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The Interactive Effects of Fire and Diversity on Short-Term Responses of Ecosystem Processes in Experimental Mediterranean Grasslands

机译:火与多样性对地中海实验性草原生态系统过程短期响应的互动影响

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We conducted a field experiment using constructed communities to test whether species richness contributed to the maintenance of ecosystem processes under fire disturbance. We studied the effects of diversity components (i.e., species richness and species composition) upon productivity, structural traits of vegetation, decomposition rates, and soil nutrients between burnt and unburnt experimental Mediterranean grassland communities. Our results demonstrated that fire and species richness had interactive effects on aboveground biomass production and canopy structure components. Fire increased biomass production of the highest-richness communities. The effects of fire on aboveground biomass production at different levels of species richness were derived from changes in both vertical and horizontal canopy structure of the communities. The most species-rich communities appeared to be more resistant to fire in relation to species-poor ones, due to both compositional and richness effects. Interactive effects of fire and species richness were not important for belowground processes. Decomposition rates increased with species richness, related in part to increased levels of canopy structure traits. Fire increased soil nutrients and long-term decomposition rate. Our results provide evidence that composition within richness levels had often larger effects on the stability of aboveground ecosystem processes in the face of fire disturbance than species richness per se.
机译:我们使用构建的社区进行了野外试验,以测试物种丰富度是否有助于在火灾下维持生态系统过程。我们研究了多样性成分(即物种丰富度和物种组成)对生产力,植被结构特征,分解率以及地中海实验草地和未燃烧草地之间的土壤养分的影响。我们的结果表明,火和物种丰富度对地上生物量生产和冠层结构成分具有交互作用。火灾增加了最富裕社区的生物量生产。火灾对不同物种丰富度水平地上生物量生产的影响源自社区垂直和水平冠层结构的变化。由于组成和丰富度的影响,与物种较差的物种相比,物种最丰富的社区似乎更耐火。火和物种丰富度的相互作用对地下过程并不重要。分解速率随物种丰富度而增加,部分与冠层结构性状的升高有关。大火增加了土壤养分和长期分解率。我们的结果提供了证据,在面对火灾时,丰富度水平内的成分对地上生态系统过程的稳定性通常比物种丰富度本身具有更大的影响。

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