Relationship between tree species diversity and water holding capacity of litter layer in subtropical region.

Q3 Environmental Science 应用生态学报 Pub Date : 2024-07-18 DOI:10.13287/j.1001-9332.202407.003
Jian-Wen Xie, Hui Jia, Xiao-Yu Lin
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Abstract

Litter layer, serving as the "skin" of forest soil, plays a crucial role in conserving water resources and maintaining soil and water conservation. We analyzed the relationship of tree species richness, community weighted mean traits, and functional diversity with the standing mass, maximum water holding rate, and effective water sto-rage capacity of litters from various tree species including Liquidambar formosana, Mytilaria laosensis, Castanopsis sclerophylla, Castanopsis hystrix, Cunninghamia lanceolata, Pinus massoniana, Fokienia hodginsii, Taxus wallichiana and their combinations of mixed forests in subtropical region. The results showed that across various tree species combinations, the ranges of maximum water holding rate, standing litter mass and effective water storage capacity of undecomposed layer were 0-419%, 0-0.58 t·hm-2, and 0-1.66 t·hm-2, respectively. For the semi-decomposition layer, these values spanned in 0-375%, 0-6.14 t·hm-2, and 0-16.03 t·hm-2, respectively. Tree species richness and community weighted mean specific leaf area had significantly positive effects on standing mass of litter and effective water storage capacity, while community weighted mean leaf N content had significantly negative effect on standing mass of litter. The maximum water holding rate increased with the increases of functional diversity of specific leaf area and community weighted mean specific leaf area, decreased with the increase of community weighted mean leaf thickness. Results of structural equation model showed that tree species richness increased litter water holding capacity by increasing functional diversity of specific leaf area. The community weighted mean specific leaf area increased the water holding capacity of litter layer by increasing standing mass of litter and the maximum water holding rate. It is necessary to consider planting mixed forest with higher community weighted mean specific leaf area in the management of subtropical artificial forest, so as to improve the water holding capacity of litter layer.

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亚热带地区树种多样性与枯落物层持水能力之间的关系
作为森林土壤的 "表皮",腐殖质层在涵养水资源和保持水土方面起着至关重要的作用。我们分析了亚热带地区混交林中树种丰富度、群落加权平均性状、功能多样性与不同树种(Liquidambar formosana、Mytilaria laosensis、Castanopsis sclerophylla、Castanopsis hystrix、Cunninghamia lanceolata、Pinus massoniana、Fokienia hodginsii、Taxus wallichiana及其组合)落叶层的立木质量、最大持水率和有效储水能力的关系。结果表明,在不同树种组合中,未分解层的最大持水率、立枯落叶量和有效储水量的范围分别为 0-419%、0-0.58 t-hm-2 和 0-1.66 t-hm-2。半分解层的这些数值分别为 0-375%、0-6.14 t-hm-2 和 0-16.03 t-hm-2。树种丰富度和群落加权平均比叶面积对枯落物堆积质量和有效储水能力有显著的正向影响,而群落加权平均叶氮含量对枯落物堆积质量有显著的负向影响。最大持水量随着功能多样性比叶面积和群落加权平均比叶面积的增加而增加,随着群落加权平均叶片厚度的增加而减少。结构方程模型的结果表明,树种丰富度通过增加特定叶面积的功能多样性来提高枯落物的持水量。群落加权平均比叶面积通过增加枯落物的立木质量和最大持水率来提高枯落物层的持水能力。在亚热带人工林管理中,有必要考虑种植群落加权平均比叶面积更高的混交林,以提高枯落物层的持水能力。
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应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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