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环境中海洋酸化对沉积物微生物群落影响的量化:生态系统方法的重要性。

Quantification of the effects of ocean acidification on sediment microbial communities in the environment: the importance of ecosystem approaches.

作者信息

Hassenrück Christiane, Fink Artur, Lichtschlag Anna, Tegetmeyer Halina E, de Beer Dirk, Ramette Alban

机构信息

Max Planck Institute for Marine Microbiology, Celsiusstraße 1, 28359 Bremen, Germany

Max Planck Institute for Marine Microbiology, Celsiusstraße 1, 28359 Bremen, Germany.

出版信息

FEMS Microbiol Ecol. 2016 May;92(5):fiw027. doi: 10.1093/femsec/fiw027. Epub 2016 Feb 16.

Abstract

To understand how ocean acidification (OA) influences sediment microbial communities, naturally CO2-rich sites are increasingly being used as OA analogues. However, the characterization of these naturally CO2-rich sites is often limited to OA-related variables, neglecting additional environmental variables that may confound OA effects. Here, we used an extensive array of sediment and bottom water parameters to evaluate pH effects on sediment microbial communities at hydrothermal CO2 seeps in Papua New Guinea. The geochemical composition of the sediment pore water showed variations in the hydrothermal signature at seep sites with comparable pH, allowing the identification of sites that may better represent future OA scenarios. At these sites, we detected a 60% shift in the microbial community composition compared with reference sites, mostly related to increases in Chloroflexi sequences. pH was among the factors significantly, yet not mainly, explaining changes in microbial community composition. pH variation may therefore often not be the primary cause of microbial changes when sampling is done along complex environmental gradients. Thus, we recommend an ecosystem approach when assessing OA effects on sediment microbial communities under natural conditions. This will enable a more reliable quantification of OA effects via a reduction of potential confounding effects.

摘要

为了解海洋酸化(OA)如何影响沉积物微生物群落,富含天然二氧化碳的地点正越来越多地被用作OA模拟环境。然而,对这些富含天然二氧化碳地点的特征描述往往仅限于与OA相关的变量,而忽略了可能混淆OA效应的其他环境变量。在此,我们使用了一系列广泛的沉积物和底层水参数,来评估巴布亚新几内亚热液二氧化碳渗漏处pH值对沉积物微生物群落的影响。沉积物孔隙水的地球化学组成显示,在pH值相当的渗漏处,热液特征存在差异,这使得我们能够识别出可能更能代表未来OA情景的地点。在这些地点,我们检测到与参考地点相比,微生物群落组成发生了60%的变化,这主要与绿弯菌序列的增加有关。pH值是显著但并非主要解释微生物群落组成变化的因素之一。因此,当沿着复杂的环境梯度进行采样时,pH值变化可能通常不是微生物变化的主要原因。所以,我们建议在自然条件下评估OA对沉积物微生物群落的影响时采用生态系统方法。这将通过减少潜在的混杂效应,实现对OA效应更可靠的量化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e98c/4828923/e54585d955b3/fiw027fig1.jpg

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