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Metacommunity size influences aquatic community composition in a natural mesocosm landscape

机译:元社区规模影响自然中观景观中的水生社区组成

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Ecosystems are often arranged in naturally patchy landscapes with habitat patches linked by dispersal of species in a metacommunity. The size of a metacommunity, or number of patches, is predicted to influence community dynamics and therefore the structure and function of local communities. However, such predictions have yet to be experimentally tested using full food webs in natural metacommunities. We used the natural mesocosm system of aquatic macroinvertebrates in bromeliad phytotelmata to test the effect of the number of patches in a metacommunity on species richness, abundance, and community composition. We created metacommunities of varying size using fine mesh cages to enclose a gradient from a single bromeliad up to the full forest. We found that species richness, abundance, and biomass increased from enclosed metacommunities to the full forest size and that diversity and evenness also increased in larger enclosures. Community composition was affected by metacommunity size across the full gradient, with a more even detritivore community in larger metacommunities, and taxonomic groups such as mosquitoes going locally extinct in smaller metacommunities. We were able to divide the effects of metacommunity size into aquatic and terrestrial habitat components and found that the importance of each varied by species; those with simple life cycles were only affected by local aquatic habitat whereas insects with complex life cycles were also affected by the amount of terrestrial matrix. This differential survival of obligate and non-obligate dispersers allowed us to partition the beta-diversity between metacommunities among functional groups. Our study is one of the first tests of metacommunity size in a natural metacommunity landscape and shows that both diversity and community composition are significantly affected by metacommunity size.
机译:生态系统通常布置在自然斑驳的景观中,其栖息地斑块通过物种在一个群落中的扩散而联系在一起。预计元社区的规模或补丁数量会影响社区动态,从而影响本地社区的结构和功能。但是,这种预测还没有在自然元社区中使用完整的食物网进行实验检验。我们使用了凤梨植物的无脊椎动物的水生大型无脊椎动物的自然中观系统来测试一个元社区的斑块数量对物种丰富度,丰度和群落组成的影响。我们使用细密的网箱创建了大小不同的元社区,以包围从单个凤梨到整个森林的梯度。我们发现,物种的丰富度,丰度和生物量从封闭的亚群落增加到整个森林规模,并且在更大的封闭环境中多样性和均匀度也有所增加。社区构成受到整个梯度范围内元社区规模的影响,较大元社区中的社区更具破坏性,而诸如蚊子等生物分类群在较小元社区中局部灭绝。我们能够将超群落规模的影响分为水生和陆地生境组成部分,并发现每种物种的重要性因物种而异。生命周期简单的昆虫仅受当地水生生境的影响,而生命周期复杂的昆虫也受陆地基质数量的影响。专性分散剂和非专性分散剂的这种不同的生存能力使我们能够在功能组之间划分元社区之间的β多样性。我们的研究是在自然的元社区景观中对元社区规模进行的首批测试之一,表明多样性和社区组成都受到元社区规模的显着影响。

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