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Plant species diversity and genetic diversity interactively influence community properties and ecosystem processes

机译:植物物种多样性和遗传多样性相互作用地影响社区特性和生态系统过程

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摘要

Background/Questions/Methods: Biodiversity is a critical element of community properties and ecosystem processes. Both plant species richness and genetic diversity positively affect processes ranging from primary production, ecosystem stability, and the maintenance of diversity. In nature, it is likely that species diversity and genetic diversity interactively affect how communities are structured and ecosystems function. However, the relative contribution of species diversity and genetic diversity to ecological processes has been rarely documented, and potential interactions between the two levels of diversity have not been investigated. Here, I report results from a common garden experiment conducted in a coastal freshwater dune habitat at Sleeping Bear Dunes National Lakeshore in Empire, MI. I manipulated plant species diversity (0, 1, 3, or 6 species) and genetic diversity (0, 1, 3, or 6 populations) within a dominant, dune-building species (Ammophila breviligulata) to address how both levels of diversity simultaneously influence ecological properties and processes. Results/Conclusions: In 2008, plant diversity influenced a wide range of ecological responses. Plant species diversity and genetic diversity within the dominant species synergistically increased above-ground biomass production, with biomass increasing the most with genetic diversity when there were 6 plant species present. A similar pattern was found for arthropod morphospecies richness and abundance. Separately, neither species diversity nor genetic diversity affected either biomass production or the arthropod community. Plant diversity also influenced below-ground properties and processes. For example, nematode abundance doubled with both increasing species diversity and genetic diversity, but there was no interaction between the two levels of diversity. These results suggest that interactions between levels of diversity are an important, but often overlooked, aspect of how diversity structures communities and mediates ecosystem processes and suggests that increasing awareness of these interactions may inform conservation and restoration strategies.
机译:背景/问题/方法:生物多样性是社区财产和生态系统过程的关键要素。植物物种的丰富性和遗传多样性都对初级生产,生态系统稳定和多样性维持等过程产生积极影响。在自然界中,物种多样性和遗传多样性可能会相互作用地影响社区的结构和生态系统的功能。但是,很少有文献记载物种多样性和遗传多样性对生态过程的相对贡献,并且尚未研究两种多样性水平之间的潜在相互作用。在这里,我报告了在密歇根州帝国的睡眠熊沙丘国家湖岸的沿海淡水沙丘栖息地进行的一项普通花园实验的结果。我在一个主要的沙丘构建物种(Ammophila breviligulata)中操纵了植物物种多样性(0、1、3或6种)和遗传多样性(0、1、3或6个种群),以解决两种多样性水平如何同时实现影响生态特性和过程。结果/结论:2008年,植物多样性影响了广泛的生态响应。优势物种内的植物物种多样性和遗传多样性协同提高了地上生物量的产量,当存在6种植物物种时,生物量在遗传多样性中的增幅最大。发现节肢动物的形态物种丰富度和丰度相似。另外,物种多样性和遗传多样性都不会影响生物量生产或节肢动物群落。植物多样性也影响了地下特性和过程。例如,线虫的丰度随着物种多样性和遗传多样性的增加而增加了一倍,但是这两个多样性水平之间没有相互作用。这些结果表明,多样性水平之间的相互作用是多样性如何构成群落和介导生态系统过程的重要方面,但常常被忽视,并表明对这些相互作用的认识的提高可能会为保护和恢复战略提供依据。

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