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北太平洋亚热带环流中,束毛藻及其微生物组在日夜周期中的协调基因表达。

Coordinated gene expression between Trichodesmium and its microbiome over day-night cycles in the North Pacific Subtropical Gyre.

机构信息

Department of Earth and Environmental Sciences, Columbia University, New York, NY, 10025, USA.

Lamont-Doherty Earth Observatory, Palisades, NY, 10964, USA.

出版信息

ISME J. 2018 Apr;12(4):997-1007. doi: 10.1038/s41396-017-0041-5. Epub 2018 Jan 30.

Abstract

Trichodesmium is a widespread, N fixing marine cyanobacterium that drives inputs of newly fixed nitrogen and carbon into the oligotrophic ecosystems where it occurs. Colonies of Trichodesmium ubiquitously occur with heterotrophic bacteria that make up a diverse microbiome, and interactions within this Trichodesmium holobiont could influence the fate of fixed carbon and nitrogen. Metatranscriptome sequencing was performed on Trichodesmium colonies collected during high-frequency Lagrangian sampling in the North Pacific Subtropical Gyre (NPSG) to identify possible interactions between the Trichodesmium host and microbiome over day-night cycles. Here we show significantly coordinated patterns of gene expression between host and microbiome, many of which had significant day-night periodicity. The functions of the co-expressed genes suggested a suite of interactions within the holobiont linked to key resources including nitrogen, carbon, and iron. Evidence of microbiome reliance on Trichodesmium-derived vitamin B12 was also detected in co-expression patterns, highlighting a dependency that could shape holobiont community structure. Collectively, these patterns of expression suggest that biotic interactions could influence colony cycling of resources like nitrogen and vitamin B12, and decouple activities, like N fixation, from typical abiotic drivers of Trichodesmium physiological ecology.

摘要

束毛藻是一种广泛分布的固氮海洋蓝藻,它将新固定的氮和碳输入到贫营养的生态系统中,而这些生态系统正是束毛藻的栖息地。束毛藻的群体中普遍存在着异养细菌,这些细菌构成了一个多样化的微生物组,而这个束毛藻整体共生体内部的相互作用可能会影响固定碳和氮的命运。本研究对北太平洋亚热带环流(NPSG)中高频拉格朗日采样过程中采集的束毛藻群体进行了宏转录组测序,以确定在昼夜周期内,束毛藻宿主与其微生物组之间可能存在的相互作用。结果表明,宿主和微生物组之间存在显著的基因表达协同模式,其中许多基因具有显著的昼夜周期性。共表达基因的功能表明,在整个共生体中存在一系列相互作用,这些相互作用与氮、碳和铁等关键资源有关。在共表达模式中也检测到了微生物组对束毛藻衍生维生素 B12 的依赖,这突出了这种依赖性可能会影响共生体群落结构。总之,这些表达模式表明,生物相互作用可能会影响氮和维生素 B12 等资源的群体循环,并使氮固定等活动与束毛藻生理生态学的典型非生物驱动因素脱钩。

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