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山地生物多样性和生态系统功能:地质与当代环境的相互作用。

Mountain biodiversity and ecosystem functions: interplay between geology and contemporary environments.

机构信息

Key Laboratory of Alpine Ecology and Biodiversity, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing, 100101, China.

College of Resources and Environment, Hunan Agricultural University, Changsha, 410128, China.

出版信息

ISME J. 2020 Apr;14(4):931-944. doi: 10.1038/s41396-019-0574-x. Epub 2020 Jan 2.

Abstract

Although biodiversity and ecosystem functions are strongly shaped by contemporary environments, such as climate and local biotic and abiotic attributes, relatively little is known about how they depend on long-term geological processes. Here, along a 3000-m elevational gradient with tectonic faults on the Tibetan Plateau (that is, Galongla Mountain in Medog County, China), we study the joint effects of geological and contemporary environments on biological communities, such as the diversity and community composition of plants and soil bacteria, and ecosystem functions. We find that these biological communities and ecosystem functions generally show consistent elevational breakpoints at 2000-2800 m, which coincide with Indus-Yalu suture zone fault and are similar to the elevational breakpoints of soil bacteria on another mountain range 1000 km away. Mean annual temperature, soil pH and moisture are the primary contemporary determinants of biodiversity and ecosystem functions, which support previous findings. However, compared with the models excluding geological processes, inclusion of geological effects, such as parent rock and weathering, increases 67.9 and 35.9% of the explained variations in plant and bacterial communities, respectively. Such inclusion increases 27.6% of the explained variations in ecosystem functions. The geological processes thus provide additional links to ecosystem properties, which are prominent but show divergent effects on biodiversity and ecosystem functions: parent rock and weathering exert considerable direct effects on biodiversity, whereas indirectly influence ecosystem functions via interactions with biodiversity and contemporary environments. Thus, the integration of geological processes with environmental gradients could enhance our understanding of biodiversity and, ultimately, ecosystem functioning across different climatic zones.

摘要

尽管生物多样性和生态系统功能受当代环境(如气候和本地生物及非生物属性)的强烈影响,但人们对它们如何依赖长期地质过程知之甚少。在这里,沿着青藏高原的一个 3000 米海拔梯度(即中国墨脱县的加拉弄拉山),我们研究了地质和当代环境对生物群落(如植物和土壤细菌的多样性和群落组成)和生态系统功能的联合影响。我们发现,这些生物群落和生态系统功能通常在 2000-2800 米处表现出一致的海拔断点,与印度-雅鲁藏布江缝合带断层重合,与另一个 1000 公里外山脉的土壤细菌的海拔断点相似。年平均温度、土壤 pH 值和湿度是生物多样性和生态系统功能的主要当代决定因素,这支持了先前的发现。然而,与排除地质过程的模型相比,包括地质作用(如母岩和风化作用)在内,可分别增加植物和细菌群落解释变异的 67.9%和 35.9%。这种纳入增加了生态系统功能解释变异的 27.6%。因此,地质过程提供了与生态系统属性的额外联系,这些联系虽然显著,但对生物多样性和生态系统功能的影响存在差异:母岩和风化作用对生物多样性有相当大的直接影响,而通过与生物多样性和当代环境的相互作用,间接地影响生态系统功能。因此,将地质过程与环境梯度相结合,可以增强我们对不同气候带生物多样性以及最终生态系统功能的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/854d/7082341/dc1a0f0c197e/41396_2019_574_Fig1_HTML.jpg

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