Using 'mute' plants to translate volatile signals

被引:111
作者
Paschold, A [1 ]
Halitschke, R [1 ]
Baldwin, IT [1 ]
机构
[1] Max Planck Inst Chem Ecol, Dept Mol Ecol, D-07745 Jena, Germany
关键词
Nicotiana attenuata; volatile organic compounds; between-plant signaling; direct defenses;
D O I
10.1111/j.1365-313X.2005.02623.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
When attacked by herbivores, plants release volatile organic compounds (VOCs) that attract natural enemies of the herbivores and function as indirect defenses. Whether or not neighboring plants 'eavesdrop' on these VOCs remains controversial because most studies use unrealistic experimental conditions and VOC exposures. In order to manipulate exposures of wild-type (WT) Nicotiana attenuata 'receiver' plants, we elicited transformed 'emitter' plants, whose production of herbivore-induced C-6 green leaf volatiles (GLVs) or terpenoid volatiles was genetically silenced, and placed them up-wind of WT 'receiver' plants in open-flow experimental chambers. We compared the transcriptional and secondary metabolite defense responses of WT receiver plants exposed to VOCs from these transgenic emitter plants with those of plants exposed to VOCs from WT emitter plants. No differences in the constitutive accumulation of defense metabolites and the signal molecule jasmonic acid ( JA) were found. Additional elicitation of receiver plants revealed that exposure to WT, GLV-deficient and terpenoid-deficient volatile blends did not prime induced defenses, JA accumulation, or the expression of lipoxygenase 3 (NaLOX3), a gene involved in JA biosynthesis. However, exposure to wound- and herbivore-induced VOCs significantly altered the transcriptional patterns in receiver plants. We identified GLV-dependent genes by complementing the GLV-deficient volatile blend with a mixture of synthetic GLVs. Blends deficient in GLVs or cis-alpha-bergamotene regulated numerous genes in receiver plants that did not respond to the complete VOC blends of WT emitters, indicating a suppressive effect of GLVs and terpenoids. Whether these transcriptional responses translate into changes in plant fitness in nature remains to be determined.
引用
收藏
页码:275 / 291
页数:17
相关论文
共 87 条
[1]   Gene responses in bean leaves induced by herbivory and by herbivore-induced volatiles [J].
Arimura, G ;
Tashiro, K ;
Kuhara, S ;
Nishioka, T ;
Ozawa, R ;
Takabayashi, J .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 277 (02) :305-310
[2]   Herbivory-induced volatiles elicit defence genes in lima bean leaves [J].
Arimura, G ;
Ozawa, R ;
Shimoda, T ;
Nishioka, T ;
Boland, W ;
Takabayashi, J .
NATURE, 2000, 406 (6795) :512-515
[3]   Herbivore-induced volatiles induce the emission of ethylene in neighboring lima bean plants [J].
Arimura, G ;
Ozawa, R ;
Nishioka, T ;
Boland, W ;
Koch, T ;
Kühnemann, F ;
Takabayashi, J .
PLANT JOURNAL, 2002, 29 (01) :87-98
[4]   Plant-plant interactions mediated by volatiles emitted from plants infested by spider mites [J].
Arimura, G ;
Ozawa, R ;
Horiuchi, J ;
Nishioka, T ;
Takabayashi, J .
BIOCHEMICAL SYSTEMATICS AND ECOLOGY, 2001, 29 (10) :1049-1061
[5]  
Bahulikar Rahul A., 2004, BMC Ecology, V4, P12, DOI 10.1186/1472-6785-4-12
[6]   RAPID CHANGES IN TREE LEAF CHEMISTRY INDUCED BY DAMAGE - EVIDENCE FOR COMMUNICATION BETWEEN PLANTS [J].
BALDWIN, IT ;
SCHULTZ, JC .
SCIENCE, 1983, 221 (4607) :277-279
[7]   Inducible nicotine production in native Nicotiana as an example of adaptive phenotypic plasticity [J].
Baldwin, IT .
JOURNAL OF CHEMICAL ECOLOGY, 1999, 25 (01) :3-30
[8]   The eco-physiological complexity of plant responses to insect herbivores [J].
Baldwin, IT ;
Preston, CA .
PLANTA, 1999, 208 (02) :137-145
[9]   Volatile signaling in plant-plant-herbivore interactions: what is real? [J].
Baldwin, IT ;
Kessler, A ;
Halitschke, R .
CURRENT OPINION IN PLANT BIOLOGY, 2002, 5 (04) :351-354
[10]   Jasmonate-induced responses are costly but benefit plants under attack in native populations [J].
Baldwin, IT .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (14) :8113-8118