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运用最大信息熵解析亚马逊树群集组装:对热带森林生态学的定量分析。

Unraveling Amazon tree community assembly using Maximum Information Entropy: a quantitative analysis of tropical forest ecology.

机构信息

Quantitative Biodiversity Dynamics, Ecology and Biodiversity, Utrecht University Botanic Gardens, Utrecht University, Padualaan 8, Utrecht, 3584 CH, The Netherlands.

Naturalis Biodiversity Center, PO Box 9517, Leiden, 2300 RA, The Netherlands.

出版信息

Sci Rep. 2023 Feb 17;13(1):2859. doi: 10.1038/s41598-023-28132-y.

Abstract

In a time of rapid global change, the question of what determines patterns in species abundance distribution remains a priority for understanding the complex dynamics of ecosystems. The constrained maximization of information entropy provides a framework for the understanding of such complex systems dynamics by a quantitative analysis of important constraints via predictions using least biased probability distributions. We apply it to over two thousand hectares of Amazonian tree inventories across seven forest types and thirteen functional traits, representing major global axes of plant strategies. Results show that constraints formed by regional relative abundances of genera explain eight times more of local relative abundances than constraints based on directional selection for specific functional traits, although the latter does show clear signals of environmental dependency. These results provide a quantitative insight by inference from large-scale data using cross-disciplinary methods, furthering our understanding of ecological dynamics.

摘要

在全球快速变化的时代,确定物种丰富度分布模式的因素仍然是理解生态系统复杂动态的首要问题。信息熵的约束最大化通过使用最小有偏概率分布进行预测,对重要约束进行定量分析,为理解此类复杂系统动态提供了一个框架。我们将其应用于亚马逊地区七种森林类型和十三种功能特征的两千多公顷树木清单,这些特征代表了植物策略的主要全球轴。结果表明,由属的区域相对丰度形成的约束比基于特定功能特征的定向选择的约束能解释本地相对丰度的八倍,尽管后者确实显示出对环境依赖的明显信号。这些结果通过使用跨学科方法从大规模数据中推断提供了定量的见解,进一步加深了我们对生态动态的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e751/9938116/d73e4e375d1c/41598_2023_28132_Fig1_HTML.jpg

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