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Convergent diversity and trait composition in temporary streams and ponds

机译:临时溪流和池塘的汇聚多样性和性状组成

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Hydrology is the main environmental filter in aquatic ecosystems and may result in shared tolerances and functional traits among species in disparate ecosystems. We analyzed the associations between taxonomic and functional facets of diversity within aquatic ecosystems (ponds vs. streams) across a hydroperiod gradient (1–365?d) to untangle the hydrologic drivers of aquatic invertebrate diversity. We used invertebrate assemblage data from seven arid‐land streams in southeastern Arizona, United States collected over 2?yr and nine temperate woodland ponds in Ontario, Canada collected over 2?yr. Our results showed that although invertebrate assemblages from streams and ponds differ taxonomically, hydroperiod had similar influence on invertebrate trait structure regardless of biogeographic and habitat differences. Streams and ponds independently showed strong positive relationships between functional richness and taxonomic richness; however, the relationship showed a shallower slope in ponds, indicating higher functional redundancy. Intermittent ponds and streams tended to have lower functional and taxonomic richness than their perennial counterparts, but harbored greater beta diversity. Our results suggest that even though ponds and streams are fundamentally different habitats with distinct faunas and unique ecological processes, hydrology produces convergent patterns in both trait composition and diversity patterns.
机译:水文学是水生生态系统中的主要环境过滤器,可能导致不同生态系统中物种之间共有的耐受性和功能性状。我们分析了水生生态系统梯度(1–365?d)内水生生态系统(池塘与溪流)中生物多样性的分类学和功能方面之间的联系,以阐明水生无脊椎动物多样性的水文驱动因素。我们使用了来自美国亚利桑那州东南部的7个干旱陆流的无脊椎动物集合数据,收集了2年以上的水,并使用了加拿大安大略省的9个温带林地池塘收集了2年以上的水。我们的结果表明,尽管河流和池塘中的无脊椎动物组合在分类学上有所不同,但无论生物地理和生境差异如何,水周期对无脊椎动物性状结构的影响相似。溪流和池塘独立地显示出功能丰富度和分类学丰富度之间的强正相关关系;但是,这种关系显示池塘中的坡度较浅,表明较高的功能冗余度。间歇性池塘和溪流的功能和分类学丰富度往往低于多年生池塘和溪流,但具有更大的贝塔多样性。我们的结果表明,尽管池塘和溪流是根本不同的生境,具有不同的动物区系和独特的生态过程,但水文学在性状组成和多样性模式上都产生了收敛的模式。

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