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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Diatom assemblages promote ice formation in large lakes
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Diatom assemblages promote ice formation in large lakes

机译:硅藻组合物促进大湖中的冰形成

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We present evidence for the directed formation of ice by planktonic communities dominated by filamentous diatoms sampled from the ice-covered Laurentian Great Lakes. We hypothesize that ice formation promotes attachment of these non-motile phytoplankton to overlying ice, thereby maintaining a favorable position for the diatoms in the photic zone. However, it is unclear whether the diatoms themselves are responsible for ice nucleation. Scanning electron microscopy revealed associations of bacterial epiphytes with the dominant diatoms of the phytoplankton assemblage, and bacteria isolated from the phytoplankton showed elevated temperatures of crystallization (T c) as high as -3 °C. Ice nucleation-active bacteria were identified as belonging to the genus Pseudomonas, but we could not demonstrate that they were sufficiently abundant to incite the observed freezing. Regardless of the source of ice nucleation activity, the resulting production of frazil ice may provide a means for the diatoms to be recruited to the overlying lake ice, thereby increasing their fitness. Bacterial epiphytes are likewise expected to benefit from their association with the diatoms as recipients of organic carbon excreted by their hosts. This novel mechanism illuminates a previously undescribed stage of the life cycle of the meroplanktonic diatoms that bloom in Lake Erie and other Great Lakes during winter and offers a model relevant to aquatic ecosystems having seasonal ice cover around the world.
机译:我们提供的证据表明,浮游生物群落直接形成了冰,而浮游生物群落则是从冰雪覆盖的劳伦山脉五大湖中采样的丝状硅藻主导的。我们假设冰的形成促进了这些非游动性浮游植物与上覆冰的附着,从而为光化带中的硅藻保持了有利的位置。但是,尚不清楚硅藻本身是否负责冰的成核。扫描电子显微镜显示细菌附生植物与浮游植物集合体的主要硅藻相关,从浮游植物中分离出的细菌显示出升高的结晶温度(T c)高达-3°C。冰核活性细菌被鉴定为假单胞菌属,但我们无法证明它们足够丰富以激发观察到的冰冻。不管冰成核活性的来源如何,所产生的巴西冰都可能为硅藻被吸收到上覆的湖冰中提供一种手段,从而提高了它们的适应性。细菌附生植物也有望从它们与硅藻的结合中受益,因为它们的宿主会排泄有机碳。这种新颖的机理阐明了以前在冬季伊利湖和其他大湖中盛开的浮游硅藻硅藻生命周期的一个先前未曾描述的阶段,并提供了与全世界季节性冰盖的水生生态系统有关的模型。

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