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Spatial Distribution of Benthic Macroinvertebrate Assemblages in Relation to Environmental Variables in Korean Nationwide Streams

机译:韩国全国河流底栖大型无脊椎动物组合的空间分布与环境变量的关系

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Conserving and enhancing freshwater biodiversity are global issues to ensure ecosystem integrity and sustainability. To meet this, it is critical to understand how the biological assemblages are determined by environmental gradients in different spatial scales. Nevertheless, information on their large-scale environmental relationships remains scarce in Korea. We aimed to understand nationwide spatial distribution patterns of benthic macroinvertebrates and important environmental factors affecting their distribution in 388 streams and rivers across Korea. A total of 340 taxa, belonging to 113 families in 23 orders of five phyla, were identified. Assemblage composition in most Korean streams included a few predominant colonizers and a majority of rare taxa. Cluster analysis based on benthic macroinvertebrates classified a total of 720 sampling sites into five clusters according to the pollution levels from fast-flowing less polluted streams with low electrical conductivity to moderately or severely polluted streams with high electrical conductivity and slow water velocity. Canonical correspondence analysis revealed that altitude, water velocity and streambed composition were the most important determinants, rather than watershed and water chemistry variables, for explaining the variation in macroinvertebrate assemblage patterns. The results provide basic information for establishing the conservation and restoration strategies of macroinvertebrate biodiversity against anthropogenic disturbances and developing more confident bio-assessment tools for diagnosing stream ecosystem integrity.
机译:保护和加强淡水生物多样性是确保生态系统完整性和可持续性的全球性问题。为此,至关重要的是要了解如何通过不同空间尺度上的环境梯度来确定生物集合。然而,在韩国仍缺乏有关其大规模环境关系的信息。我们旨在了解底栖大型无脊椎动物的全国空间分布格局以及影响其在韩国388条河流中的分布的重要环境因素。总共确定了340个分类单元,属于23个五个门的113个科。大多数韩国流中的集合体组成包括一些主要的殖民者和大多数稀有的分类单元。基于底栖大型无脊椎动物的聚类分析,根据污染程度从低电导率的快速流动,低电导率的水流到高电导率和慢速的中度或重度污染的流,将总共720个采样点分为五个簇。典型的对应分析表明,海拔高度,水速和河床组成是最重要的决定因素,而不是分水岭和水化学变量,用于解释大型无脊椎动物组合模式的变化。研究结果为建立针对人为干扰的大型无脊椎动物生物多样性的保护和恢复策略,以及开发更可靠的生物评估工具以诊断河流生态系统完整性提供了基础信息。

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