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新型培养分离株的基因组学揭示了该菌属的代谢多样性。

Metabolic Versatility of the Family Revealed by the Genomics of Novel Cultured Isolates.

作者信息

Li Shan-Hui, Kang Ilnam, Cho Jang-Cheon

机构信息

Department of Biological Sciences and Bioengineering, Inha University, Incheon, Republic of Korea.

Center for Molecular and Cell Biology, Inha University, Incheon, Republic of Korea.

出版信息

Microbiol Spectr. 2023 Mar 14;11(2):e0387922. doi: 10.1128/spectrum.03879-22.

Abstract

The family (OM60/NOR5 clade) is a gammaproteobacterial group abundant and cosmopolitan in coastal seawaters and plays an important role in response to phytoplankton blooms. However, the ecophysiology of this family remains understudied because of the vast gap between phylogenetic diversity and cultured representatives. Here, using six pure cultured strains isolated from coastal seawaters, we performed in-depth genomic analyses to provide an overview of the phylogeny and metabolic capabilities of this family. The combined analyses of 16S rRNA genes, genome sequences, and functional genes relevant to taxonomy demonstrated that each strain represents a novel species. Notably, two strains belonged to the hitherto-uncultured NOR5-4 and NOR5-12 subclades. Metabolic reconstructions revealed that the six strains likely have aerobic chemo- or photoheterotrophic lifestyles; five of them possess genes for proteorhodopsin or aerobic anoxygenic phototrophy. The presence of blue- or green-tuned proteorhodopsin in suggested their ability to adapt to light conditions varying with depth or coastal-to-open ocean transition. In addition to the genes of anaplerotic CO fixation, genes encoding a complete reductive glycine pathway for CO fixation were found in three strains. Putative polysaccharide utilization loci were detected in three strains, suggesting the association with phytoplankton blooms. Read mapping of various metagenomes and metatranscriptomes showed that the six strains are widely distributed and transcriptionally active in marine environments. Overall, the six strains genomically characterized in this study expand the phylogenetic and metabolic diversity of and likely serve as a culture resource for investigating the ecophysiological features of this environmentally relevant bacterial group. Although the family (OM60/NOR5 clade) is an abundant and cosmopolitan clade widely found in coastal seas and involved in interactions with phytoplankton, a limited number of cultured isolates are available. In this study, we isolated six pure cultured strains from coastal seawaters and performed a comparative physiological and genomic analysis to give insights into the phylogeny and metabolic potential of this family. The cultured strains exhibited diverse metabolic potential by harboring genes for anaplerotic CO fixation, proteorhodopsin, and aerobic anoxygenic phototrophy. Polysaccharide utilization loci detected in some of these strains also indicated an association with phytoplankton blooms. The cultivation of novel strains of and their genomic characteristics largely expanded the phylogenetic and metabolic diversity, which is important for future ecophysiological studies.

摘要

该菌科(OM60/NOR5进化枝)是γ-变形菌纲中的一个类群,在沿海水域中数量丰富且分布广泛,在应对浮游植物大量繁殖方面发挥着重要作用。然而,由于系统发育多样性与已培养代表菌株之间存在巨大差距,该菌科的生态生理学仍未得到充分研究。在此,我们利用从沿海水域分离出的6株纯培养菌株,进行了深入的基因组分析,以概述该菌科的系统发育和代谢能力。对16S rRNA基因、基因组序列以及与分类学相关的功能基因进行综合分析表明,每株菌株都代表一个新物种。值得注意的是,有两株菌株属于迄今未培养的NOR5-4和NOR5-12亚进化枝。代谢重建显示,这6株菌株可能具有好氧化学异养或光异养的生活方式;其中5株拥有视紫红质或好氧不产氧光合作用的基因。推测存在的蓝调或绿调视紫红质表明它们有能力适应随深度变化或从沿海到公海过渡的光照条件。除了用于补充性CO固定的基因外,在3株菌株中还发现了编码完整的用于CO固定的还原性甘氨酸途径的基因。在3株菌株中检测到了假定的多糖利用位点,这表明它们与浮游植物大量繁殖有关。对各种宏基因组和宏转录组的读段定位显示,这6株菌株在海洋环境中广泛分布且具有转录活性。总体而言,本研究中对这6株菌株进行的基因组特征分析扩展了该菌科的系统发育和代谢多样性,并且很可能作为一种培养资源用于研究这个与环境相关的细菌类群的生态生理学特征。尽管该菌科(OM60/NOR5进化枝)是一个在沿海水域广泛发现且数量丰富、分布广泛并参与与浮游植物相互作用的进化枝,但可用的培养分离株数量有限。在本研究中,我们从沿海水域分离出6株纯培养的该菌科菌株,并进行了比较生理学和基因组分析,以深入了解该菌科的系统发育和代谢潜力。这些培养菌株通过拥有用于补充性CO固定、视紫红质和好氧不产氧光合作用的基因,展现出多样的代谢潜力。在其中一些菌株中检测到的多糖利用位点也表明它们与浮游植物大量繁殖有关。该菌科新菌株的培养及其基因组特征极大地扩展了系统发育和代谢多样性,这对未来的生态生理学研究很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d38d/10100682/79067f1258be/spectrum.03879-22-f001.jpg

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