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沿景观结构梯度的生境异质性与土壤动物多样性之间的尺度特异性相关性。

Scale-specific correlations between habitat heterogeneity and soil fauna diversity along a landscape structure gradient.

作者信息

Vanbergen Adam J, Watt Allan D, Mitchell Ruth, Truscott Anne-Marie, Palmer Stephen C F, Ivits Eva, Eggleton Paul, Jones T Hefin, Sousa José Paulo

机构信息

Centre for Ecology and Hydrology, Hill of Brathens, Banchory, Aberdeenshire, UK.

出版信息

Oecologia. 2007 Sep;153(3):713-25. doi: 10.1007/s00442-007-0766-3. Epub 2007 May 31.

Abstract

Habitat heterogeneity contributes to the maintenance of diversity, but the extent that landscape-scale rather than local-scale heterogeneity influences the diversity of soil invertebrates-species with small range sizes-is less clear. Using a Scottish habitat heterogeneity gradient we correlated Collembola and lumbricid worm species richness and abundance with different elements (forest cover, habitat richness and patchiness) and qualities (plant species richness, soil variables) of habitat heterogeneity, at landscape (1 km(2)) and local (up to 200 m(2)) scales. Soil fauna assemblages showed considerable turnover in species composition along this habitat heterogeneity gradient. Soil fauna species richness and turnover was greatest in landscapes that were a mosaic of habitats. Soil fauna diversity was hump-shaped along a gradient of forest cover, peaking where there was a mixture of forest and open habitats in the landscape. Landscape-scale habitat richness was positively correlated with lumbricid diversity, while Collembola and lumbricid abundances were negatively and positively related to landscape spatial patchiness. Furthermore, soil fauna diversity was positively correlated with plant diversity, which in turn peaked in the sites that were a mosaic of forest and open habitat patches. There was less evidence that local-scale habitat variables (habitat richness, tree cover, plant species richness, litter cover, soil pH, depth of organic horizon) affected soil fauna diversity: Collembola diversity was independent of all these measures, while lumbricid diversity positively and negatively correlated with vascular plant species richness and tree canopy density. Landscape-scale habitat heterogeneity affects soil diversity regardless of taxon, while the influence of habitat heterogeneity at local scales is dependent on taxon identity, and hence ecological traits, e.g. body size. Landscape-scale habitat heterogeneity by providing different niches and refuges, together with passive dispersal and population patch dynamics, positively contributes to soil faunal diversity.

摘要

栖息地异质性有助于维持生物多样性,但景观尺度而非局部尺度的异质性对土壤无脊椎动物(分布范围较小的物种)多样性的影响程度尚不清楚。利用苏格兰的栖息地异质性梯度,我们将弹尾虫和蚯蚓的物种丰富度及丰度与栖息地异质性的不同要素(森林覆盖、栖息地丰富度和斑块性)及特征(植物物种丰富度、土壤变量)在景观尺度(1平方千米)和局部尺度(最大200平方米)上进行了关联分析。土壤动物群落沿此栖息地异质性梯度在物种组成上表现出显著变化。在栖息地镶嵌的景观中,土壤动物物种丰富度和变化最大。土壤动物多样性沿森林覆盖梯度呈驼峰状,在景观中森林与开阔栖息地混合的地方达到峰值。景观尺度的栖息地丰富度与蚯蚓多样性呈正相关,而弹尾虫和蚯蚓的丰度与景观空间斑块性分别呈负相关和正相关。此外,土壤动物多样性与植物多样性呈正相关,而植物多样性又在森林和开阔栖息地斑块镶嵌的地点达到峰值。较少有证据表明局部尺度的栖息地变量(栖息地丰富度、树木覆盖、植物物种丰富度、凋落物覆盖、土壤pH值、有机层深度)会影响土壤动物多样性:弹尾虫多样性与所有这些指标无关,而蚯蚓多样性与维管植物物种丰富度和树冠密度分别呈正相关和负相关。景观尺度的栖息地异质性无论对于哪个分类群都会影响土壤多样性,而局部尺度的栖息地异质性影响则取决于分类群的特性,进而取决于生态特征,例如体型大小。景观尺度的栖息地异质性通过提供不同的生态位和避难所,以及被动扩散和种群斑块动态,对土壤动物多样性有积极贡献。

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