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首页> 外文期刊>Limnologica >The importance of species replacement and richness differences in small-scale diversity patterns of aquatic macroinvertebrates in spring fens
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The importance of species replacement and richness differences in small-scale diversity patterns of aquatic macroinvertebrates in spring fens

机译:春季水生无脊椎动物小规模多样性模式中物种替代和丰富度差异的重要性

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This study provides new information on beta diversity (variation in species composition across space) of three invertebrate groups (Clitellata, Plecoptera, and Chironomidae) on a small, within-site spatial scale. It was conducted at small-sized spring fens where two contrasting mesohabitats, a flowing-water and a standing-water, can be clearly distinguished. Besides flow conditions, these habitats differed in the amounts of inorganic substratum and dissolved oxygen. Factors related to flow conditions (dissolved oxygen and water temperature) influenced the composition of the studied assemblages at both mesohabitats, while substratum features were important at the standing-water habitat. The water chemistry was important for Clitellata at both mesohabitats and for Chironomidae at the flowing-water. Using a new approach of disentangling beta diversity into two components (species replacement and species richness differences), clear difference in beta diversity patterns among the three assemblages were found, despite their roughly equal total beta diversities. Variation in species composition of those assemblages strongly limited by flow conditions (Plecoptera and partly Clitellata) was induced by differences in species richness, while replacement governed the variation in species rich assemblages that were able to utilise a wide range of conditions (Chironomidae and partly Clitellata). These results indicate that the size of species pool and the level of environmental filtering play an important role in forming beta diversity patterns, and caution that the same amount of beta diversity can be promoted by essentially different mechanisms, even at a very fine spatial scale with no involvement of dispersal limitations.
机译:这项研究在较小的场地内空间尺度上提供了三个无脊椎动物群体(直齿科,鞘翅目和,科)的β多样性(跨空间物种组成变化)的新信息。它是在小型春conducted进行的,在那里可以清楚地区分两种截然不同的中生境,即流水和死水。除流量条件外,这些生境的无机基质和溶解氧的量也不同。与流量条件(溶解氧和水温)有关的因素影响了两个中生境中所研究的组合的组成,而在死水生境中底层特征很重要。水化学对于中生栖息地的直齿科和流水中的棘齿科都很重要。使用一种将β多样性分解为两个部分(物种替代和物种丰富度差异)的新方法,尽管三个种群的总β多样性大致相等,但发现这三个组合之间的β多样性模式存在明显差异。这些物种组合的物种组成变化受到流动条件(鞘翅目和部分直齿科)的强烈限制,这是由于物种丰富度的差异引起的,而替代则决定了能够利用多种条件的物种丰富组合的变化(C科和部分直齿科)。 )。这些结果表明,物种库的大小和环境过滤的水平在形成β多样性模式中起着重要作用,并警告说,即使是在非常精细的空间范围内,也可以通过本质上不同的机制促进相同数量的β多样性。不涉及分散限制。

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