...
首页> 外文期刊>Ecosphere >Interactions among spruce beetle disturbance, climate change and forest dynamics captured by a forest landscape model
【24h】

Interactions among spruce beetle disturbance, climate change and forest dynamics captured by a forest landscape model

机译:森林景观模型捕获的云杉甲虫干扰,气候变化与森林动态之间的相互作用

获取原文
           

摘要

The risk of bark beetle outbreaks is widely predicted to increase because of a warming climate that accelerates temperature‐driven beetle population growth and drought stress that impairs host tree defenses. However, few if any studies have explicitly evaluated climatically enhanced beetle population dynamics in relation to climate‐driven changes in forest composition and structure that may alter forest suitability for beetle infestation. We synthesized current understanding of the interactions among climate, spruce beetles ( Dendroctonus rufipennis ) and forest dynamics to parameterize and further advance the bark beetle module of a dynamic forest landscape model (LandClim) that also integrates fire and wind disturbance and climate‐driven forest succession. We applied the model to a subalpine watershed in northwestern Colorado to examine the mechanisms and feedbacks that may lead to shifts in forest composition and spruce beetle disturbance under three climate change scenarios. Simulation results suggest increased drought‐ and beetle‐induced reduction of large Engelmann spruce ( Picea engelmannii ) trees while Douglas‐fir ( Pseudotsuga menziesii ) and ponderosa pine ( Pinus ponderosa ) increased in dominance throughout the study area under all climate change scenarios. This shift in forest composition and structure counterbalances the enhancing effects of accelerated beetle population development and increased drought‐induced susceptibility of spruce to beetles. As a result, we projected a long‐term decrease in beetle‐induced spruce mortality to below historical values under all climate scenarios at low elevations (2800 m asl). Beetle‐induced spruce mortality above 2800 m asl and under moderate climate change was slightly higher and more variable than under historical conditions but decreased to 36% and 6% of historical values under intermediate and extreme climate change, respectively. Because mechanisms driving beetle disturbance dynamics are similar across different bark beetle species, we argue that the depletion of host trees due to drought and beetle disturbance may also be important in other climate‐sensitive beetle‐host systems. We advocate for the consideration of climate‐driven shifts in forest and disturbance dynamics in devising adaptive management strategies.
机译:人们普遍预测,由于气候变暖会加速温度驱动的甲虫种群增长和干旱胁迫而削弱寄主树防御能力,因此,树皮甲虫暴发的风险会增加。但是,很少有研究明确评估气候变化引起的甲虫种群动态与气候驱动的森林组成和结构变化有关,这些变化可能会改变森林对甲虫的适应性。我们综合了当前对气候,云杉甲虫(Dendroctonus rufipennis)和森林动力学之间相互作用的理解,以参数化并进一步发展动态森林景观模型(LandClim)的树皮甲虫模块,该模型还结合了火与风扰动和气候驱动的森林演替。我们将该模型应用于科罗拉多州西北部的一个亚高山流域,以研究在三种气候变化情景下可能导致森林组成变化和云杉甲虫干扰的机制和反馈。模拟结果表明,在所有气候变化情景下,整个研究区的大型恩格尔曼云杉(Picea engelmannii)树木因干旱和甲虫引起的减少均增加,而花旗松(Pseudotsuga menziesii)和美国黄松(Pinus tankerosa)的优势度增加。森林组成和结构的这种变化抵消了甲虫种群加速发展和干旱引起的云杉对甲虫敏感性增加的增强作用。结果,我们预计在低海拔(<2800 m asl)的所有气候情景下,甲虫诱发的云杉死亡率将长期降低至历史值以下。甲虫诱发的云杉死亡率高于2800 m asl且在中等气候变化下比历史条件下略高,且变化更大,但在中度和极端气候变化下分别降至历史值的36%和6%。由于不同树皮甲虫物种之间驱动甲虫干扰动态的机制相似,因此我们认为干旱和甲虫干扰导致的宿主树枯竭在其他对气候敏感的甲虫宿主系统中也可能很重要。我们提倡在设计适应性管理策略时考虑气候驱动的森林变化和干扰动态。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号