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How Does Mining Salinisation Gradient Affect the Structure and Functioning of Macroinvertebrate Communities?

机译:采矿盐水化梯度如何影响大型椎体界群落的结构和运作?

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Elevated salinity creates degrading conditions for the development of aquatic biota in different regions of the world. There is a need for research on freshwater salinisation in order to understand how this stressor alters ecosystem function and to predict changes in biodiversity globally. Such data are missing from Central Europe, and therefore, the presented study was performed in inland anthropogenic ponds with different salinity levels located in the second largest European hard coal basin. The researcher indicated a positive correlation between water salinity and the biomass and density of macrozoobenthos as well as the percentage of shredders and the abundance of alien species, whereas there was a decrease in taxa diversity and richness and the abundance of filtering and gathering collectors and predators along with increasing salinity. The survey showed that a high level of nutrients and organic matter were also significantly correlated with the distribution of the macroinvertebrate taxa and functional feeding groups. The conducted research confirmed that mining salinisation acts as a strong filter that shapes the biodiversity because it affects the composition, abundance, biomass and functional traits of benthic macroinvertebrates and significantly contributes to the invasion of alien species.
机译:高盐度为世界不同地区的水生生物田的发展产生了有辱人格的条件。需要研究淡水盐水化,以了解这种压力源如何改变生态系统功能,并在全球范围内预测生物多样性的变化。中欧缺少此类数据,因此,本研究在内陆人为池塘中进行,其不同盐度水平位于第二大欧洲硬煤盆地。研究人员表明了水盐度与宏ZoObenthos的生物量和生物量和密度之间的正相关性以及粉碎剂的百分比和外来物种的丰富百分比,而分类群多样性和丰富性和丰富的过滤和收集者和捕食者的丰富随着盐度的增加。该调查显示,营养素和有机物高水平的营养物质和有机物质也与近似脊椎泻物和功能性喂养基团的分布显着相关。进行的研究证实,采矿盐水化作为塑造生物多样性的强过滤器,因为它影响了底栖大型椎骨的组成,丰度,生物量和功能性状,并显着促进了外星物种的侵袭。

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