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Competition-function-structure cascade mediates climate-driven forest network reorganization (Only Data)

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Figshare2025-12-18 更新2026-04-28 收录
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Understanding how climate change reorganizes forest ecosystems has often treated functional shifts and structural connectivity as separate processes. However, this compartmentalized view limits our ability to predict landscape-level outcomes, especially in fragmented urban forests where these dynamics critically intersect. To bridge this gap, we integrate functional diversity metrics with spatial network analysis, using the LANDIS-II model to simulate forest aboveground biomass dynamics in the Pearl River Delta urban agglomeration from 2010 to 2100 under multiple climate scenarios. Here, we only provide the data that might be used during operation. For further exploration and research/code, please refer to another sharing on Figshare(https://doi.org/10.6084/m9.figshare.30908474).

过往研究在探讨气候变化如何重塑森林生态系统时,常将功能转变与结构连通性视为两个独立的过程。然而这种割裂式的研究视角限制了我们对景观尺度生态效应的预测能力,在这类动态过程紧密交织的破碎化城市森林中,这一局限尤为显著。为填补这一研究空白,本研究将功能多样性指标与空间网络分析相结合,借助LANDIS-II模型,对2010至2100年多种气候情景下珠三角城市群的森林地上生物量动态开展模拟。本次仅提供运行过程中可使用的数据集相关内容,如需开展进一步探索、研究或获取代码,请参阅Figshare平台上的另一共享资源(https://doi.org/10.6084/m9.figshare.30908474)。

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2025-12-18
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