Impacts of the emerald ash borer (Agrilus planipennis Fairmaire) induced ash (Fraxinus spp.) mortality on forest carbon cycling and successional dynamics in the eastern United States

被引:0
作者
Charles E. Flower
Kathleen S. Knight
Miquel A. Gonzalez-Meler
机构
[1] University of Illinois at Chicago,Department of Biological Sciences
[2] USDA Forest Service,undefined
来源
Biological Invasions | 2013年 / 15卷
关键词
Disturbance; Emerald ash borer; Forest; Relative growth rate; Net primary production;
D O I
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中图分类号
学科分类号
摘要
Invasive species are widely recognized as altering species and community dynamics, but their impacts on biogeochemical cycling and ecosystem processes are less understood. The emerald ash borer (Agrilus planipennis Fairmaire) is a phloem feeding beetle that was inadvertently introduced to the US in the 1990s and relies solely on ash trees (Fraxinus spp.) to complete its life cycle. Ash trees have a wide geographic distribution and are an important component of many different forest types in the US. The larval feeding behavior of the emerald ash borer (EAB) effectively girdles the tree’s phloem tissue resulting in tree mortality in as little as 2 years and stand mortality in as little as 5 years. Using the forest inventory and analysis database, we found that forest lands in the lower 48 states hold approximately 8.7 billion ash trees and saplings, which represent ~2.5 % of the aboveground forest carbon mass. Furthermore, we measured tree growth in 7 EAB impacted and 5 non-EAB impacted temperate forests in the Midwestern United States to quantify the impacts of EAB induced tree mortality on tree growth. We hypothesized that the initial C lost would be partly compensated for by the enhanced non-ash tree growth in EAB-impacted regions relative to non-EAB impacted regions. The EAB disturbance enhanced growth of non-ash trees in the EAB impacted region relative to the non-EAB impacted region. Results also indicate that in EAB impacted areas, growth of trees from the genera Acer and Ulmus responded most positively. Finally, we quantified annual biometric net primary productivity of the EAB impacted forests and compared these quantities to modeled growth of these forests in the absence of EAB and found that large scale ash tree mortality has reduced short term regional forest productivity. The loss of ash biometric net primary productivity is, in part compensated by enhanced growth of non-ash species. As expected, EAB disturbance severity was greater in forests with higher basal areas of ash. This study illustrates the ecosystem and regional scale impacts of invasive pest-induced disturbance on biogeochemical cycling and forest species composition.
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页码:931 / 944
页数:13
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  • [1] Anagnostakis SL(1987)Chestnut blight: the classical problem of an introduced pathogen Mycologia 79 23-37
  • [2] Ayres MP(2000)Assessing the consequences of global change for forest disturbance from herbivores and pathogens Sci Total Environ 262 263-286
  • [3] Lombardero MJ(2002)Phenological differences in tree water use and the timing of tropical forest inventories: conclusions from patterns of fry season diameter change For Ecol Manag 171 261-274
  • [4] Baker TR(1997)Eighteen years of change in an Illinois streamside deciduous forest J Torrey Bot Soc 124 174-188
  • [5] Affum-Baffoe K(1977)Changes of land biota and their importance for the carbon cycle Science 196 613-615
  • [6] Burslem DFRP(1991)- Mycopathologia 115 151-161
  • [7] Swaine MD(1999)., causative agent of the current Dutch elm disease pandemics Ecol Appl 9 968-980
  • [8] Bell DT(2000)Spatial patterns of aboveground production and mortality of woody biomass for eastern US forests N Phytol 146 415-425
  • [9] Bolin B(2005)Effects of tree size and temperature on relative growth rate and its components of Am Entomol 51 152-165
  • [10] Brasier CM(2007) seedlings exposed to two partial pressures of atmospheric CO2 Science 318 1107-242