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Streams dry and ecological uniqueness rise: environmental selection drives aquatic insect patterns in a stream network prone to intermittence

机译:溪流干燥和生态唯一性崛起:环境选择驱动水生昆虫模式在流网络中容易止间歇性

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The study of variation of species composition among sites is key to understanding community ecology, but few studies have assessed beta diversity patterns in highly dynamic stream networks in the Neotropical region. We assessed aquatic insect patterns of local contribution to beta diversity (LCBD) and species contribution to beta diversity (SCDB) in a Neotropical drainage network composed of both perennial and intermittent streams in a dry period. We evaluated if environmental and/or spatial predictors drive patterns of LCBD. We sampled aquatic insects in 12 intermittent headwater streams and 34 perennial streams. The intermittent compared to perennial streams had higher LCBDs and lower richness. The pure environmental component significantly explained 19% of the variation of LCBD, while the pure spatial components were not significant. Forty-six taxa contributed to beta diversity above the mean of the 199 taxa. We detected the association of oxygen tolerant and good dispersal ability taxa to intermittent streams and species riffle-adapted taxa as indicators of perennial streams. We showed a disproportional contribution of intermittent streams to the regional species pool. In summary, we demonstrated that when streams dry out, compositional uniqueness may increase during the dry period making them critical to conservation planning of dynamic stream networks.
机译:地点之间的物种组成变异的研究是了解社区生态学的关键,但很少有研究已经评估了探访了新闻区的高动态流网络中的β多样性模式。我们评估了对Beta多样性(LCBD)的水生昆虫模式,以及在干燥期间由多年生和间歇流组成的新途径排水网络中对β多样性(SCDB)的物种贡献。我们评估了LCBD的环境和/或空间预测器驱动模式。我们在12个间歇性地下流中采样水生昆虫和34个多年生溪流。与多年生溪流相比的间歇性具有更高的LCBD和较低的丰富性。纯环境组分显着解释了LCBD变异的19%,而纯空间部件不显着。四十六个分类群促使Beta多样性高于199个分类群的平均值。我们检测到耐氧气和良好的分散能力分类群与间歇性溪流和物种的关联,作为多年生溪流的指标。我们向区域物种池表达了间歇性溪流的贡献。总之,我们证明,当物流干燥时,在干燥期间可能会增加组成唯一性,使它们对动态流网络的保护计划至关重要。

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