Global Change Effects on Plant Chemical Defenses against Insect Herbivores

被引:183
作者
Bidart-Bouzat, M. Gabriela [1 ]
Imeh-Nathaniel, Adebobola [1 ]
机构
[1] Bowling Green State Univ, Dept Biol Sci, Bowling Green, OH 43402 USA
关键词
elevated CO2; global climate change; insect herbivory; ozone; plant chemical defenses; plant-insect interactions; plant secondary metabolites; temperature; tri-trophic interactions; UV light;
D O I
10.1111/j.1744-7909.2008.00751.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
This review focuses on individual effects of major global change factors, such as elevated CO2, O-3, UV light and temperature, on plant secondary chemistry. These secondary metabolites are well-known for their role in plant defense against insect herbivory. Global change effects on secondary chemicals appear to be plant species-specific and dependent on the chemical type. Even though plant chemical responses induced by these factors are highly variable, there seems to be some specificity in the response to different environmental stressors. For example, even though the production of phenolic compounds is enhanced by both elevated CO2 and UV light levels, the latter appears to primarily increase the concentrations of flavonoids. Likewise, specific phenolic metabolites seem to be induced by O-3 but not by other factors, and an increase in volatile organic compounds has been particularly detected under elevated temperature. More information is needed regarding how global change factors influence inducibility of plant chemical defenses as well as how their indirect and direct effects impact insect performance and behavior, herbivory rates and pathogen attack. This knowledge is crucial to better understand how plants and their associated natural enemies will be affected in future changing environments.
引用
收藏
页码:1339 / 1354
页数:16
相关论文
共 169 条
[1]   Elevated CO2 levels and herbivore damage alter host plant preferences [J].
Agrell, J ;
Anderson, P ;
Oleszek, W ;
Stochmal, A ;
Agrell, C .
OIKOS, 2006, 112 (01) :63-72
[2]   CO2 and O3 effects on host plant preferences of the forest tent caterpillar (Malacosoma disstria) [J].
Agrell, J ;
Kopper, B ;
McDonald, EP ;
Lindroth, RL .
GLOBAL CHANGE BIOLOGY, 2005, 11 (04) :588-599
[3]   Combined effects of elevated CO2 and herbivore damage on alfalfa and cotton [J].
Agrell, J ;
Anderson, P ;
Oleszek, W ;
Stochmal, A ;
Agrell, C .
JOURNAL OF CHEMICAL ECOLOGY, 2004, 30 (11) :2309-2324
[4]   Effects of CO2 and light on tree phytochemistry and insect performance [J].
Agrell, J ;
McDonald, EP ;
Lindroth, RL .
OIKOS, 2000, 88 (02) :259-272
[5]   Influence of supplemental UV-B radiation on photosynthetic characteristics of rice plants [J].
Ambasht, NK ;
Agrawal, M .
PHOTOSYNTHETICA, 1997, 34 (03) :401-408
[6]  
Andalo C, 2001, ECOLOGY, V82, P157, DOI 10.1890/0012-9658(2001)082[0157:IAICUE]2.0.CO
[7]  
2
[8]  
[Anonymous], 2007, IPCC 4 ASS REP CLIM
[9]   Growth and reproduction of the alpine grasshopper Miramella alpina feeding on CO2-enriched dwarf shrubs at treeline [J].
Asshoff, R ;
Hättenschwiler, S .
OECOLOGIA, 2005, 142 (02) :191-201
[10]   Herbivory in global climate change research: direct effects of rising temperature on insect herbivores [J].
Bale, JS ;
Masters, GJ ;
Hodkinson, ID ;
Awmack, C ;
Bezemer, TM ;
Brown, VK ;
Butterfield, J ;
Buse, A ;
Coulson, JC ;
Farrar, J ;
Good, JEG ;
Harrington, R ;
Hartley, S ;
Jones, TH ;
Lindroth, RL ;
Press, MC ;
Symrnioudis, I ;
Watt, AD ;
Whittaker, JB .
GLOBAL CHANGE BIOLOGY, 2002, 8 (01) :1-16