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宿主树大小和气候水分亏缺的跨尺度相互作用控制着树皮甲虫诱导的树木死亡。

Cross-scale interaction of host tree size and climatic water deficit governs bark beetle-induced tree mortality.

机构信息

Graduate Group in Ecology, University of California, Davis, CA, USA.

Department of Plant Sciences, University of California, Davis, CA, USA.

出版信息

Nat Commun. 2021 Jan 8;12(1):129. doi: 10.1038/s41467-020-20455-y.

Abstract

The recent Californian hot drought (2012-2016) precipitated unprecedented ponderosa pine (Pinus ponderosa) mortality, largely attributable to the western pine beetle (Dendroctonus brevicomis; WPB). Broad-scale climate conditions can directly shape tree mortality patterns, but mortality rates respond non-linearly to climate when local-scale forest characteristics influence the behavior of tree-killing bark beetles (e.g., WPB). To test for these cross-scale interactions, we conduct aerial drone surveys at 32 sites along a gradient of climatic water deficit (CWD) spanning 350 km of latitude and 1000 m of elevation in WPB-impacted Sierra Nevada forests. We map, measure, and classify over 450,000 trees within 9 km, validating measurements with coincident field plots. We find greater size, proportion, and density of ponderosa pine (the WPB host) increase host mortality rates, as does greater CWD. Critically, we find a CWD/host size interaction such that larger trees amplify host mortality rates in hot/dry sites. Management strategies for climate change adaptation should consider how bark beetle disturbances can depend on cross-scale interactions, which challenge our ability to predict and understand patterns of tree mortality.

摘要

最近加利福尼亚州的炎热干旱(2012-2016 年)导致了前所未有的黄松(Pinus ponderosa)死亡,这主要归因于西部松甲虫(Dendroctonus brevicomis;WPB)。广泛的气候条件可以直接影响树木死亡率模式,但当局部森林特征影响到杀死树木的树皮甲虫(如 WPB)的行为时,死亡率对气候的反应是非线性的。为了检验这些跨尺度的相互作用,我们在受 WPB 影响的内华达山脉森林中沿着跨越 350 公里纬度和 1000 米海拔的气候水分亏缺(CWD)梯度的 32 个地点进行了空中无人机调查。我们在 9 公里范围内绘制、测量和分类了超过 45 万棵树,并与同时进行的实地调查进行了验证。我们发现,黄松(WPB 的宿主)的更大尺寸、更大比例和更高密度会增加宿主死亡率,而 CWD 也是如此。至关重要的是,我们发现 CWD/宿主大小的相互作用,即较大的树木会放大炎热/干燥地区宿主的死亡率。气候变化适应的管理策略应该考虑到树皮甲虫的干扰如何依赖于跨尺度的相互作用,这挑战了我们预测和理解树木死亡率模式的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d4f/7794511/6d9477c70bdd/41467_2020_20455_Fig1_HTML.jpg

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