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首页> 外文期刊>Environmental microbiology >Spatial patterns and light-driven variation of microbial population gene expression in surface waters of the oligotrophic open ocean.
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Spatial patterns and light-driven variation of microbial population gene expression in surface waters of the oligotrophic open ocean.

机译:贫营养性开放海洋表层水中微生物种群基因表达的空间格局和光驱动变化。

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摘要

Because bacterioplankton production rates do not vary strongly across vast expanses of the ocean, it is unclear how variability in community structure corresponds with functional variability in the open ocean. We surveyed community transcript functional profiles at eight locations in the open ocean, in both the light and in the dark, using the genomic subsystems approach, to understand variability in gene expression patterns in surface waters. Metatranscriptomes from geographically distinct areas and collected during the day and night shared a large proportion of metabolic functional similarity (74%) at the finest metabolic resolution possible. The variability between metatranscriptomes could be explained by phylogenetic differences between libraries (Mantel test, P < 0.0001). Several key gene expression pathways, including Photosystem I, Photosystem II and ammonium uptake, demonstrated the most variability both geographically and between light and dark. Libraries were dominated by transcripts of the cyanobacterium Prochlorocococcus marinus, where most geographical and diel variability between metatranscriptomes reflected between-station differences in cyanobacterial phototrophic metabolism. Our results demonstrate that active genetic machinery in surface waters of the ocean is dominated by photosynthetic microorganisms and their site-to-site variability, while variability in the remainder of assemblages is dependent on local taxonomic composition.
机译:由于在广阔的海洋中,浮游细菌的生产率变化不大,因此尚不清楚群落结构的变化与公海的功能变化如何对应。我们使用基因组子系统方法调查了在明暗处的公海中八个地方的社区转录本功能概况,以了解地表水基因表达模式的变异性。来自地理上不同区域并在白天和晚上收集的元转录组在最大可能的代谢分辨率下具有很大比例的代谢功能相似性(74%)。元转录组之间的差异可以通过文库之间的系统发育差异来解释(Mantel检验,P <0.0001)。几个关键的基因表达途径,包括光系统I,光系统II和铵的吸收,在地理上和明暗之间表现出最大的变异性。图书馆以蓝藻原球藻的转录本为主导,其中元转录组之间的大多数地理和狄尔变异性反映了蓝细菌光养代谢的站间差异。我们的结果表明,海洋表层水中的活跃遗传机制主要由光合微生物及其站点间的差异性决定,而其余组合的差异性则取决于当地的分类学组成。

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