Pathogen-associated molecular pattern recognition rather than development of tissue necrosis contributes to bacterial induction of systemic acquired resistance in Arabidopsis

被引:310
作者
Mishina, Tatiana E. [1 ]
Zeier, Juergen [1 ]
机构
[1] Univ Wurzburg, Julius von Sachs Inst Biol Sci, D-97082 Wurzburg, Germany
关键词
Arabidopsis; systemic acquired resistance ( SAR); flagellin; lipopolysaccharides ( LPS); non-host bacteria; necrosis;
D O I
10.1111/j.1365-313X.2007.03067.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Systemic acquired resistance (SAR) is usually described as a phenomenon whereby localized inoculation with a necrotizing pathogen renders a plant more resistant to subsequent pathogen infection. Here we show that Pseudomonas syringae strains for which Arabidopsis thaliana represents a non-host plant systemically elevate resistance although the underlying interactions neither trigger a hypersensitive response nor cause necrotic disease symptoms. A similar enhancement of systemic resistance was observed when elicitor-active preparations of two typical bacterial pathogen-associated molecular patterns (PAMPs), flagellin and lipopolysaccharides (LPS), were applied in a localized manner. Several lines of evidence indicate that the observed systemic resistance responses are identical to SAR. Localized applications of non-adapted bacteria, flagellin or LPS elevate levels of the SAR regulatory metabolite salicylic acid (SA) and pathogenesis-related (PR) gene expression not only in treated but also in distant leaves. All treatments also systemically increase expression of the SAR marker gene FLAVIN-DEPENDENT MONOOXYGENASE 1. Further, a whole set of SAR-deficient Arabidopsis lines, including mutants in SA biosynthesis and signalling, are impaired in establishing the systemic resistance response triggered by non-host bacteria or PAMPs. We also show that the magnitude of defence reactions such as SA accumulation, PR gene expression or camalexin accumulation induced at sites of virulent or avirulent P. syringae inoculation but not the extent of tissue necrosis during these interactions determines the extent of SAR in distant leaves. Our data indicate that PAMPs significantly contribute to SAR initiation in Arabidopsis and that tissue necroses at inoculation sites are dispensable for SAR activation.
引用
收藏
页码:500 / 513
页数:14
相关论文
共 60 条
[1]   Different requirements for EDS1 and NDR1 by disease resistance genes define at least two R gene-mediated signaling pathways in Arabidopsis [J].
Aarts, N ;
Metz, M ;
Holub, E ;
Staskawicz, BJ ;
Daniels, MJ ;
Parker, JE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (17) :10306-10311
[2]   Reactive oxygen intermediates mediate a systemic signal network in the establishment of plant immunity [J].
Alvarez, ME ;
Pennell, RI ;
Meijer, PJ ;
Ishikawa, A ;
Dixon, RA ;
Lamb, C .
CELL, 1998, 92 (06) :773-784
[3]   MAP kinase signalling cascade in Arabidopsis innate immunity [J].
Asai, T ;
Tena, G ;
Plotnikova, J ;
Willmann, MR ;
Chiu, WL ;
Gomez-Gomez, L ;
Boller, T ;
Ausubel, FM ;
Sheen, J .
NATURE, 2002, 415 (6875) :977-983
[4]   A DISEASE RESISTANCE GENE IN ARABIDOPSIS WITH SPECIFICITY FOR 2 DIFFERENT PATHOGEN AVIRULENCE GENES [J].
BISGROVE, SR ;
SIMONICH, MT ;
SMITH, NM ;
SATTLER, A ;
INNES, RW .
PLANT CELL, 1994, 6 (07) :927-933
[5]   BIOLOGICALLY INDUCED SYSTEMIC ACQUIRED-RESISTANCE IN ARABIDOPSIS-THALIANA [J].
CAMERON, RK ;
DIXON, RA ;
LAMB, CJ .
PLANT JOURNAL, 1994, 5 (05) :715-725
[6]   NDR1, A LOCUS OF ARABIDOPSIS-THALIANA THAT IS REQUIRED FOR DISEASE RESISTANCE TO BOTH A BACTERIAL AND A FUNGAL PATHOGEN [J].
CENTURY, KS ;
HOLUB, EB ;
STASKAWICZ, BJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (14) :6597-6601
[7]   The Arabidopsis receptor kinase FLS2 binds flg22 and determines the specificity of flagellin perception [J].
Chinchilla, D ;
Bauer, Z ;
Regenass, M ;
Boller, T ;
Felix, G .
PLANT CELL, 2006, 18 (02) :465-476
[8]   Lipopolysaccharides from Burkholderia cepacia contribute to an enhanced defensive capacity and the induction of pathogenesis-related proteins in Nicotianae tabacum [J].
Coventry, HS ;
Dubery, IA .
PHYSIOLOGICAL AND MOLECULAR PLANT PATHOLOGY, 2001, 58 (04) :149-158
[9]   A CENTRAL ROLE OF SALICYLIC-ACID IN PLANT-DISEASE RESISTANCE [J].
DELANEY, TP ;
UKNES, S ;
VERNOOIJ, B ;
FRIEDRICH, L ;
WEYMANN, K ;
NEGROTTO, D ;
GAFFNEY, T ;
GUTRELLA, M ;
KESSMANN, H ;
WARD, E ;
RYALS, J .
SCIENCE, 1994, 266 (5188) :1247-1250
[10]   Harpin induces disease resistance in Arabidopsis through the systemic acquired resistance pathway mediated by salicylic acid and the NIM1 gene [J].
Dong, HS ;
Delaney, TP ;
Bauer, DW ;
Beer, SV .
PLANT JOURNAL, 1999, 20 (02) :207-215