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Latitudinal Distributions and Controls of Bacterial Community Composition during the Summer of 2017 in Western Arctic Surface Waters (from the Bering Strait to the Chukchi Borderland)

机译:2017年夏季北极地表水夏季细菌群落组成的纬度分布及对照(从白腹海峡到Chukchi Bordland)

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The western Arctic Ocean is experiencing some of the most rapid environmental changes in the Arctic. However, little is known about the microbial community response to these changes. Employing observations from the summer of 2017, this study investigated latitudinal variations in bacterial community composition in surface waters between the Bering Strait and Chukchi Borderland and the factors driving the changes. Results indicate three distinctive communities. Southern Chukchi bacterial communities are associated with nutrient rich conditions, including genera such as Sulfitobacter, whereas the northern Chukchi bacterial community is dominated by SAR clades, Flavobacterium, Paraglaciecola, and Polaribacter genera associated with low nutrients and sea ice conditions. The frontal region, located on the boundary between the southern and northern Chukchi, is a transition zone with intermediate physical and biogeochemical properties; however, bacterial communities differed markedly from those found to the north and south. In the transition zone, Sphingomonas, with as yet undetermined ecological characteristics, are relatively abundant. Latitudinal distributions in bacterial community composition are mainly attributed to physical and biogeochemical characteristics, suggesting that these communities are susceptible to Arctic environmental changes. These findings provide a foundation to improve understanding of bacterial community variations in response to a rapidly changing Arctic Ocean.
机译:西北海洋正在经历北极的一些最快速的环境变化。然而,关于微生物群落对这些变化的反应很少。雇用观察2017年夏天,本研究研究了白云公司与楚科奇地区的表面水域中细菌群落组成的纬度变化以及推动变化的因素。结果表明了三个独特的社区。南楚科基细菌群落与营养素富含条件有关,包括诸如氟化杆菌的属,而北楚科基细菌群落由SAR蛹,黄杆菌,巴拉基克拉科和与低营养素和海冰条件相关的偏振杆菌。位于南部和北楚楚之间的边界的正面区域是具有中间物理和生物地球化学性质的过渡区;然而,细菌社区与北部和南部发现的细菌社区有明显不同。在过渡区,具有尚未确定的生态特征的鞘氨醇是相对丰富的。细菌群落组合物中的纬度分布主要归因于物理和生物地球化学特征,表明这些社区易于北极环境变化。这些调查结果为改善对细菌群落变异的理解,提供了响应迅速变化的北冰洋的理解。

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