Bacterial volatiles induce systemic resistance in Arabidopsis

被引:759
作者
Ryu, CM
Farag, MA
Hu, CH
Reddy, MS
Kloepper, JW
Paré, PW
机构
[1] Texas Tech Univ, Dept Chem & Biochem, Lubbock, TX 79409 USA
[2] Auburn Univ, Dept Entomol & Plant Pathol, Auburn, AL 36849 USA
关键词
D O I
10.1104/pp.103.026583
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Plant growth-promoting rhizobacteria, in association with plant roots, can trigger induced systemic resistance (ISR). Considering that low-molecular weight volatile hormone analogues such as methyl jasmonate and methyl salicylate can trigger defense responses in plants, we examined whether volatile organic compounds (VOCs) associated with rhizobacteria can initiate ISR. In Arabidopsis seedlings exposed to bacterial volatile blends from Bacillus subtilis GB03 and Bacillus amyloliquefaciens IN937a, disease severity by the bacterial pathogen Erwinia carotovora subsp. carotovora was significantly reduced compared with seedlings not exposed to bacterial volatiles before pathogen inoculation. Exposure to VOCs from rhizobacteria for as little as 4 d was sufficient to activate ISR in Arabidopsis seedlings. Chemical analysis of the bacterial volatile emissions revealed the release of a series of low-molecular weight hydrocarbons including the growth promoting VOC (2R,3R)-(-)-butanediol. Exogenous application of racemic mixture of (RR) and (SS) isomers of 2,3-butanediol was found to trigger ISR and transgenic lines of B. subtilis that emitted reduced levels of 2,3-butanediol and acetoin conferred reduced Arabidopsis protection to pathogen infection compared with seedlings exposed to VOCs from wild-type bacterial lines. Using transgenic and mutant lines of Arabidopsis, we provide evidence that the signaling pathway activated by volatiles from GB03 is dependent on ethylene, albeit independent of the salicylic acid or jasmonic acid signaling pathways. This study provides new insight into the role of bacteria VOCs as initiators of defense responses in plants.
引用
收藏
页码:1017 / 1026
页数:10
相关论文
共 51 条
[1]   EIN2, a bifunctional transducer of ethylene and stress responses in Arabidopsis [J].
Alonso, JM ;
Hirayama, T ;
Roman, G ;
Nourizadeh, S ;
Ecker, JR .
SCIENCE, 1999, 284 (5423) :2148-2152
[2]   INDUCTION OF DISEASE RESISTANCE IN COMMON BEAN SUSCEPTIBLE TO HALO BLIGHT BACTERIAL PATHOGEN AFTER SEED BACTERIZATION WITH RHIZOSPHERE PSEUDOMONADS [J].
ALSTROM, S .
JOURNAL OF GENERAL AND APPLIED MICROBIOLOGY, 1991, 37 (06) :495-501
[3]   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
[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]   Induction of resistance against Fusarium wilt of tomato by combination of chitosan with an endophytic bacterial strain:: ultrastructure and cytochemistry of the host response [J].
Benhamou, N ;
Kloepper, JW ;
Tuzun, S .
PLANTA, 1998, 204 (02) :153-168
[6]   DISEASE DEVELOPMENT IN ETHYLENE-INSENSITIVE ARABIDOPSIS-THALIANA INFECTED WITH VIRULENT AND AVIRULENT PSEUDOMONAS AND XANTHOMONAS PATHOGENS [J].
BENT, AF ;
INNES, RW ;
ECKER, JR ;
STASKAWICZ, BJ .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1992, 5 (05) :372-378
[7]   New roles for cis-jasmone as an insect semiochemical and in plant defense [J].
Birkett, MA ;
Campbell, CAM ;
Chamberlain, K ;
Guerrieri, E ;
Hick, AJ ;
Martin, JL ;
Matthes, M ;
Napier, JA ;
Pettersson, J ;
Pickett, JA ;
Poppy, GM ;
Pow, EM ;
Pye, BJ ;
Smart, LE ;
Wadhams, GH ;
Wadhams, LJ ;
Woodcock, CM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (16) :9329-9334
[8]   A MUTATION IN ARABIDOPSIS THAT LEADS TO CONSTITUTIVE EXPRESSION OF SYSTEMIC ACQUIRED-RESISTANCE [J].
BOWLING, SA ;
GUO, A ;
CAO, H ;
GORDON, AS ;
KLESSIG, DF ;
DONG, XI .
PLANT CELL, 1994, 6 (12) :1845-1857
[9]  
CAO H, 1994, PLANT CELL, V6, P1583, DOI 10.1105/tpc.6.11.1583
[10]  
Cleyet-Marel JC, 2001, NITROGEN ASSIMILATION BY PLANTS, P185