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Summer and winter drought drive the initiation and spread of spruce beetle outbreak

机译:夏季和冬季干旱驱使云杉甲虫爆发的启动和传播

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This study used Landsat-based detection of spruce beetle (Dendroctonus rufipennis) outbreak over the years 2000-2014 across the Southern Rocky Mountain Ecoregion to examine the spatiotemporal patterns of outbreak and assess the influence of temperature, drought, forest characteristics, and previous spruce beetle activity on outbreak development. During the 1999-2013 period, time series of spruce beetle activity were highly spatially correlated (r > 0.5) at distances <5 km, but remained weakly correlated (r = 0.08) at distances >400 km. Furthermore, cluster analysis on time series of outbreak activity revealed the outbreak developed at multiple incipient locations and spread to unaffected forest, highlighting the importance of both local-scale dispersal and regional-scale drivers in synchronizing spruce beetle outbreak. Spatial overlay analysis and Random Forest modeling of outbreak development show that outbreaks initiate in areas characterized by summer, winter, and multi-year drought and that outbreak spread is strongly linked to the proximity and extent of nearby outbreak, but remains associated with drought. Notably, we find that spruce beetle outbreak is associated with low peak snow water equivalent, not just summer drought. As such, future alterations to both winter and summer precipitation regimes are likely to drive important changes in subalpine forests.
机译:这项研究使用了基于Landsat的云杉甲虫(Dendroctonus Rufipennis)爆发了2000 - 2014年南部落矶山脉的爆发,以研究爆发的时空模式,评估温度,干旱,森林特征和以前云杉甲虫的影响爆发开发的活动。在1999 - 2013年期间,在距离<5公里处的云杉甲虫活性的时间串行相关(R> 0.5),但在距离> 400 km的距离保持弱(r = 0.08)。此外,对时间疫情爆发活动的集群分析显示了多个初期地点开发的爆发,并蔓延到未受影响的森林,突出了本地尺度分散和区域规模司机在同步云杉甲虫爆发中的重要性。空间覆盖分析和随机森林建模的爆发开发表明,爆发在夏季,冬季和多年干旱的地区发起,爆发蔓延与附近爆发的邻近和程度相比,但与干旱有关。值得注意的是,我们发现云杉甲虫爆发与低峰雪水等同,而不仅仅是夏季干旱。因此,对冬季和夏季降水制度的未来改变可能会引发苏罗宝森林的重要变化。

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