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宏基因组组装基因组揭示了丰富的海洋玫瑰杆菌 RCA 群落在分类和功能上的极大扩展。

Metagenome-assembled genomes reveal greatly expanded taxonomic and functional diversification of the abundant marine Roseobacter RCA cluster.

机构信息

Institute for Chemistry and Biology of the Marine Environment, University of Oldenburg, Carl Von Ossietzky Str. 9-11, 26129, Oldenburg, Germany.

Max Planck Institute for Marine Microbiology, Bremen, Germany.

出版信息

Microbiome. 2023 Nov 25;11(1):265. doi: 10.1186/s40168-023-01644-5.

Abstract

BACKGROUND

The RCA (Roseobacter clade affiliated) cluster belongs to the family Roseobacteracea and represents a major Roseobacter lineage in temperate to polar oceans. Despite its prevalence and abundance, only a few genomes and one described species, Planktomarina temperata, exist. To gain more insights into our limited understanding of this cluster and its taxonomic and functional diversity and biogeography, we screened metagenomic datasets from the global oceans and reconstructed metagenome-assembled genomes (MAG) affiliated to this cluster.

RESULTS

The total of 82 MAGs, plus five genomes of isolates, reveal an unexpected diversity and novel insights into the genomic features, the functional diversity, and greatly refined biogeographic patterns of the RCA cluster. This cluster is subdivided into three genera: Planktomarina, Pseudoplanktomarina, and the most deeply branching Candidatus Paraplanktomarina. Six of the eight Planktomarina species have larger genome sizes (2.44-3.12 Mbp) and higher G + C contents (46.36-53.70%) than the four Pseudoplanktomarina species (2.26-2.72 Mbp, 42.22-43.72 G + C%). Cand. Paraplanktomarina is represented only by one species with a genome size of 2.40 Mbp and a G + C content of 45.85%. Three novel species of the genera Planktomarina and Pseudoplanktomarina are validly described according to the SeqCode nomenclature for prokaryotic genomes. Aerobic anoxygenic photosynthesis (AAP) is encoded in three Planktomarina species. Unexpectedly, proteorhodopsin (PR) is encoded in the other Planktomarina and all Pseudoplanktomarina species, suggesting that this light-driven proton pump is the most important mode of acquiring complementary energy of the RCA cluster. The Pseudoplanktomarina species exhibit differences in functional traits compared to Planktomarina species and adaptations to more resource-limited conditions. An assessment of the global biogeography of the different species greatly expands the range of occurrence and shows that the different species exhibit distinct biogeographic patterns. They partially reflect the genomic features of the species.

CONCLUSIONS

Our detailed MAG-based analyses shed new light on the diversification, environmental adaptation, and global biogeography of a major lineage of pelagic bacteria. The taxonomic delineation and validation by the SeqCode nomenclature of prominent genera and species of the RCA cluster may be a promising way for a refined taxonomic identification of major prokaryotic lineages and sublineages in marine and other prokaryotic communities assessed by metagenomics approaches. Video Abstract.

摘要

背景

RCA(玫瑰杆菌群相关)群属于玫瑰杆菌科,代表了温带到极地海洋中主要的玫瑰杆菌谱系。尽管它广泛存在且丰富,但仅存在少数几个基因组和一个已描述的物种,即 Planktomarina temperata。为了更深入地了解我们对这个群及其分类和功能多样性以及生物地理学的有限认识,我们从全球海洋的宏基因组数据集中筛选并重建了与该群相关的宏基因组组装基因组(MAG)。

结果

总共 82 个 MAG,加上 5 个分离株的基因组,揭示了 RCA 群的多样性和新的基因组特征、功能多样性,并大大改进了生物地理学模式。该群分为三个属:Planktomarina、Pseudoplanktomarina 和最深入分支的候选 Paraplanktomarina。八个 Planktomarina 物种中有六个的基因组大小(2.44-3.12 Mbp)和 G+C 含量(46.36-53.70%)高于四个 Pseudoplanktomarina 物种(2.26-2.72 Mbp,42.22-43.72 G+C%)。候选 Paraplanktomarina 仅由一个基因组大小为 2.40 Mbp 和 G+C 含量为 45.85%的物种代表。根据原核基因组的 SeqCode 命名法,三个新的 Planktomarina 和 Pseudoplanktomarina 属的物种被有效描述。三个 Planktomarina 物种编码有氧厌氧光合作用(AAP)。出乎意料的是,所有的 Planktomarina 和 Pseudoplanktomarina 物种都编码了蛋白视紫红质(PR),表明这种光驱动质子泵是 RCA 群获取互补能量的最重要方式。与 Planktomarina 物种相比,Pseudoplanktomarina 物种表现出不同的功能特征,并适应了资源更有限的条件。对不同物种全球生物地理学的评估大大扩展了它们的发生范围,并表明不同的物种表现出不同的生物地理学模式。它们部分反映了物种的基因组特征。

结论

我们详细的 MAG 分析为浮游细菌主要谱系的多样化、环境适应和全球生物地理学提供了新的见解。通过 SeqCode 命名法对 RCA 群主要属和种的分类划定和验证可能是通过宏基因组方法评估海洋和其他原核生物群落中主要原核生物谱系和亚谱系进行精细分类鉴定的有前途的方法。视频摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12ad/10675870/a32cd03de364/40168_2023_1644_Fig1_HTML.jpg

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