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首页> 外文期刊>Oecologia >Plant-plant interactions influence phylogenetic diversity at multiple spatial scales in a semi-arid mountain rangeland
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Plant-plant interactions influence phylogenetic diversity at multiple spatial scales in a semi-arid mountain rangeland

机译:植物植物相互作用影响半干旱山区多个空间鳞片的系统发育多样性

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摘要

Molecular phylogenies are increasingly used to understand how biotic interactions and environment shape phylogenetic community structure (PCS). However, we do not understand the effects of plant-plant interactions and environment on PCS and phylogenetic diversity across spatial scales, particularly in rangelands. Here, we ask: (1) do plant-plant interactions and environment affect PCS and phylogenetic diversity differently across the three spatial scales of the patch, the community, and the habitat? (2) What are the impacts of dominant cushion-nurse plants on the phylogenetic structure of plant communities? We assessed the PCS of semi-arid plant communities along an elevation gradient at the patch, community and habitat scales. Then, we assessed co-occurrence patterns along two sample slopes. Our results indicated important roles for biotic interactions and environmental filtering in determining phylogenetic diversity, with biotic interactions, in particular, having a stronger tendency to increase phylogenetic diversity. This is most likely due to the asymmetrical effects of nurse plants across the three spatial scales on our two different slopes. The impact of biotic interactions caused non-random phylogenetic patterns in more severe environments. In conclusion, biotic interactions influence phylogenetic diversity by altering PCS across aspects and along elevation gradients.
机译:分子系统越来越多地用于了解生物相互作用和环境形状的系统形状(PCS)。然而,我们不了解植物 - 植物相互作用和环境对空间尺度的PC和系统发育多样性的影响,特别是在牧场。在这里,我们问:(1)植物植物相互作用和环境影响PC和系统发育多样性,不同地穿过补丁,社区和栖息地的三个空间尺度(2)主导垫子护士植物对植物社区的系统发育结构有何影响?我们沿着修补程序,社区和栖息地鳞片的高程梯度评估了半干旱植物社区的PC。然后,我们评估了两个样本斜率的共发生模式。我们的结果表明了在测定系统发育多样性的生物育相互作用和环境过滤中的重要作用,特别是具有较强的增加系统发育多样性的倾向。这很可能是由于护士植物在两种不同斜坡上的三个空间鳞片上的不对称影响。生物相互作用的影响在更严重的环境中引起了非随机性系统发育模式。总之,生物相互作用通过改变各个方面和沿仰角梯度来影响系统发育多样性。

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