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Effect of changes in the fractal structure of a littoral zone in the course of lake succession on the abundance body size sequence and biomass of beetles

机译:湖泊演替过程中沿岸带分形结构变化对甲虫丰度体型序列和生物量的影响

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摘要

Dystrophic lakes undergo natural disharmonic succession, in the course of which an increasingly complex and diverse, mosaic-like pattern of habitats evolves. In the final seral stage, the most important role is played by a spreading Sphagnum mat, which gradually reduces the lake’s open water surface area. Long-term transformations in the primary structure of lakes cause changes in the structure of lake-dwelling fauna assemblages. Knowledge of the succession mechanisms in lake fauna is essential for proper lake management. The use of fractal concepts helps to explain the character of fauna in relation to other aspects of the changing complexity of habitats. Our 12-year-long study into the succession of water beetles has covered habitats of 40 selected lakes which are diverse in terms of the fractal dimension. The taxonomic diversity and density of lake beetles increase parallel to an increase in the fractal dimension. An in-depth analysis of the fractal structure proved to be helpful in explaining the directional changes in fauna induced by the natural succession of lakes. Negative correlations appear between the body size and abundance. An increase in the density of beetles within the higher dimension fractals is counterbalanced by a change in the size of individual organisms. As a result, the biomass is constant, regardless of the fractal dimension.
机译:营养不良的湖泊经历了自然的不和谐演替,在此过程中,逐渐形成了越来越复杂和多样的,类似马赛克的栖息地模式。在最后的养蚕阶段,最重要的作用是铺张的泥炭地垫,逐渐减少了湖泊的开放水面面积。湖泊初级结构的长期变化会导致湖泊栖居动物群落结构的变化。对湖泊动物的继承机制的了解对于正确的湖泊管理至关重要。分形概念的使用有助于解释与栖息地复杂性变化的其他方面有关的动物特征。我们对水生甲虫的长达12年的研究涵盖了40个精选湖泊的生境,这些湖泊的分形维数各不相同。湖甲虫的分类学多样性和密度随分形维数的增加而增加。分形结构的深入分析被证明有助于解释湖泊自然演替引起的动物群方向变化。体重与丰度之间呈负相关。在高维分形中,甲虫密度的增加被单个生物体大小的变化所抵消。结果,生物质是恒定的,而与分形维数无关。

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