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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Proteorhodopsin variability and distribution in the North Pacific Subtropical Gyre
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Proteorhodopsin variability and distribution in the North Pacific Subtropical Gyre

机译:北太平洋亚热带艺术的植物霍博蛋白变异性和分布

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Proteorhodopsin is a light-activated retinal-containing proton pump found in many marine bacteria. These photoproteins are globally distributed in the ocean's photic zone and are capable of generating a proton motive force across the cell membrane. We investigated the phylogenetic diversity, distribution, and abundance of proteorhodopsin encoding genes in free-living bacterioplankton in the North Pacific Subtropical Gyre, leveraging a gene catalog derived from metagenomic samples from the ocean's surface to 1000 m depth. Proteorhodopsin genes were identified at all depths sampled, but were most abundant at depths shallower than 200 m. The majority of proteorhodopsin gene sequences (60.9%) belonged to members of the SAR11 lineage, with remaining sequences distributed among other diverse taxa. We observed variations in the conserved residues involved in ion pumping and spectral tuning, and biochemically confirmed four different proton pumping proteorhodopsin motifs, including one unique to deep-water SAR11. We also identified a new group of putative proteorhodopsins having unknown function. Our results reveal a broad organismal and unexpected depth distribution for different proteorhodopsin types, as well as substantial within-taxon variability. These data provide a framework for exploring the ecological relevance of proteorhodopsins and their spatiotemporal variation and function in heterotrophic bacteria in the open ocean.
机译:蛋白质红糖蛋白是在许多海洋细菌中发现的含有光活性的含视网膜质子泵。这些光蛋白在海洋的光区内全球分布,并且能够在细胞膜上产生质子动力。我们调查了北太平洋亚热带的自由生物菌株在北太平洋亚热带孢子的自由活菌菌的系统发育多样性,分布和丰度和丰度,利用来自海洋表面从海洋表面衍生的基因目录到1000米深度。在取样的所有深度都鉴定了蛋白质杂蛋白基因,但在深度较大的深度较大,浅,比200米浅。大多数蛋白质酚蛋白基因序列(60.9%)属于SAR11谱系的成员,其中剩余序列分布在其他不同的分类群中。我们观察了所涉及离子泵送和光谱调谐的保守残留物的变化,并且生物化学证实了四种不同的质子泵浦蛋白杏仁蛋白基序,包括深水SAR11独特的一个。我们还确定了一个具有未知功能的新推定蛋白质孢子组。我们的结果揭示了不同蛋白质杂波类型的广泛的有机体和意想不到的深度分布,以及大量的分类内变异性。这些数据提供了一种探索植物霍博(Proteorhodopsins)的生态相关性及其时空变异的框架及其在公开海洋中异养细菌的功能。

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