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Contrasting altitudinal variation of alpine plant communities along the Swedish mountains

机译:瑞典山区沿线高山植物群落的海拔高度变化

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摘要

Changes in abiotic factors along altitudinal and latitudinal gradients cause powerful environmental gradients. The topography of alpine areas generates environmental gradients over short distances, and alpine areas are expected to experience greater temperature increase compared to the global average. In this study, we investigate alpha, beta, and gamma diversity, as well as community structure, of vascular plant communities along altitudinal gradients at three latitudes in the Swedish mountains. Species richness and evenness decreased with altitude, but the patterns within the altitudinal gradient varied between sites, including a sudden decrease at high altitude, a monotonic decrease, and a unimodal pattern. However, we did not observe a decline in beta diversity with altitude at all sites, and plant communities at all sites were spatially nested according to some other factors than altitude, such as the availability of water or microtopographic position. Moreover, the observed diversity patterns did not follow the latitudinal gradient. We observed a spatial modularity according to altitude, which was consistent across sites. Our results suggest strong influences of site‐specific factors on plant community composition and that such factors partly may override effects from altitudinal and latitudinal environmental variation. Spatial variation of the observed vascular plant communities appears to have been caused by a combination of processes at multiple spatial scales.
机译:非生物因素沿海拔和纬度梯度的变化会导致强大的环境梯度。高寒地区的地形在短距离内产生环境梯度,与全球平均水平相比,高寒地区的温度预计会更高。在这项研究中,我们调查了瑞典山区三个纬度上沿垂直梯度的维管植物群落的alpha,beta和gamma多样性以及群落结构。物种的丰富度和均匀度随着海拔的升高而降低,但是海拔梯度内的模式在不同的地点之间有所不同,包括高海拔地区的突然下降,单调下降和单峰模式。但是,我们并未观察到所有地点的β多样性都随海拔的升高而下降,并且所有地点的植物群落都是根据海拔以外的其他因素在空间上嵌套的,例如水的可用性或微地形的位置。此外,观察到的多样性模式不遵循纬度梯度。我们观察到了根据海拔高度的空间模块化,这在各个站点之间是一致的。我们的结果表明,特定地点因素对植物群落组成有很大的影响,并且这些因素在某种程度上可能会覆盖海拔和纬度环境变化的影响。观察到的维管植物群落的空间变异似乎是由多个空间尺度上的过程组合引起的。

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