Suppr超能文献

阿斯加德古菌:一系列微生物群落中的多样性、功能及进化意义

Asgard archaea: Diversity, function, and evolutionary implications in a range of microbiomes.

作者信息

MacLeod Fraser, Kindler Gareth S, Wong Hon Lun, Chen Ray, Burns Brendan P

机构信息

School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, Australia.

Australian Centre for Astrobiology, The University of New South Wales, Sydney, Australia.

出版信息

AIMS Microbiol. 2019 Jan 30;5(1):48-61. doi: 10.3934/microbiol.2019.1.48. eCollection 2019.

Abstract

Elucidating the diversity of the Archaea has many important ecological and evolutionary implications. The Asgard superphylum of the archaea, described recently from metagenomic data, has reignited the decades-old debate surrounding the topology of the tree of life. This review synthesizes recent findings through publicly available genomes and literature to describe the current ecological and evolutionary significance of the Asgard superphylum. Asgard archaea have been found in a diverse range of microbiomes across the globe, primarily from sedimentary environments. Within these environments, positive correlations between specific members of the Asgard archaea and Candidate Division TA06 bacteria have been observed, opening up the possibility of symbiotic interactions between the groupings. Asgard archaeal genomes encode functionally diverse metabolic pathways, including the Wood-Ljungdahl pathway as a carbon-fixation strategy, putative nucleotide salvaging pathways, and novel mechanisms of phototrophy including new rhodopsins. Asgard archaea also appear to be active in nitrogen cycling. Asgard archaea encode genes involved in both dissimilatory nitrate reduction and denitrification, and for the potential to use atmospheric nitrogen or nitrite as nitrogen sources. Asgard archaea also may be involved in the transformation of sulfur compounds, indicating a putative role in sulfur cycling. To date, all Asgard archaeal genomes identified were described as obligately anaerobic. The Asgard archaea also appear to have important evolutionary implications. The presence of eukaryotic signature proteins and the affiliation of Asgard archaea in phylogenetic analyses appears to support two-domain topologies of the tree of life with eukaryotes emerging from within the domain of archaea, as opposed to the eukaryotes being a separate domain of life. Thus far, Heimdallarchaeota appears as the closest archaeal relative of eukaryotes.

摘要

阐明古菌的多样性具有许多重要的生态和进化意义。最近从宏基因组数据中描述的古菌阿斯加德超群,重新引发了围绕生命之树拓扑结构的数十年之久的争论。本综述通过公开可用的基因组和文献综合了近期的研究结果,以描述阿斯加德超群目前的生态和进化意义。在全球范围内的各种微生物群落中都发现了阿斯加德古菌,主要来自沉积环境。在这些环境中,已观察到阿斯加德古菌的特定成员与候选分类群TA06细菌之间存在正相关,这为这些类群之间的共生相互作用提供了可能性。阿斯加德古菌基因组编码功能多样的代谢途径,包括作为碳固定策略的伍德-Ljungdahl途径、推定的核苷酸补救途径,以及包括新视紫红质在内的新的光养机制。阿斯加德古菌在氮循环中似乎也很活跃。阿斯加德古菌编码参与异化硝酸盐还原和反硝化作用的基因,并且有利用大气氮或亚硝酸盐作为氮源的潜力。阿斯加德古菌也可能参与硫化合物的转化,表明其在硫循环中可能发挥作用。迄今为止,所有已鉴定的阿斯加德古菌基因组都被描述为专性厌氧。阿斯加德古菌在进化方面似乎也具有重要意义。真核生物特征蛋白的存在以及阿斯加德古菌在系统发育分析中的归属似乎支持生命之树的两域拓扑结构,即真核生物从古菌域中分化出来,而不是真核生物作为一个单独的生命域。到目前为止,海姆达尔古菌门似乎是与真核生物关系最密切的古菌近亲。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ce0/6646929/31e59385a3d1/microbiol-05-01-048-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验