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首页> 外文期刊>FEMS Microbiology Ecology >Seasonal changes in microbial community structure and activity imply winter production is linked to summer hypoxia in a large lake
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Seasonal changes in microbial community structure and activity imply winter production is linked to summer hypoxia in a large lake

机译:微生物群落结构和活动的季节变化意味着冬季生产与大型湖泊的夏季缺氧相关联

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Carbon and nutrient cycles in large temperate lakes such as Lake Erie are primarily driven by phototrophic and heterotrophic microorganisms, although our understanding of these is often constrained to late spring through summer due to logistical constraints. During periods of > 90% ice cover in February of 2008, 2009, and 2010, we collected samples from an icebreaker for an examination of bacterial production as well as microbial community structure. In comparison with summer months (August 2002 and 2010), we tested hypotheses concerning seasonal changes in microbial community diversity and production. Bacterial production estimates were c. 2 orders of magnitude higher (volume normalized) in summer relative to winter. Our observations further demonstrate that the microbial community, including single-celled phototrophs, varied in composition between August and February. Sediment traps deployed and collected over a 3 year period (2008-2011) confirmed that carbon export was ongoing and not limiting winter production. The results support the notion that active primary producers in winter months export carbon to the sediments that is not consumed until the warmer seasons. The establishment of this linkage is a critical observation in efforts to understand the extent and severity of annual summertime formations of a zone of regional hypoxia in Lake Erie.
机译:诸如湖伊利之类的大型温带湖泊中的碳和养分循环主要由光营养和异养微生物驱动,尽管我们对这些的理解通常受到后夏天的影响,但由于后勤约束,通常会受到夏季的延迟限制。 2008年2月,2009年2月和2010年2月的90%冰盖期间,我们从破冰船中收集了样品以检查细菌生产以及微生物群落结构。与夏季(2002年8月和2010年8月)相比,我们测试了关于微生物群落多样性和生产季节变化的假设。细菌生产估计是c。夏季相对于冬季,夏季较高的2个数量级(体积标准化)。我们的观察结果进一步证明了微生物群落,包括单细胞光学术,在8月和2月之间的组成中变化。部署并收集的沉积物陷阱在3年(2008-2011)确认碳出口正在进行,而不是限制冬季生产。结果支持冬季活跃的主要生产者在冬季的主要生产商出口碳对未被消耗的沉积物出口,直到温暖的季节。这种联系的建立是在努力理解伊利湖区域缺氧区的年度夏季地层的程度和严重程度的关键观察。

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