首页> 外文期刊>The Science of the Total Environment >Responses of macroinvertebrate assemblages to environmental variations in the river-oxbow lake system of the Zoige wetland (Bai River, Qinghai-Tibet Plateau)
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Responses of macroinvertebrate assemblages to environmental variations in the river-oxbow lake system of the Zoige wetland (Bai River, Qinghai-Tibet Plateau)

机译:若尔盖湿地(青藏高原白河)的河-牛湖系统中大型无脊椎动物组合对环境变化的响应

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The biodiversity value of river-oxbow lake systems in high plateau peatland has been little recognized, and there are many gaps in our understanding of their ecology. In this study, we investigated the river-oxbow lake system of the Bai River basin, the main tributary of the Yellow River Source in the Zoige wetland from 2015 to 2016, in attempt to show how the environmental variations, especially hydrological connectivity and macrophyte biomass in the river-oxbow lake system influenced macroinvertebrates. Habitat patches were investigated in 11 river cross-sections and 18 oxbow lakes in the Bai River basin. Through hierarchical clustering and non-metric multidimensional scaling, four main types of habitats were identified in the river-oxbow lake system in the plateau: sand-bed river, cobble-bed river, sparse-macrophyte oxbow lake, and luxuriant-macrophyte oxbow lake. The luxuriant-macrophyte oxbows were characterized by high dissolved oxygen concentrations, alkalinity, and higher macroinvertebrate richness, density, biomass, and the Improved Shannon-Wiener Index in comparison to the other habitat types. Additionally, influential patterns of environmental variables on macroinvertebrates were analyzed using redundancy analysis. Lasso regression models were established to describe how macroinvertebrate density responded to macrophyte biomass and other variables, and how macrophyte biomass responded to hydrological connectivity and oxbow size. It was revealed that reduced hydrological connectivity and reduced oxbow size played important roles in increasing the biomass of submerged macrophyte, and dense macrophyte was directly responsible for the high biodiversity of macroinvertebrates. Different from the commonly believed unimodal influential pattern that medium hydrological connectivity supports the highest biodiversity in oxbow lakes reported in previous studies, macroinvertebrates in the high plateau river-oxbow lake systems benefited from low connectivity and reduced size. Oxbow lakes, especially those covered with luxuriant macrophytes, diversified the macroinvertebrate assemblages and enhanced primary consumer biomass at the regional scale. (c) 2018 Elsevier B.V. All rights reserved.
机译:在高原泥炭地上,牛河湖泊系统的生物多样性价值鲜为人知,而且我们对其生态学的理解还存在许多空白。在这项研究中,我们调查了2015年至2016年佐伊格湿地黄河主要支流白河流域的河牛湖系统,试图揭示环境变化,特别是水文连通性和大型植物生物量的变化在河牛湖系统中,大型无脊椎动物受到了影响。在白河流域的11个河流横断面和18个牛弓湖中调查了栖息地斑块。通过分层聚类和非度量多维标度,在高原的河牛湖系统中确定了四种主要的栖息地类型:沙床河,鹅卵石河,稀疏巨藻牛弓湖和茂盛巨藻牛弓湖。 。与其他生境类型相比,茂盛的大型植物黄牛的特征是溶解氧浓度高,碱度高,大型无脊椎动物的丰富度,密度,生物量和改良的Shannon-Wiener指数更高。此外,使用冗余分析来分析环境变量对大型无脊椎动物的影响模式。建立套索回归模型来描述大型无脊椎动物密度对大型植物生物量和其他变量的响应,以及大型植物生物量对水文连通性和牛弓大小的响应。结果表明,减少水文连通性和减少牛b大小对增加淹没大型植物的生物量起着重要作用,而密集的大型植物直接导致了大型无脊椎动物的高生物多样性。与先前研究报告中普遍认为的单峰影响模式不同,中等水文连通性支持牛弓湖中最高的生物多样性,高原河马-牛弓湖系统中的大型无脊椎动物得益于低连通性和尺寸减小。 Oxbow湖泊,特别是那些被茂密的大型植物覆盖的湖泊,使大型无脊椎动物种群多样化,并在区域范围内增加了主要的消费者生物量。 (c)2018 Elsevier B.V.保留所有权利。

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