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小巧而强大:超门巴氏菌对地下水环境的适应导致其基因组简单。

Small and mighty: adaptation of superphylum Patescibacteria to groundwater environment drives their genome simplicity.

机构信息

Department of Microbiology and Plant Biology, Institute for Environmental Genomics, University of Oklahoma, Norman, OK, USA.

Biological Engineering Department, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Microbiome. 2020 Apr 6;8(1):51. doi: 10.1186/s40168-020-00825-w.

Abstract

BACKGROUND

The newly defined superphylum Patescibacteria such as Parcubacteria (OD1) and Microgenomates (OP11) has been found to be prevalent in groundwater, sediment, lake, and other aquifer environments. Recently increasing attention has been paid to this diverse superphylum including > 20 candidate phyla (a large part of the candidate phylum radiation, CPR) because it refreshed our view of the tree of life. However, adaptive traits contributing to its prevalence are still not well known.

RESULTS

Here, we investigated the genomic features and metabolic pathways of Patescibacteria in groundwater through genome-resolved metagenomics analysis of > 600 Gbp sequence data. We observed that, while the members of Patescibacteria have reduced genomes (~ 1 Mbp) exclusively, functions essential to growth and reproduction such as genetic information processing were retained. Surprisingly, they have sharply reduced redundant and nonessential functions, including specific metabolic activities and stress response systems. The Patescibacteria have ultra-small cells and simplified membrane structures, including flagellar assembly, transporters, and two-component systems. Despite the lack of CRISPR viral defense, the bacteria may evade predation through deletion of common membrane phage receptors and other alternative strategies, which may explain the low representation of prophage proteins in their genomes and lack of CRISPR. By establishing the linkages between bacterial features and the groundwater environmental conditions, our results provide important insights into the functions and evolution of this CPR group.

CONCLUSIONS

We found that Patescibacteria has streamlined many functions while acquiring advantages such as avoiding phage invasion, to adapt to the groundwater environment. The unique features of small genome size, ultra-small cell size, and lacking CRISPR of this large lineage are bringing new understandings on life of Bacteria. Our results provide important insights into the mechanisms for adaptation of the superphylum in the groundwater environments, and demonstrate a case where less is more, and small is mighty.

摘要

背景

新近定义的超门巴氏菌门(例如 Parcubacteria(OD1)和 Microgenomates(OP11))在地下水、沉积物、湖泊和其他含水层环境中普遍存在。最近,人们对这个多样化的超门越来越关注,包括 >20 个候选门(候选门辐射的很大一部分,CPR),因为它刷新了我们对生命之树的认识。然而,导致其流行的适应性特征仍然知之甚少。

结果

在这里,我们通过对 >600 Gbp 序列数据的基因组解析宏基因组分析,研究了地下水中巴氏菌门的基因组特征和代谢途径。我们观察到,虽然巴氏菌门的成员具有简化的基因组(~1 Mbp),但生长和繁殖所必需的功能,如遗传信息处理,都得以保留。令人惊讶的是,它们具有明显减少的冗余和非必需功能,包括特定的代谢活性和应激反应系统。巴氏菌门具有超小的细胞和简化的膜结构,包括鞭毛组装、转运体和双组分系统。尽管缺乏 CRISPR 病毒防御系统,但细菌可能通过删除常见的膜噬菌体受体和其他替代策略来逃避捕食,这可以解释它们基因组中噬菌体蛋白的低代表性和 CRISPR 的缺乏。通过建立细菌特征与地下水环境条件之间的联系,我们的结果为这个 CPR 群体的功能和进化提供了重要的见解。

结论

我们发现巴氏菌门在简化了许多功能的同时,还获得了一些优势,例如避免噬菌体入侵,以适应地下水环境。这个大谱系具有独特的小基因组大小、超小细胞大小和缺乏 CRISPR 的特点,为细菌的生命带来了新的认识。我们的结果为超门在地下水环境中的适应机制提供了重要的见解,并证明了少即是多,小即是强的道理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/000d/7137472/c9f2550a02da/40168_2020_825_Fig1_HTML.jpg

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