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首页> 外文期刊>Biodiversity and Conservation >Environmental correlates of plant and invertebrate species richness in ponds. (Special Issue: Biodiversity and conservation of insects and other invertebrates.)
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Environmental correlates of plant and invertebrate species richness in ponds. (Special Issue: Biodiversity and conservation of insects and other invertebrates.)

机译:池塘中植物和无脊椎动物物种丰富度的环境相关性。 (特刊:昆虫和其他无脊椎动物的生物多样性和保护。)

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Ponds (lentic water bodies <2 ha) constitute a considerable biodiversity resource. Understanding the environmental factors that underlie this diversity is important in protecting and managing the habitat. We surveyed 425 ponds for biological and physical characteristics with 78 of those also surveyed for chemical characteristics. A total of 277 invertebrate species and 265 plant species were found. Species richness varied between 2 and 99 (mean 27.2+or-0.6 SE) for invertebrates and 1 and 58 (mean 20.8+or-0.4 SE) for plants. Generalised additive models were used to investigate variables that correlate with the species richness of plants and invertebrates, with additional models to investigate insect, Coleoptera, Odonata, Hemiptera, Trichoptera and Mollusca species richness. Models performed reasonably well for invertebrates in general (R2=30.3%) but varied between lower-order invertebrate taxa (12.7-34.7%). Ponds with lower levels of shading and no history of drying contained higher numbers of species of plants and all invertebrate groups. Aquatic plant coverage positively correlated with species richness in all invertebrate groups apart from Trichoptera and the presence of fish was associated with high invertebrate species richness in all groups apart from Coleoptera. The addition of chemistry variables suggested non-linear relationships between oxygen demand and phosphate concentration and higher-order richness. We demonstrate that the composition of biological communities varies along with their species richness and that less diverse ponds are more variable compared to more diverse ponds. Variables positively correlated with richness of one taxon may be negatively correlated with that of another, making comprehensive management recommendations difficult. Promoting a high landscape-level pond biodiversity will involve the management of a high diversity of pond types within that landscape.
机译:池塘(小于2公顷的小水域)构成了相当大的生物多样性资源。理解造成这种多样性的环境因素对于保护和管理栖息地非常重要。我们调查了425个池塘的生物学和物理特性,其中78个也进行了化学特性调查。共发现277种无脊椎动物和265种植物。无脊椎动物的物种丰富度在2到99(平均值为27.2+或-0.6 SE)之间,而植物的丰富度为1到58(平均值为20.8+或-0.4 SE)之间。广义的加性模型用于研究与植物和无脊椎动物物种丰富度相关的变量,另外的模型用于研究昆虫,鞘翅目,昆虫纲,半翅目,毛翅目和软体动物物种丰富度。一般而言,模型对无脊椎动物的表现良好( R 2 = 30.3%),但在低阶无脊椎动物类群之间变化较大(12.7-34.7%)。阴影水平较低且没有干燥历史的池塘包含较多种类的植物和所有无脊椎动物。除毛鳞翅目外,所有无脊椎动物种群的水生植物覆盖度与物种丰富度呈正相关,而除了鞘翅目外,鱼类的存在与所有无脊椎动物物种的丰富度都相关。化学变量的增加表明需氧量与磷酸盐浓度之间的非线性关系以及高阶富集度。我们证明了生物群落的组成随物种丰富程度的变化而变化,与多样化池塘相比,多样性较低的池塘变化更大。与一个分类单元的丰富度呈正相关的变量可能与另一个分类单元的丰富度呈负相关,从而使综合管理建议变得困难。促进高景观水平的池塘生物多样性将涉及对该景观内池塘类型的高度多样性的管理。

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