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Topography-associated thermal gradient predicts warming effects on woody plant structural diversity in a subtropical forest

机译:地形相关的热梯度预测变暖对亚热带森林木本植物结构多样性的影响

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摘要

Understanding global warming effects on forest ecosystems will help policy-makers and forest managers design forest management and biodiversity conservation strategies. We examined the change in woody plant structural diversity in response to topography-associated thermal gradients in a subtropical forest with diverse abundance patterns. We found that energy distribution in a warming trend across slopes had significant effects on woody plant structural diversity. Except for total basal area of the adult trees, plant structural diversity significantly decreased with the increase of heat load. Heat load is significantly and negatively correlated with number of stems, number of species, and the number of stems of the most abundant species (Nmax) for seedlings, saplings, and individuals of all sizes. For the adult trees, heat load is significantly and positively correlated with number of stems and Nmax, and negatively but not significantly with number of species, indicating that large trees may not be as sensitive as seedlings and saplings to warming. Partial correlation analysis, having controlled for elevation, strengthened those relations in most cases. Our results reveal that warming will increase community productivity by enhancing the growth of large trees, but decrease species diversity and inhibit the regeneration of tree seedlings and saplings.
机译:了解全球变暖对森林生态系统的影响将有助于政策制定者和森林管理者设计森林管理和生物多样性保护战略。我们在具有丰富度模式的亚热带森林中研究了木本植物结构多样性的变化,以响应与地形相关的热梯度。我们发现沿坡度变暖趋势的能量分布对木本植物的结构多样性有重要影响。除了成年树的总基础面积外,植物结构多样性随着热负荷的增加而显着下降。热负荷与茎的数量,种类的数量以及各种大小的幼苗,幼树和个体的最丰富的种类(Nmax)的茎的数量呈显着负相关。对于成年树,热负荷与茎数和Nmax呈显着正相关,与树种数量呈负相关,但不显着,这表明大树对变暖的敏感性可能不如幼苗和幼树。在大多数情况下,对高度进行控制后的偏相关分析加强了这些关系。我们的研究结果表明,变暖将通过促进大型树木的生长来提高社区生产力,但会降低物种多样性并抑制树木幼苗和树苗的再生。

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