Increases in volatile organic compound emissions of Scots pine in response to elevated ozone and warming are modified by herbivory and soil nitrogen availability

被引:2
作者
Minna Kivimäenpää
Rajendra P. Ghimire
Sirkka Sutinen
Elina Häikiö
Anne Kasurinen
Toini Holopainen
Jarmo K. Holopainen
机构
[1] University of Eastern Finland,Department of Environmental and Biological Sciences
[2] Natural Resources Institute Finland (Luke),Natural Resources and Bioproduction
来源
European Journal of Forest Research | 2016年 / 135卷
关键词
Air pollution; Climate change; Herbivory; Biogenic volatile organic compounds; Resin canal;
D O I
暂无
中图分类号
学科分类号
摘要
Climate change in the boreal forests include, e.g., warming, increased tropospheric ozone concentration, higher nitrogen (N) deposition and increased risk of insect outbreaks. Climate change influences emissions of biogenic volatile organic compounds (BVOCs) affecting plant defense, communication and atmospheric feedbacks. We studied the effects of elevated temperature (ca. 1 °C), elevated ozone (ca. 1.5 × ambient), two soil N availability levels (prevailing and 120 kg N ha−1 a−1) and herbivory on BVOC emission rates, net photosynthesis and resin canals (BVOCs storage), of Scots pine (Pinus sylvestris) seedlings in an open-field exposure in central Finland. Shoot BVOCs were collected in July 2012 within a few days after feeding by larvae of pine-sawfly Acantholyda posticalis, a month later in August, and in May 2013. Elevated temperature caused twofold to fourfold increases in total emissions of non-oxygenated monoterpenes (MTs), oxygenated MTs and sesquiterpenes (SQTs) and several reactive compounds, and higher N enhanced some of these changes. Ozone and higher N together increased emissions of several MTs and total SQTs. Higher number of resin canals and higher net photosynthesis might have contributed to BVOC increases. Herbivory had the strongest effect on SQT emissions (threefold increase) shortly after feeding. In the following spring, herbivory reduced emission rates of some MTs, but also synergistically increased MTs emissions with temperature but suppressed the increase caused by ozone. Results suggest that warming and ozone, particularly in areas with increased soil N availability, can increase BVOC emissions from young boreal forests in the near future, and herbivory may modify these responses.
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页码:343 / 360
页数:17
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共 352 条
[1]  
Aalto J(2014)New foliage growth is a significant, unaccounted source for volatiles in boreal evergreen forests Biogeosciences 11 1331-1344
[2]  
Kolari P(2003)Gas-phase tropospheric chemistry of biogenic volatile organic compounds: a review Atmos Environ 37 S197-S219
[3]  
Hari P(2002)Herbivory in global climate change research: direct effects of rising temperature on insect herbivores Glob Change Biol 8 1-16
[4]  
Kerminen V-M(2009)The distribution and abundance of animal populations in a climate of uncertainty Oikos 118 1121-1126
[5]  
Schiestl-Aalto P(1991)Effects of nitrogen fertilization on pine needle chemistry and sawfly performance Oecologia 86 202-209
[6]  
Aaltonen H(1998)Different responses of two carbon-based defences in Scots pine needles to nitrogen fertilization Ecoscience 5 502-507
[7]  
Levula J(2007)Sensitivity of terpene emissions to drought and fertilization in terpene-storing Physiol Plant 131 211-255
[8]  
Siivola E(2010) and non-storing Trends Plant Sci 15 167-175
[9]  
Kulmala M(2008)The evolutionary context for herbivore-induced plant volatiles: beyond the ‘cry for help’ Biogeosciences 5 761-777
[10]  
Bäck J(2013)Sesquiterpene emissions from vegetation: a review Atmos Environ 77 440-444