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Diversity of Riparian Plants among and within Species Shapes River Communities

机译:物种间和物种内河岸植物的多样性塑造河流社区

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摘要

Organismal diversity among and within species may affect ecosystem function with effects transmitting across ecosystem boundaries. Whether recipient communities adjust their composition, in turn, to maximize their function in response to changes in donor composition at these two scales of diversity is unknown. We use small stream communities that rely on riparian subsidies as a model system. We used leaf pack experiments to ask how variation in plants growing beside streams in the Olympic Peninsula of Washington State, USA affects stream communities via leaf subsidies. Leaves from red alder (Alnus rubra), vine maple (Acer cinereus), bigleaf maple (Acer macrophyllum) and western hemlock (Tsuga heterophylla) were assembled in leaf packs to contrast low versus high diversity, and deployed in streams to compare local versus non-local leaf sources at the among and within species scales. Leaves from individuals within species decomposed at varying rates; most notably thin leaves decomposed rapidly. Among deciduous species, vine maple decomposed most rapidly, harbored the least algal abundance, and supported the greatest diversity of aquatic invertebrates, while bigleaf maple was at the opposite extreme for these three metrics. Recipient communities decomposed leaves from local species rapidly: leaves from early successional plants decomposed rapidly in stream reaches surrounded by early successional forest and leaves from later successional plants decomposed rapidly adjacent to later successional forest. The species diversity of leaves inconsistently affected decomposition, algal abundance and invertebrate metrics. Intraspecific diversity of leaf packs also did not affect decomposition or invertebrate diversity. However, locally sourced alder leaves decomposed more rapidly and harbored greater levels of algae than leaves sourced from conspecifics growing in other areas on the Olympic Peninsula, but did not harbor greater aquatic invertebrate diversity. In contrast to alder, local intraspecific differences via decomposition, algal or invertebrate metrics were not observed consistently among maples. These results emphasize that biodiversity of riparian subsidies at the within and across species scale have the potential to affect aquatic ecosystems, although there are complex species-specific effects.
机译:物种内部和内部的生物多样性可能会影响生态系统功能,并影响跨生态系统边界的传播。尚不知道在这两个多样性尺度上,受助者群体是否会调整其组成以最大限度地发挥其功能,以响应捐助者组成的变化。我们使用依赖河岸补贴的小溪社区作为模型系统。我们使用叶片包装实验来询问美国华盛顿州奥林匹克半岛旁溪流旁生长的植物变异如何通过叶片补贴影响溪流群落。将红al木(Alnus rubra),藤本枫树(Acer cinereus),大叶枫木(Acer macrophyllum)和西部铁杉(Tsuga heterophylla)的叶子组装成叶包,以对比低多样性与高多样性,并在溪流中进行部署以比较本地与非本地。 -在物种范围内和物种范围内的本地叶源。种内个体叶片的分解速率不同;最显着的是薄叶迅速分解。在落叶树种中,藤本枫树分解最快,藻类丰度最少,并且支持最大的水生无脊椎动物多样性,而大叶枫树在这三个指标上处于相反的极端。接收者社区迅速地分解了本地物种的叶片:来自早期演替植物的叶片在溪流中迅速分解,并被早期演替森林包围,而来自后续演替植物的叶片则迅速分解成与后续演替森林相邻。叶片的物种多样性不一致地影响分解,藻类丰度和无脊椎动物指标。叶包装的种内多样性也没有影响分解或无脊椎动物多样性。但是,与从奥林匹克半岛其他地区生长的同种植物获得的叶片相比,当地获得的al木叶片分解得更快,并且含有更多的藻类,但没有更大的水生无脊椎动物多样性。与al木相反,在枫树之间未始终观察到通过分解,藻类或无脊椎动物指标引起的局部种内差异。这些结果强调,河岸补贴在物种内部和整个物种范围内的生物多样性都有可能影响水生生态系统,尽管存在特定于物种的复杂影响。

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  • 年(卷),期 -1(10),11
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  • 页码 e0142362
  • 总页数 19
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