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New Microbial Biodiversity in Marine Sediments.
Annual Review of Marine Science ( IF 14.3 ) Pub Date : 2021-01-04 , DOI: 10.1146/annurev-marine-032020-014552
Brett J Baker 1 , Kathryn E Appler 1 , Xianzhe Gong 1, 2
Affiliation  

Microbes in marine sediments represent a large portion of the biosphere, and resolving their ecology is crucial for understanding global ocean processes. Single-gene diversity surveys have revealed several uncultured lineages that are widespread in ocean sediments and whose ecological roles are unknown, and advancements in the computational analysis of increasingly large genomic data sets have made it possible to reconstruct individual genomes from complex microbial communities. Using these metagenomic approaches to characterize sediments is transforming our view of microbial communities on the ocean floor and the biodiversity of the planet. In recent years, marine sediments have been a prominent source of new lineages in the tree of life. The incorporation of these lineages into existing phylogenies has revealed that many belong to distinct phyla, including archaeal phyla that are advancing our understanding of the origins of cellular complexity and eukaryotes. Detailed comparisons of the metabolic potentials of these new lineages have made it clear that uncultured bacteria and archaea are capable of mediating key previously undescribed steps in carbon and nutrient cycling.

中文翻译:


海洋沉积物中的新微生物生物多样性。

海洋沉积物中的微生物占生物圈的很大一部分,解决其生态问题对于理解全球海洋过程至关重要。单基因多样性调查揭示了几种未培养的谱系,这些谱系分布在海洋沉积物中,并且其生态作用尚不清楚,并且对越来越大的基因组数据集进行计算分析的进展使得从复杂的微生物群落重建单个基因组成为可能。使用这些宏基因组学方法表征沉积物正在改变我们对海底微生物群落和地球生物多样性的看法。近年来,海洋沉积物已成为生命树中新世系的重要来源。这些谱系并入现有系统发育树后发现,许多谱系属于不同的系统发育树,包括古菌门,这有助于我们进一步了解细胞复杂性和真核生物的起源。这些新谱系的代谢潜能的详细比较清楚表明,未培养的细菌和古细菌能够介导碳和营养循环中以前未描述的关键步骤。

更新日期:2021-01-05
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