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Effects of Environment and Space on Species Turnover of Woody Plants across Multiple Forest Dynamic Plots in East Asia

机译:环境和空间对东亚多个森林动态区木本植物物种周转的影响

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摘要

Species turnover is fundamental for understanding the mechanisms that influence large-scale species richness patterns. However, few studies have described and interpreted large-scale spatial variation in plant species turnover, and the causes of this variation remain elusive. In addition, the determinants of species turnover depend on the dispersal ability of growth forms. In this study, we explored the large-scale patterns of woody species turnover across the latitude gradient based on eight large stem-mapping plots (covering 184 ha forest) in East Asia. The patterns of woody species turnover increased significantly with increasing latitude differences in East Asia. For overall woody species, environment explained 36.30, 37.20, and 48.48% of the total variance in Jaccard’s (βj), Sorenson’s, (βs), and Simpson’s dissimilarity (βsim). Spatial factors explained 47.92, 48.39, and 41.38% of the total variance in βj, βs, and βsim, respectively. The effects of pure spatial and spatially structured environments were stronger than pure environmental effects for overall woody species. Our results support the hypothesis that the effect of neutral processes on woody species turnover is more important than the effect of the environment. Neutral processes explained more variation for turnover of tree species, and environmental factors explained more variation for the turnover of shrub species on a large scale. Therefore, trees and shrubs should be subjected to different protection strategies in future biodiversity conservation efforts.
机译:物种周转对于理解影响大规模物种丰富度模式的机制至关重要。但是,很少有研究描述和解释植物物种更新的大规模空间变化,并且这种变化的原因仍然难以捉摸。另外,物种更新的决定因素取决于生长形式的扩散能力。在这项研究中,我们基于东亚的8个大型茎图区(覆盖184公顷的森林),探索了整个纬度梯度上木本物种转换的大规模模式。随着东亚地区纬度差异的增加,木质物种周转的方式显着增加。对于整体木本物种,环境解释了Jaccard(βj),Sorenson,(βs)和Simpson相异度(βsim)的总方差的36.30、37.20和48.48%。空间因子分别解释了βj,βs和βsim中总方差的47.92、48.39和41.38%。对于整个木本物种,纯的空间和空间结构化环境的影响要强于纯环境的影响。我们的结果支持以下假设:中性过程对木本物种更新的影响比环境的影响更为重要。中性过程解释了树木物种周转的更多变化,而环境因素解释了灌木物种周转的较大变化。因此,在未来的生物多样性保护工作中,应对树木和灌木采取不同的保护策略。

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