses provide new insights into the bacterial, archaeal and bacteriophage components of the chicken gut microbiome. The resulting datasets expand the known diversity of the chicken gut microbiome and provide a key resource for future high-resolution taxonomic and functional studies on the chicken gut microbiome.

摘要

背景

鸡是世界上数量最多的食用动物。然而,尽管其地位重要,但鸡的肠道微生物群在很大程度上仍不明确。在此,我们运用不依赖培养和依赖培养的方法,来揭示这个复杂微生物群落中广泛的分类多样性。

结果

我们对来自两个品种的50份鸡粪便样本进行了宏基因组测序,并将这些样本与所有(=582)相关的公开可用鸡宏基因组一起进行分析,以对超过2000万个非冗余基因进行聚类,并构建超过5500个宏基因组组装细菌基因组。此外,我们还获得了近600个噬菌体基因组。这代表了迄今为止对鸡肠道微生物群分类多样性最全面的认识,涵盖了数百个新的候选细菌属和种。为了为新物种提供一个稳定、清晰且易于记忆的命名法,我们设计了一个可扩展的组合系统,用于创建数百个格式良好的拉丁双名法。我们培养了来自鸡粪便的细菌分离株并对其进行基因组测序,记录了40多个新物种,以及来自该属的3个物种,包括新命名的物种。

结论

我们基于宏基因组和培养的分析为鸡肠道微生物群的细菌、古菌和噬菌体成分提供了新的见解。所得数据集扩展了鸡肠道微生物群的已知多样性,并为未来对鸡肠道微生物群进行高分辨率分类和功能研究提供了关键资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c292/8035907/93b0085f34f6/peerj-09-10941-g001.jpg

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