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中国东南部森林中树木β多样性的纬度格局及相关生态过程随空间范围而变化。

Latitudinal patterns of tree β-diversity and relevant ecological processes vary across spatial extents in forests of southeastern China.

作者信息

Liu Maochou, Wu Wenxiang, Wang Ke, Ren Xinshuai, Zhang Xueqin, Wang Lei, Geng Jing, Yang Bo

机构信息

Key Laboratory of Land Surface Pattern and Simulation, Institute of Geographic and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China.

Department of Environment and Resources, University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Plant Divers. 2024 Nov 13;47(1):89-97. doi: 10.1016/j.pld.2024.11.003. eCollection 2025 Jan.

Abstract

Latitudinal patterns of tree β-diversity reveal important insights into the biogeographical processes that influence forest ecosystems. Although previous studies have extensively documented β-diversity within relatively small spatial extents, the potential drivers of β-diversity along latitudinal gradients are still not well understood at larger spatial extents. In this study, we determined whether tree β-diversity is correlated with latitude in forests of southeastern China, and if so, what ecological processes contribute to these patterns of tree β-diversity. We specifically aimed to disentangle the relative contributions from interspecific aggregation and environmental filtering across various spatial extents. We delineated regional communities comprising multiple nearby national forest inventory (NFI) plots around random focal plots. The number of NFI plots in a regional community served as a surrogate for spatial extent. We also used a null model to simulate randomly assembled communities and quantify the deviation (β-deviation) between observed and expected β-diversity. We found that β-diversity decreased along a latitudinal gradient and that this pattern was clearer at larger spatial extents. In addition, latitudinal patterns of β-deviation were explained by the degree of species spatial aggregation. We also identified environmental factors that drive β-deviation in these forests, including precipitation, seasonality, and temperature variation. At larger spatial extents, these environmental variables explained up to 84% of the β-deviation. Our results reinforce that ecological processes are scale-dependent and collectively contribute to the β-gradient in subtropical forests. We recommend that conservation efforts maintain diverse forests and heterogeneous environments at multiple spatial extents to mitigate the adverse effects of climate change.

摘要

树木β多样性的纬度格局揭示了对影响森林生态系统的生物地理过程的重要见解。尽管先前的研究已在相对较小的空间范围内广泛记录了β多样性,但在更大的空间范围内,沿纬度梯度的β多样性潜在驱动因素仍未得到很好的理解。在本研究中,我们确定了中国东南部森林中树木β多样性是否与纬度相关,如果相关,哪些生态过程促成了这些树木β多样性模式。我们特别旨在厘清不同空间范围内种间聚集和环境过滤的相对贡献。我们划定了由围绕随机焦点样地的多个附近国家森林资源清查(NFI)样地组成的区域群落。区域群落中NFI样地的数量用作空间范围的替代指标。我们还使用了一个零模型来模拟随机组装的群落,并量化观察到的和预期的β多样性之间的偏差(β偏差)。我们发现β多样性沿纬度梯度降低,并且这种模式在更大的空间范围内更明显。此外,β偏差的纬度格局由物种空间聚集程度来解释。我们还确定了驱动这些森林中β偏差的环境因素,包括降水量、季节性和温度变化。在更大的空间范围内,这些环境变量解释了高达84%的β偏差。我们的结果强化了生态过程是尺度依赖的,并且共同促成了亚热带森林中的β梯度。我们建议保护工作应在多个空间范围内维持多样的森林和异质的环境,以减轻气候变化的不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4783/11873649/b37abb0040fa/gr1.jpg

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