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Biodiversity of aquatic insects: spatial gradients and environmental correlates of assemblage-level measures at large scales

机译:水生昆虫的生物多样性:大规模的组合水平措施的空间梯度和环境相关性

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Biodiversity embraces multiple facets of the variability of nature, although most research has dealt separately with population-, species- and assemblage-level measures. This review concentrates on aquatic insect biodiversity and the assemblage-levelmeasures, such as species richness, assemblage compositional variation, taxonomic distinctness and functional diversity. Most studies on aquatic insects have considered biodiversity patterns based on surveys of local assemblages along geographical and environmental gradients, while there is a virtual lack of studies that have considered regional grain sizes (i.e. the size of the observational unit). Latitudinal gradients at both regional and local grain are ambiguous in aquatic insects, as different studies have found either higher or lower local diversity in the tropics than in the temperate zone. Other geographical patterns in aquatic insect diversity may also be relatively weak, as suggested by subtle among-ecoregion differences in both local species richness and assemblage composition. An ecological explanation for the absence of strong geographical gradients is that local environmental features may not necessarily vary with geography, and these factors may override the influences of historical and climatic influences on local diversity. Evidence from large-scale studies suggests, however, that not only various local habitat and ecosystem variables, but also those measured at the watershed, regional and geographical scales are needed to account for variation in the species richness and assemblage composition of aquatic insects. Within regional species pools, species richness and assemblage composition in both lotic and lentic ecosystems vary most strongly along gradients in habitat size and acidity. Knowing how a-, p"- and y-diversity of aquatic insects vary along geographical and environmental gradients has important implications for the conservation of biodiversity in freshwater ecosystems. Such knowledge is not yet well-developed, and two aspects should be considered in future research. First, further survey research on lotic and lentic ecosystems is necessary for improving our understanding of general biodiversity patterns. Second, given that freshwater ecosystems are- facing a severe biodiversity crisis, the implementation of representative networks of freshwater protected areas would certainly benefit from increased understanding of patterns in aquatic insect biodiversity.
机译:生物多样性包括自然变异的多个方面,尽管大多数研究已分别涉及种群,物种和组合水平的测量。这篇综述着重于水生昆虫的生物多样性和组合水平的措施,例如物种丰富度,组合物组成变化,分类学上的区别和功能多样性。大多数关于水生昆虫的研究都是基于沿地理和环境梯度对当地种群的调查来考虑生物多样性模式的,而实际上几乎没有研究考虑了区域粒度(即观测单位的大小)。由于不同的研究发现热带地区的局部多样性比温带地区的局部多样性更高或更低,因此水生昆虫在区域和局部谷物的纬度梯度上都是模棱两可的。水生昆虫多样性的其他地理格局也可能相对较弱,正如当地物种丰富度和组合组成的细微生态环境差异所表明的那样。对于没有强烈的地理梯度的生态解释是,当地的环境特征不一定会随地理而变化,而这些因素可能会覆盖历史和气候因素对当地多样性的影响。但是,大规模研究的证据表明,不仅需要各种局部生境和生态系统变量,而且还需要在分水岭,区域和地理范围内测量的变量来说明水生昆虫物种丰富度和组合组成的变化。在区域物种库中,抽水和淡水生态系统中物种的丰富度和组合组成随生境大小和酸度的梯度变化最大。知道水生昆虫的a,p“和y多样性如何随地理和环境梯度变化对保护淡水生态系统中的生物多样性具有重要意义。此类知识尚未得到充分发展,今后应考虑两个方面研究:首先,需要进一步研究抽水和泻湖生态系统,以增进我们对一般生物多样性模式的了解;其次,鉴于淡水生态系统面临着严重的生物多样性危机,实施代表性的淡水保护区网络肯定会从中受益加深了对水生昆虫生物多样性模式的了解。

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