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首页> 外文期刊>Ecological indicators >Non-biting midges in biodiversity conservation and environmental assessment: Findings from boreal freshwater ecosystems
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Non-biting midges in biodiversity conservation and environmental assessment: Findings from boreal freshwater ecosystems

机译:生物多样性保护和环境评估中的无懈可击的::北方淡水生态系统的发现

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摘要

Non-biting midges (Diptera: Chironomidae) are frequently overlooked in freshwater biodiversity surveys and environmental assessment, yet they are commonly the most abundant and the most diverse taxon in freshwater ecosystems. We reviewed the diversity patterns and assemblage-environment relationships of non-dipterans and chironomids mainly in boreal freshwater ecosystems building on previously reported findings. Although generally the same environmental gradients are correlated with assemblage structure, their relative importance varies between chironomids and non-dipterans. Chironomid assemblage response to and recovery from human impacts are also likely to differ from that of other common benthic taxa. Thus, environmental assessments may be biased if chironomids are not included. Different surrogacy approaches have thus far shown little success in accounting for chironomid species richness and assemblage structure, and there appears to be no easy short-cut for the examination of chironomids as part of freshwater surveys. However, we show that genus-level identification of pupal exuviae provides a reliable and rapid way of estimating chironomid species richness at least in boreal freshwater ecosystems. In addition, we demonstrate that the inclusion of chironomids may increase the signal-to-noise ratio in bioassessment data sets, and that this information can be obtained with modest increases in costs.
机译:淡水生物多样性调查和环境评估中经常忽略无咬mid(Diptera:Chironomidae),但它们通常是淡水生态系统中数量最多,种类最多的分类单元。我们基于先前报道的发现,回顾了主要在北方淡水生态系统中非双足类和动物纲的多样性模式和集聚-环境关系。尽管通常相同的环境梯度与装配结构相关,但它们的相对重要性在手足动物和非双足动物之间有所不同。手足动物对人类影响的反应和从人类影响中恢复的可能性也可能与其他常见的底栖生物分类不同。因此,如果不包括手性动物,则环境评估可能会产生偏差。迄今为止,不同的代孕方法在说明手足类物种的丰富性和组合结构方面显示出很小的成功,作为淡水调查的一部分,对手足类的检查似乎没有捷径。但是,我们表明级足类的鉴定至少在北方淡水生态系统中提供了可靠且快速的方法来估算手足类物种的丰富度。此外,我们证明了将手性动物纳入其中可能会增加生物评估数据集中的信噪比,并且可以在成本适度增加的情况下获得此信息。

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