结构类型层面的树木物种和结构多样性。

IF 2.3 Q2 ECOLOGY
Yuanfa Li, Liting Wei
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引用次数: 0

摘要

背景:物种和结构多样性对于理解森林群落的形成、关键生态过程以及改善森林生态功能和服务非常重要,但其空间特征却很少受到关注。根据相邻树木之间的空间关系,我们提出将一个结构单元内的树木划分为 15 种结构类型,并利用均匀角指数(W)、混交(M)和优势度(U)的单变量分布以及四种常见的物种多样性指数,分析了北回归线附近天然林的结构类型多样性:结果:只有部分丛生类保持聚集,大部分呈现随机模式。不同分布等级的物种混杂度呈指数增长,丰度和富集度在最初增长后略有下降。混合类的分布模式从高度聚集到随机分布不等,M 分布从倒 J 形曲线逐渐转变为 J 形曲线。丰度和富集度呈指数分布,而香农-维纳指数呈线性增长。分化等级的 W 分布近似正态分布,而 M 分布则呈 J 型。每种结构类型的 U 分布约为 0.2.结论:这些结果揭示了树木在结构类型水平上的物种和结构多样性特征,拓展了我们对森林生物多样性的认识。本文提出的新方法应能极大地促进陆地生态系统的生物多样性监测工作,并表明需要以更高的标准来模拟和重建林分结构,以及在近自然森林中进行间伐。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Species and structural diversity of trees at the structural type level.

Species and structural diversity of trees at the structural type level.

Background: Species and structural diversity are important for understanding the formation of forest communities, key ecological processes, and improving forest ecological functions and services, but their spatial characteristics have received little attention. Based on the spatial relationships among neighbouring trees, we proposed to divide trees within a structural unit into 15 structural types, and used the univariate distributions of the uniform angle index (W), mingling (M), and dominance (U), along with four common species diversity indices, to analyse the diversity of structural types in natural forests near the Tropic of Cancer.

Results: Only a portion of clumped class maintained aggregation, most exhibited a random pattern. Species mixture increased exponentially across distribution classes, and abundance and richness exhibited an initial increase followed by a slight decrease. The distribution patterns of mixture classes varied from highly clustered to random, and M distributions gradually shifted from an inverted J-shaped curve to a J-shaped curve. Abundance and richness exhibited an exponential distribution, whereas the Shannon-Wiener index increased linearly. The W distribution of differentiation classes approximated a normal distribution, whereas M distributions exhibited a J shape. The U distribution of each structure type was approximately 0.2.

Conclusions: These results reveal the species and structural diversity characteristics of trees at the structural type level and expand our knowledge of forest biodiversity. The new method proposed here should significantly contribute to biodiversity monitoring efforts in terrestrial ecosystems, and suggests that higher standards for the simulation and reconstruction of stand structure, as well as thinning in near-natural forests, is warranted.

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