Interactions of predominant insects and diseases with climate change in Douglas-fir forests of western Oregon and Washington, USA

被引:41
|
作者
Agne, Michelle C. [1 ]
Beedlow, Peter A. [2 ]
Shaw, David C. [1 ]
Woodruff, David R. [3 ]
Lee, E. Henry [2 ]
Cline, Steven P. [2 ]
Comeleo, Randy L. [2 ]
机构
[1] Oregon State Univ, Dept Forest Engn Resources & Management, 280 Peavy Hall, Corvallis, OR 97331 USA
[2] US EPA, 200 SW 35th St, Corvallis, OR 97333 USA
[3] US Forest Serv, USDA, Pacific Northwest Res Stn, Forestry Sci Lab, 3200 SW Jefferson Way, Corvallis, OR 97333 USA
关键词
Climate change; Douglas-fir; Disturbance; Insects; Pathogens; SWISS NEEDLE CAST; STAIN ROOT DISEASE; ELEVATED ATMOSPHERIC CO2; NET PRIMARY PRODUCTION; PACIFIC-NORTHWEST; TREE GROWTH; STRUCTURAL DEVELOPMENT; RESPONSE FUNCTIONS; MOUNTAIN SNOWPACK; FOLIAGE RETENTION;
D O I
10.1016/j.foreco.2017.11.004
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Forest disturbance regimes are beginning to show evidence of climate-mediated changes, such as increasing severity of droughts and insect outbreaks. We review the major insects and pathogens affecting the disturbance regime for coastal Douglas-fir forests in western Oregon and Washington State, USA, and ask how future climate changes may influence their role in disturbance ecology. Although the physiological constraints of light, temperature, and moisture largely control tree growth, episodic and chronic disturbances interacting with biological factors have substantial impacts on the structure and functioning of forest ecosystems in this region. Understanding insect and disease interactions is critical to predicting forest response to climate change and the consequences for ecosystem services, such as timber, clean water, fish and wildlife. We focused on future predictions for warmer wetter winters, hotter drier summers, and elevated atmospheric CO2 to hypothesize the response of Douglas-fir forests to the major insects and diseases influencing this forest type: Douglas-fir beetle, Swiss needle cast, black stain root disease, and laminated root rot. We hypothesize that (1) Douglas-fir beetle and black stain root disease could become more prevalent with increasing, fire, temperature stress, and moisture stress, (2) future impacts of Swiss needle cast are difficult to predict due to uncertainties in May-July leaf wetness, but warmer winters could contribute to intensification at higher elevations, and (3) laminated root rot will be influenced primarily by forest management, rather than climatic change. Furthermore, these biotic disturbance agents interact in complex ways that are poorly understood. Consequently, to inform management decisions, insect and disease influences on disturbance regimes must be characterized specifically by forest type and region in order to accurately capture these interactions in light of future climate-mediated changes.
引用
收藏
页码:317 / 332
页数:16
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