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首页> 外文期刊>Aquatic Ecology >The vertical distribution and abundance of Gammarus lacustris in the pelagic zone of the meromictic lakes Shira and Shunet (Khakassia, Russia)
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The vertical distribution and abundance of Gammarus lacustris in the pelagic zone of the meromictic lakes Shira and Shunet (Khakassia, Russia)

机译:淡水湖Shira和Shunet(俄罗斯Khakassia)的中上层带的Gammarus lacustris的垂直分布和丰富度

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The vertical distribution and abundance of Gammarus lacustris in the pelagic zone of two fishless meromictic lakes, L. Shira and L. Shunet, in Southern Siberia (Russia), was studied with the underwater video recording system and using vertical hauls. In both lakes, during summer stratification, Gammarus was distributed non-homogenously, with a stable peak in the metalimnion. The average depth of Gammarus population in the pelagic zone was significantly correlated with the depth of the thermo-cline. Gammarus abundances obtained using vertical plankton hauls with net were quite comparable with those obtained from video records. The peak abundance of Gammarus in the pelagic zone of the lakes observed with underwater video amounted up to 400 individuals m(-2), while the peak animal densities in the metalimnion reached 50 ind. m(-3). The data are compared with previously published abundances of Gammarus in the littoral of Lake Shira. Both littoral and pelagic can be equally important habitats for amphipods in meromictic lakes. The absence of fish in the pelagic zone, high oxygen concentration, low water temperature, increased seston concentration, elevated water density in the metalimnion and the anoxic hypolimnion can be the most probable combination of factors that are responsible for the peak of Gammarus in the metalimnion of these lakes.
机译:利用水下视频记录系统并利用垂直拖拉技术研究了俄罗斯南部西伯利亚的两个无鱼的淡紫色湖泊L. Shira和L. Shunet的浮游带中的湖底伽马象的垂直分布和丰富度。在两个湖泊中,在夏季分层期间,伽马鲁斯分布不均匀,在金属亚胺中有一个稳定的峰。中上层带伽马鲁斯种群的平均深度与热跃层的深度显着相关。使用垂直浮游生物拖网捕捞获得的伽马鲁斯丰度与从视频记录中获得的伽马鲁度丰度相当。用水下视频观察到的湖中上层带中的伽马鲁斯峰的丰度达400个人m(-2),而金属亚胺中的动物密度峰值达到50 ind。 m(-3)。将该数据与先前发表的西拉湖沿岸伽玛鲁斯河丰度进行了比较。沿海和中上层都是在淡水湖中两栖类动物同样重要的栖息地。中上层鱼类的缺乏,高氧浓度,低水温,升高的硒浓度,金属亚胺中的水密度升高和缺氧性低纤素可能是造成金属亚胺中γ-峰最高的因素的最可能组合。这些湖泊中。

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