Two Type III Secretion System Effectors from Ralstonia solanacearum GMI1000 Determine Host-Range Specificity on Tobacco

被引:131
作者
Poueymiro, Marie [1 ]
Cunnac, Sebastien [1 ]
Barberis, Patrick [1 ]
Deslandes, Laurent [1 ]
Peeters, Nemo [1 ]
Cazale-Noel, Anne-Claire [1 ]
Boucher, Christian [1 ]
Genin, Stephane [1 ]
机构
[1] INRA, CNRS, UMR 2594 441, LIPM, F-31320 Castanet Tolosan, France
关键词
HRP GENE-CLUSTER; PSEUDOMONAS-SOLANACEARUM; AVIRULENCE GENE; BACTERIAL WILT; FUNCTIONAL-ANALYSIS; PLANT-CELLS; VIRULENCE; PATHOGENICITY; ARABIDOPSIS; PROTEINS;
D O I
10.1094/MPMI-22-5-0538
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
The model pathogen Ralstonia solanacearum GMI1000 is the causal agent of the bacterial wilt disease that attacks many solanaceous plants and other hosts but not tobacco (Nicotiana spp.). We found that two type III secretion system effector genes, avrA and popPI, are limiting the host range of strain GMI1000 on at least three tobacco species (N. tabacum, N. benthamiana, and N. glutinosa). Both effectors elicit the hypersensitive response (HR) on these tobacco species, although in different manners; AvrA is the major determinant recognized by N. tabacum and N. benthamiana, while PopPI appears to be the major HR elicitor on N. glutinosa. Only the double inactivation of the avrA and popP1 genes allowed GMI1000 to wilt tobacco plants, thus showing that GMI1000 intrinsically possesses the functions necessary to wilt tobacco plants. A focused analysis on AvrA revealed that the first 58 N-terminal amino acids are sufficient to direct its injection into plant cells. We identified a hypervariable region in avrA, which contains variable numbers of tandem repeats (VNTR), each composed of 12 base pairs. We show that an 18-amino acid region in which the VNTR insertion occurs is an important domain involved in HR elicitation on N. benthamiana. avrA appears to be the target of various DNA insertions or mobile elements that probably allow R. solanacearum to evade the recognition and defense responses of tobacco. © 2009 The American Phytopathological Society.
引用
收藏
页码:538 / 550
页数:13
相关论文
共 58 条
[31]   A DNA TRANSFORMATION-COMPETENT ARABIDOPSIS GENOMIC LIBRARY IN AGROBACTERIUM [J].
LAZO, GR ;
STEIN, PA ;
LUDWIG, RA .
BIO-TECHNOLOGY, 1991, 9 (10) :963-967
[32]   Bacterial avirulence genes [J].
Leach, JE ;
White, FF .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 1996, 34 :153-179
[33]   The Pseudomonas syringae avrRpt2 gene contributes to virulence on tomato [J].
Lim, MTS ;
Kunkel, BN .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2005, 18 (07) :626-633
[34]   AVRA AND AVRE IN PSEUDOMONAS-SYRINGAE PV TOMATO PT23 PLAY A ROLE IN VIRULENCE ON TOMATO PLANTS [J].
LORANG, JM ;
SHEN, H ;
KOBAYASHI, D ;
COOKSEY, D ;
KEEN, NT .
MOLECULAR PLANT-MICROBE INTERACTIONS, 1994, 7 (04) :508-515
[35]   Identification of a novel Pseudomonas syringae Psy61 effector with virulence and avirulence functions by a HrpL-dependent promoter-trap assay [J].
Losada, L ;
Sussan, T ;
Pak, K ;
Zeyad, S ;
Rozenbaum, I ;
Hutcheson, SW .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2004, 17 (03) :254-262
[36]   Evolutionary changes in mutation rates and spectra and their influence on the adaptation of pathogens [J].
Metzgar, D ;
Wills, C .
MICROBES AND INFECTION, 2000, 2 (12) :1513-1522
[37]   ADAPTIVE EVOLUTION OF HIGHLY MUTABLE LOCI IN PATHOGENIC BACTERIA [J].
MOXON, ER ;
RAINEY, PB ;
NOWAK, MA ;
LENSKI, RE .
CURRENT BIOLOGY, 1994, 4 (01) :24-33
[38]   Molecular signals required for type III secretion and translocation of the Xanthomonas campestris AvrBs2 protein to pepper plants [J].
Mudgett, MB ;
Chesnokova, O ;
Dahlbeck, D ;
Clark, ET ;
Rossier, O ;
Bonas, U ;
Staskawicz, BJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (24) :13324-13329
[39]   The hypersensitive response; the centenary is upon us but how much do we know? [J].
Mur, Luis A. J. ;
Kenton, Paul ;
Lloyd, Amanda J. ;
Ougham, Helen ;
Prats, Elena .
JOURNAL OF EXPERIMENTAL BOTANY, 2008, 59 (03) :501-520
[40]   Genome-wide analysis of gene expression in Ralstonia solanacearum reveals that the hrpB gene acts as a regulatory switch controlling multiple virulence pathways [J].
Occhialini, A ;
Cunnac, S ;
Reymond, N ;
Genin, S ;
Boucher, C .
MOLECULAR PLANT-MICROBE INTERACTIONS, 2005, 18 (09) :938-949