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Multitrophic diversity in a biodiverse forest is highly nonlinear across spatial scales

机译:生物多样性森林中的多营养多样性在空间尺度上是高度非线性的

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摘要

Subtropical and tropical forests are biodiversity hotspots, and untangling the spatial scaling of their diversity is fundamental for understanding global species richness and conserving biodiversity essential to human well-being. However, scale-dependent diversity distributions among coexisting taxa remain poorly understood for heterogeneous environments in biodiverse regions. We show that diversity relations among 43 taxa-including plants, arthropods and microorganisms-in a mountainous subtropical forest are highly nonlinear across spatial scales. Taxon-specific differences in beta-diversity cause under- or overestimation of overall diversity by up to 50% when using surrogate taxa such as plants. Similar relationships may apply to half of all (sub)tropical forests-including major biodiversity hotspots-where high environmental heterogeneity causes high biodiversity and species turnover. Our study highlights that our general understanding of biodiversity patterns has to be improved-and that much larger areas will be required than in better-studied lowland forests-to reliably estimate biodiversity distributions and devise conservation strategies for the world's biodiverse regions.
机译:亚热带和热带森林是生物多样性的热点,弄清其多样性的空间尺度对于理解全球物种丰富度和保护人类福祉至关重要的生物多样性至关重要。但是,对于生物多样性区域中的异质环境,并存的分类单元之间的尺度依赖性多样性分布仍然知之甚少。我们表明,在亚热带森林中,包括植物,节肢动物和微生物在内的43种分类单元之间的多样性关系在空间尺度上是高度非线性的。使用诸如植物等替代类群时,β多样性中特定于分类群的差异导致整体多样性低估或高估了多达50%。类似的关系可能适用于所有(亚)热带森林的一半,包括主要的生物多样性热点地区,在这些地区,高度的环境异质性导致较高的生物多样性和物种周转率。我们的研究强调,必须提高对生物多样性模式的一般理解,并且需要比研究更好的低地森林更大的面积,才能可靠地估计生物多样性的分布并为世界生物多样性地区制定保护策略。

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