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Microbial community dynamics in a seasonally anoxic fjord: Saanich Inlet, British Columbia

机译:季节性缺氧峡湾中的微生物群落动态:不列颠哥伦比亚省萨尼奇湾

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P>Dissolved oxygen concentration plays a major role in shaping biotic interactions and nutrient flows within marine ecosystems. Throughout the global ocean, regions of low dissolved oxygen concentration (hypoxia) are a common and expanding feature of the water column, with major feedback on productivity and greenhouse gas cycling. To better understand microbial diversity underlying biogeochemical transformations within oxygen-deficient oceanic waters, we monitored and quantified bacterial and archaeal community dynamics in relation to dissolved gases and nutrients during a seasonal stratification and deep water renewal cycle in Saanich Inlet, British Columbia, a seasonally anoxic fjord. A number of microbial groups partitioned within oxygen-deficient waters including Nitrospina and SAR324 affiliated with the delta-proteobacteria, SAR406 and gamma-proteobacteria related to thiotrophic gill symbionts of deep-sea clams and mussels. Microbial diversity was highest within the hypoxic transition zone decreasing dramatically within anoxic basin waters and temporal patterns of niche partitioning were observed along defined gradients of oxygen and phosphate. These results provide a robust comparative phylogenetic framework for inferring systems metabolism of nitrogen, carbon and sulfur cycling within oxygen-deficient oceanic waters and establish Saanich Inlet as a tractable model for studying the response of microbial communities to changing levels of water column hypoxia.
机译:P>溶解氧浓度在塑造海洋生态系统中的生物相互作用和养分流方面起着重要作用。在整个全球海洋中,低溶解氧浓度(低氧)区域是水柱的共同且不断扩展的特征,在生产力和温室气体循环方面有重要反馈。为了更好地了解缺氧海洋水中潜在的生物地球化学转化的微生物多样性,我们在季节性分层和季节性缺氧的不列颠哥伦比亚省萨尼奇湾,对季节性溶解和深水更新周期中与溶解气体和养分有关的细菌和古细菌群落动态进行了监测和量化。峡湾。许多微生物群在缺氧水域内分配,包括与深海蛤and和贻贝的硫代营养性g共生有关的δ-变形细菌,SAR406和γ-变形细菌,其中包括亚硝基孢菌和SAR324。在缺氧过渡带内,微生物多样性最高,在缺氧流域水域内急剧下降,并且沿着确定的氧气和磷酸盐梯度观察到生态位分配的时间模式。这些结果为推断缺氧海洋水域中氮,碳和硫循环的系统代谢提供了有力的比较系统发育框架,并建立了Saanich入口作为研究微生物群落对水柱低氧水平变化的响应的可预测模型。

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