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Warming increased bark beetleā€induced tree mortality by 30% during an extreme drought in California

Authors :
Rutuja Chitra-Tarak
Gavin D. Madakumbura
Robert M. Scheller
Michael L. Goulden
Devin W. Goodsman
Alex Hall
Christopher J. Fettig
P. Buotte
Leif A. Mortenson
James A. Powell
Zachary J. Robbins
Brian H. Aukema
Lara M. Kueppers
Chonggang Xu
Charles D. Koven
Source :
Global Change Biology. 28:509-523
Publication Year :
2021
Publisher :
Wiley, 2021.

Abstract

Quantifying the responses of forest disturbances to climate warming is critical to our understanding of carbon cycles and energy balances of the Earth system. The impact of warming on bark beetle outbreaks is complex as multiple drivers of these events may respond differently to warming. Using a novel model of bark beetle biology and host tree interactions, we assessed how contemporary warming affected western pine beetle (Dendroctonus brevicomis) populations and mortality of its host, ponderosa pine (Pinus ponderosa), during an extreme drought in the Sierra Nevada, California, United States. When compared with the field data, our model captured the western pine beetle flight timing and rates of ponderosa pine mortality observed during the drought. In assessing the influence of temperature on western pine beetles, we found that contemporary warming increased the development rate of the western pine beetle and decreased the overwinter mortality rate of western pine beetle larvae leading to increased population growth during periods of lowered tree defense. We attribute a 29.9% (95% CI: 29.4%-30.2%) increase in ponderosa pine mortality during drought directly to increases in western pine beetle voltinism (i.e., associated with increased development rates of western pine beetle) and, to a much lesser extent, reductions in overwintering mortality. These findings, along with other studies, suggest each degree (°C) increase in temperature may have increased the number of ponderosa pine killed by upwards of 35%-40% °C-1 if the effects of compromised tree defenses (15%-20%) and increased western pine beetle populations (20%) are additive. Due to the warming ability to considerably increase mortality through the mechanism of bark beetle populations, models need to consider climate's influence on both host tree stress and the bark beetle population dynamics when determining future levels of tree mortality.

Details

ISSN :
13652486 and 13541013
Volume :
28
Database :
OpenAIRE
Journal :
Global Change Biology
Accession number :
edsair.doi.dedup.....201f86e4723050492f66564924a86665
Full Text :
https://doi.org/10.1111/gcb.15927