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在国际空间站外的火星样环境中对共生菌团进行 shotgun 宏基因组分析

Shotgun metagenomic analysis of kombucha mutualistic community exposed to Mars-like environment outside the International Space Station.

机构信息

Institute of Biological Sciences, Universidade Federal de Minas Gerais (UFMG), Av. Antonio Carlos, 6627, Pampulha, Belo Horizonte, MG, Brazil.

Institute of Molecular Biology and Genetics of NASU, Acad. Zabolotnoho str., 150, Kyiv, 03680, Ukraine.

出版信息

Environ Microbiol. 2021 Jul;23(7):3727-3742. doi: 10.1111/1462-2920.15405. Epub 2021 Feb 1.

DOI:10.1111/1462-2920.15405
PMID:33476085
Abstract

Kombucha is a multispecies microbial ecosystem mainly composed of acetic acid bacteria and osmophilic acid-tolerant yeasts, which is used to produce a probiotic drink. Furthermore, Kombucha Mutualistic Community (KMC) has been recently proposed to be used during long space missions as both a living functional fermented product to improve astronauts' health and an efficient source of bacterial nanocellulose. In this study, we compared KMC structure and functions before and after samples were exposed to the space/Mars-like environment outside the International Space Station in order to investigate the changes related to their re-adaptation to Earth-like conditions by shotgun metagenomics, using both diversity and functional analyses of Community Ecology and Complex Networks approach. Our study revealed that the long-term exposure to space/Mars-like conditions on low Earth orbit may disorganize the KMC to such extent that it will not restore the initial community structure; however, KMC core microorganisms of the community were maintained. Nonetheless, there were no significant differences in the community functions, meaning that the KMC communities are ecologically resilient. Therefore, despite the extremely harsh conditions, key KMC species revived and provided the community with the genetic background needed to survive long periods of time under extraterrestrial conditions.

摘要

康普茶是一种多物种微生物生态系统,主要由醋酸菌和耐渗透压的酸性酵母组成,用于生产益生菌饮料。此外,康普茶共生群落(KMC)最近被提议用于长期的太空任务,既是一种改善宇航员健康的功能性发酵活菌产品,也是细菌纳米纤维素的高效来源。在这项研究中,我们比较了国际空间站外太空/火星样环境暴露前后的 KMC 结构和功能,通过宏基因组学,使用群落生态学和复杂网络方法的多样性和功能分析,研究它们重新适应地球样条件的变化。我们的研究表明,长期暴露在低地球轨道的太空/火星样条件下可能会使 KMC 严重紊乱,以至于无法恢复初始的群落结构;然而,群落的 KMC 核心微生物得到了保留。尽管如此,群落功能并没有显著差异,这意味着 KMC 群落具有生态弹性。因此,尽管条件极其恶劣,关键的 KMC 物种还是复苏了,并为群落提供了在外星条件下长时间生存所需的遗传背景。

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