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首页> 外文期刊>Aquatic ecosystem health & management >The responses of stream fish to the gradient of conductivity: A case study from the Taizi River, China
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The responses of stream fish to the gradient of conductivity: A case study from the Taizi River, China

机译:溪流鱼对电导率梯度的响应:以太子河为例

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摘要

Conductivity elevation produces osmotic stress to aquatic biota and then alters biological communities. The responses of stream fish to conductivity remain unclear and strategies for protection are poorly developed. We collected data of fish and conductivity from sixty-two sites of the Taizi River to evaluate the changes to the fish community and species along the gradient of conductivity. Our results found that conductivity elevation was related to the regional development of urban and farmland and the local degradation of habitat quality. The community metrics of abundance and F-IBI, but not species richness and diversity, showed a significant linear correlation with conductivity. Conductivity of the top three F-IBI grades (excellent, good and normal) was significantly lower than those of the other two F-IBI grades (poor and bad). The boundary conductivity between normal grade and poor grade was approximately equal to 500 mu S cm(-1). We found different probability patterns for different species along the conductivity gradient; one capture probability pattern showed decline trend along the conductivity gradient. Except for two dominating and widespread species and one tolerant species, the remaining fish species of the first pattern should be designated as protection objects. In order to protect fish community integrity and sensitive species, sustainable land use management on the catchment scale and habitat quality improvement on the local scale should be given more attention by catchment managers.
机译:电导率升高对水生生物群产生渗透胁迫,然后改变生物群落。 stream鱼对电导率的反应仍不清楚,并且保护策略还不够完善。我们收集了太子河62个站点的鱼类和电导率数据,以评估沿电导率梯度对鱼类群落和物种的变化。我们的结果发现,电导率升高与城市和农田的区域发展以及生境质量的局部退化有关。丰度和F-IBI的群落指标,而不是物种的丰富度和多样性,与电导率呈显着线性相关。前三个F-IBI等级(优异,良好和正常)的电导率显着低于其他两个F-IBI等级(差和不良)的电导率。正常品位和不良品位之间的边界电导率大约等于500μS cm(-1)。我们沿着电导率梯度发现了不同物种的不同概率模式。一种捕获概率模式显示出沿电导率梯度的下降趋势。除了两个主要和广泛的物种和一个耐性物种外,应将第一种模式的其余鱼类指定为保护对象。为了保护鱼类群落的完整性和敏感物种,流域管理者应更加重视流域规模的可持续土地利用管理和地方规模的生境质量改善。

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