Assessing the consequences of global change for forest disturbance from herbivores and pathogens

被引:560
作者
Ayres, MP [1 ]
Lombardero, MJ [1 ]
机构
[1] Dartmouth Coll, Dept Biol Sci, Hanover, NH 03755 USA
关键词
climate change; herbivory; pathogens; forest epidemiology; risk assessment; disturbance;
D O I
10.1016/S0048-9697(00)00528-3
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Herbivores and pathogens impact the species composition, ecosystem function, and socioeconomic value of forests. Herbivores and pathogens are an integral part of forests, but sometimes produce undesirable effects and a degradation of forest resources. In the United States, a few species of forest pests routinely have significant impacts on up to 20 million ha of forest with economic costs that probably exceed $1 billion/year. Climatic change could alter patterns of disturbance from herbivores and pathogens through: (1) direct effects on the development and survival of herbivores and pathogens; (2) physiological changes in tree defenses; and (3) indirect effects from changes in the abundance of natural enemies (e.g. parasitoids of insect herbivores), mutualists (e.g. insect vectors of tree pathogens), and competitors. Because of their short life cycles, mobility, reproductive potential, and physiological sensitivity to temperature, even modest climate change will have rapid impacts on the distribution and abundance of many forest insects and pathogens. We identify 32 syndromes of biotic disturbance in North American forests that should be carefully evaluated for their responses to climate change: 15 insect herbivores, browsing mammals; 12 pathogens; 1 plant parasite; and 3 undiagnosed patterns of forest decline. It is probable that climatic effects on some herbivores and pathogens will impact on biodiversity, recreation, property value, forest industry, and even water quality. Some scenarios are beneficial (e.g. decreased snow cover may increase winter mortality of some insect pests), but many are detrimental (e.g. warming tends to accelerate insect development rate and facilitate range expansions of pests and climate change tends to produce a mismatch between mature trees and their environment, which can increase vulnerability to herbivores and pathogens). Changes in forest disturbance can produce feedback to climate through affects on water and carbon flux in forest ecosystems; one alarming scenario is that climate warming may increase insect outbreaks in boreal forests, which would tend to increase forest fires and exacerbate further climate warming by releasing carbon stores from boreal ecosystems. We suggest a list of research priorities that will allow us to refine these risk assessments and adopt forest management strategies that anticipate changes in biotic disturbance regimes and mitigate the ecological, social, and economic risks. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:263 / 286
页数:24
相关论文
共 315 条
[1]   A GENERALIZED, LUMPED-PARAMETER MODEL OF PHOTOSYNTHESIS, EVAPOTRANSPIRATION AND NET PRIMARY PRODUCTION IN TEMPERATE AND BOREAL FOREST ECOSYSTEMS [J].
ABER, JD ;
FEDERER, CA .
OECOLOGIA, 1992, 92 (04) :463-474
[2]  
Abrams MD, 1997, CAN J FOREST RES, V27, P994, DOI 10.1139/cjfr-27-7-994
[3]   The red maple paradox [J].
Abrams, MD .
BIOSCIENCE, 1998, 48 (05) :355-364
[4]   White spruce resistance to white pine weevil related to bark resin canal density [J].
Alfaro, RI ;
He, FL ;
Tomlin, E ;
Kiss, G .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1997, 75 (04) :568-573
[5]  
Allen Douglas C., 1992, P123
[6]   RECOVERY OF BROWSE-SENSITIVE TREE SPECIES FOLLOWING RELEASE FROM WHITE-TAILED DEER ODOCOILEUS-VIRGINIANUS ZIMMERMAN BROWSING PRESSURE [J].
ANDERSON, RC ;
KATZ, AJ .
BIOLOGICAL CONSERVATION, 1993, 63 (03) :203-208
[7]  
Anhold J. A., 1996, Western Journal of Applied Forestry, V11, P50
[8]  
[Anonymous], GLOBAL WARMING BIOL
[9]  
[Anonymous], 1992, ECOLOGY DECLINE RED
[10]  
[Anonymous], 1992, The consequences of the greenhouse effect for biological diversity