메뉴 건너뛰기




Volumn 20, Issue 4, 2012, Pages 199-208

Pseudomonas syringae type III effector repertoires: Last words in endless arguments

Author keywords

Effector triggered immunity; Hypersensitive response; Nonhost resistance; PAMP triggered immunity; Pathogenicity

Indexed keywords

MITOGEN ACTIVATED PROTEIN KINASE; PLANT TOXIN; SYRINGOLIN; SYRINGOMYCIN; SYRINGOPEPTIN; UNCLASSIFIED DRUG; VEGETABLE PROTEIN;

EID: 84859268600     PISSN: 0966842X     EISSN: 18784380     Source Type: Journal    
DOI: 10.1016/j.tim.2012.01.003     Document Type: Review
Times cited : (191)

References (100)
  • 1
    • 0030790687 scopus 로고    scopus 로고
    • Common themes in microbial pathogenicity revisited
    • Finlay B., Falkow S. Common themes in microbial pathogenicity revisited. Microbiol. Mol. Biol. Rev. 1997, 61:136-169.
    • (1997) Microbiol. Mol. Biol. Rev. , vol.61 , pp. 136-169
    • Finlay, B.1    Falkow, S.2
  • 3
    • 35349003200 scopus 로고    scopus 로고
    • Bacterial pathogenomics
    • Pallen M.J., Wren B.W. Bacterial pathogenomics. Nature 2007, 449:835-842.
    • (2007) Nature , vol.449 , pp. 835-842
    • Pallen, M.J.1    Wren, B.W.2
  • 4
    • 37349042882 scopus 로고    scopus 로고
    • Mining the genomes of plant pathogenic bacteria: how not to drown in gigabases of sequence
    • Vinatzer B.A., Yan S. Mining the genomes of plant pathogenic bacteria: how not to drown in gigabases of sequence. Mol. Plant Pathol. 2008, 9:105-118.
    • (2008) Mol. Plant Pathol. , vol.9 , pp. 105-118
    • Vinatzer, B.A.1    Yan, S.2
  • 5
    • 78650093399 scopus 로고    scopus 로고
    • Genome evolution in plant pathogens
    • Dodds P.N. Genome evolution in plant pathogens. Science 2010, 330:1486-1487.
    • (2010) Science , vol.330 , pp. 1486-1487
    • Dodds, P.N.1
  • 6
    • 79551688310 scopus 로고    scopus 로고
    • Plant targets for Pseudomonas syringae type III effectors: virulence targets or guarded decoys?
    • Block A., Alfano J.R. Plant targets for Pseudomonas syringae type III effectors: virulence targets or guarded decoys?. Curr. Opin. Microbiol. 2011, 14:39-46.
    • (2011) Curr. Opin. Microbiol. , vol.14 , pp. 39-46
    • Block, A.1    Alfano, J.R.2
  • 7
    • 80051745904 scopus 로고    scopus 로고
    • Evolution of plant pathogenesis in Pseudomonas syringae: a genomics perspective
    • O'Brien H.E., et al. Evolution of plant pathogenesis in Pseudomonas syringae: a genomics perspective. Annu. Rev. Phytopathol. 2011, 49:269-289.
    • (2011) Annu. Rev. Phytopathol. , vol.49 , pp. 269-289
    • O'Brien, H.E.1
  • 8
    • 79960944810 scopus 로고    scopus 로고
    • Dynamic evolution of pathogenicity revealed by sequencing and comparative genomics of 19 Pseudomonas syringae isolates
    • Baltrus D.A., et al. Dynamic evolution of pathogenicity revealed by sequencing and comparative genomics of 19 Pseudomonas syringae isolates. PLoS Pathog. 2011, 7:e1002132.
    • (2011) PLoS Pathog. , vol.7
    • Baltrus, D.A.1
  • 9
    • 79952586566 scopus 로고    scopus 로고
    • Genetic disassembly and combinatorial reassembly identify a minimal functional repertoire of type III effectors in Pseudomonas syringae
    • Cunnac S., et al. Genetic disassembly and combinatorial reassembly identify a minimal functional repertoire of type III effectors in Pseudomonas syringae. Proc. Natl. Acad. Sci. U.S.A. 2011, 108:2975-2980.
    • (2011) Proc. Natl. Acad. Sci. U.S.A. , vol.108 , pp. 2975-2980
    • Cunnac, S.1
  • 10
    • 79960957705 scopus 로고    scopus 로고
    • Independently evolved virulence effectors converge onto hubs in a plant immune system network
    • Mukhtar M.S., et al. Independently evolved virulence effectors converge onto hubs in a plant immune system network. Science 2011, 333:596-601.
    • (2011) Science , vol.333 , pp. 596-601
    • Mukhtar, M.S.1
  • 11
    • 33751100626 scopus 로고    scopus 로고
    • The plant immune system
    • Jones J.D., Dangl J.L. The plant immune system. Nature 2006, 444:323-329.
    • (2006) Nature , vol.444 , pp. 323-329
    • Jones, J.D.1    Dangl, J.L.2
  • 12
    • 66249135697 scopus 로고    scopus 로고
    • A renaissance of elicitors: perception of microbe-associated molecular patterns and danger signals by pattern-recognition receptors
    • Boller T., Felix G. A renaissance of elicitors: perception of microbe-associated molecular patterns and danger signals by pattern-recognition receptors. Annu. Rev. Plant Biol. 2009, 60:379-406.
    • (2009) Annu. Rev. Plant Biol. , vol.60 , pp. 379-406
    • Boller, T.1    Felix, G.2
  • 13
    • 77957373794 scopus 로고    scopus 로고
    • The long and winding road: virulence effector proteins of plant pathogenic bacteria
    • Hann D.R., Rathjen J.P. The long and winding road: virulence effector proteins of plant pathogenic bacteria. Cell. Mol. Life Sci. 2010, 67:3425-3434.
    • (2010) Cell. Mol. Life Sci. , vol.67 , pp. 3425-3434
    • Hann, D.R.1    Rathjen, J.P.2
  • 14
    • 79551682471 scopus 로고    scopus 로고
    • Activation of plant pattern-recognition receptors by bacteria
    • Segonzac C., Zipfel C. Activation of plant pattern-recognition receptors by bacteria. Curr. Opin. Microbiol. 2011, 14:54-61.
    • (2011) Curr. Opin. Microbiol. , vol.14 , pp. 54-61
    • Segonzac, C.1    Zipfel, C.2
  • 15
    • 79952452887 scopus 로고    scopus 로고
    • Effector-triggered immunity mediated by the Pto kinase
    • Oh C.S., Martin G.B. Effector-triggered immunity mediated by the Pto kinase. Trends Plant Sci. 2011, 16:132-140.
    • (2011) Trends Plant Sci. , vol.16 , pp. 132-140
    • Oh, C.S.1    Martin, G.B.2
  • 16
    • 1642319596 scopus 로고    scopus 로고
    • Evolution of the core genome of Pseudomonas syringae, a highly clonal, endemic plant pathogen
    • Sarkar S.F., Guttman D.S. Evolution of the core genome of Pseudomonas syringae, a highly clonal, endemic plant pathogen. Appl. Environ. Microbiol. 2004, 70:1999-2012.
    • (2004) Appl. Environ. Microbiol. , vol.70 , pp. 1999-2012
    • Sarkar, S.F.1    Guttman, D.S.2
  • 17
    • 79960028477 scopus 로고    scopus 로고
    • Multilocus sequence typing of Pseudomonas syringae sensu lato confirms previously described genomospecies and permits rapid identification of P. syringae pv. coriandricola and P. syringae pv. apii causing bacterial leaf spot on parsley
    • Bull C.T., et al. Multilocus sequence typing of Pseudomonas syringae sensu lato confirms previously described genomospecies and permits rapid identification of P. syringae pv. coriandricola and P. syringae pv. apii causing bacterial leaf spot on parsley. Phytopathology 2011, 101:847-858.
    • (2011) Phytopathology , vol.101 , pp. 847-858
    • Bull, C.T.1
  • 18
    • 23044485038 scopus 로고    scopus 로고
    • Bioinformatics correctly identifies many type III secretion substrates in the plant pathogen Pseudomonas syringae and the biocontrol isolate P. fluorescens SBW25
    • Vinatzer B.A., et al. Bioinformatics correctly identifies many type III secretion substrates in the plant pathogen Pseudomonas syringae and the biocontrol isolate P. fluorescens SBW25. Mol. Plant Microbe Interact. 2005, 18:877-888.
    • (2005) Mol. Plant Microbe Interact. , vol.18 , pp. 877-888
    • Vinatzer, B.A.1
  • 19
    • 33750213711 scopus 로고    scopus 로고
    • Closing the circle on the discovery of genes encoding Hrp regulon members and type III secretion system effectors in the genomes of three model Pseudomonas syringae strains
    • Lindeberg M., et al. Closing the circle on the discovery of genes encoding Hrp regulon members and type III secretion system effectors in the genomes of three model Pseudomonas syringae strains. Mol. Plant Microbe Interact. 2006, 19:1151-1158.
    • (2006) Mol. Plant Microbe Interact. , vol.19 , pp. 1151-1158
    • Lindeberg, M.1
  • 20
    • 14044275134 scopus 로고    scopus 로고
    • A high-throughput, near-saturating screen for type III effector genes from Pseudomonas syringae
    • Chang J.H., et al. A high-throughput, near-saturating screen for type III effector genes from Pseudomonas syringae. Proc. Natl. Acad. Sci. U.S.A. 2005, 102:2549-2554.
    • (2005) Proc. Natl. Acad. Sci. U.S.A. , vol.102 , pp. 2549-2554
    • Chang, J.H.1
  • 21
    • 15244360776 scopus 로고    scopus 로고
    • Proposed guidelines for a unified nomenclature and phylogenetic analysis of type III Hop effector proteins in the plant pathogen Pseudomonas syringae
    • Lindeberg M., et al. Proposed guidelines for a unified nomenclature and phylogenetic analysis of type III Hop effector proteins in the plant pathogen Pseudomonas syringae. Mol. Plant Microbe Interact. 2005, 18:275-282.
    • (2005) Mol. Plant Microbe Interact. , vol.18 , pp. 275-282
    • Lindeberg, M.1
  • 22
    • 77749330016 scopus 로고    scopus 로고
    • PAMDB, a multilocus sequence typing and analysis database and website for plant-associated microbes
    • Almeida N.F., et al. PAMDB, a multilocus sequence typing and analysis database and website for plant-associated microbes. Phytopathology 2010, 100:208-215.
    • (2010) Phytopathology , vol.100 , pp. 208-215
    • Almeida, N.F.1
  • 23
    • 59949090259 scopus 로고    scopus 로고
    • De novo assembly using low-coverage short read sequence data from the rice pathogen Pseudomonas syringae pv. oryzae
    • Reinhardt J.A., et al. De novo assembly using low-coverage short read sequence data from the rice pathogen Pseudomonas syringae pv. oryzae. Genome Res. 2009, 19:294-305.
    • (2009) Genome Res. , vol.19 , pp. 294-305
    • Reinhardt, J.A.1
  • 24
    • 77957938106 scopus 로고    scopus 로고
    • Annotation and overview of the Pseudomonas savastanoi pv. savastanoi NCPPB 3335 draft genome reveals the virulence gene complement of a tumour-inducing pathogen of woody hosts
    • Rodriguez-Palenzuela P., et al. Annotation and overview of the Pseudomonas savastanoi pv. savastanoi NCPPB 3335 draft genome reveals the virulence gene complement of a tumour-inducing pathogen of woody hosts. Environ. Microbiol. 2010, 12:1604-1620.
    • (2010) Environ. Microbiol. , vol.12 , pp. 1604-1620
    • Rodriguez-Palenzuela, P.1
  • 25
    • 36549010517 scopus 로고    scopus 로고
    • Identification of harpins in Pseudomonas syringae pv. tomato DC3000, which are functionally similar to HrpK1 in promoting translocation of type III secretion system effectors
    • Kvitko B.H., et al. Identification of harpins in Pseudomonas syringae pv. tomato DC3000, which are functionally similar to HrpK1 in promoting translocation of type III secretion system effectors. J. Bacteriol. 2007, 189:8059-8072.
    • (2007) J. Bacteriol. , vol.189 , pp. 8059-8072
    • Kvitko, B.H.1
  • 26
    • 0034712731 scopus 로고    scopus 로고
    • The Pseudomonas syringae Hrp pathogenicity island has a tripartite mosaic structure composed of a cluster of type III secretion genes bounded by exchangeable effector and conserved effector loci that contribute to parasitic fitness and pathogenicity in plants
    • Alfano J.R., et al. The Pseudomonas syringae Hrp pathogenicity island has a tripartite mosaic structure composed of a cluster of type III secretion genes bounded by exchangeable effector and conserved effector loci that contribute to parasitic fitness and pathogenicity in plants. Proc. Natl. Acad. Sci. U.S.A. 2000, 97:4856-4861.
    • (2000) Proc. Natl. Acad. Sci. U.S.A. , vol.97 , pp. 4856-4861
    • Alfano, J.R.1
  • 27
    • 42049085712 scopus 로고    scopus 로고
    • A plant pathogen virulence factor inhibits the eukaryotic proteasome by a novel mechanism
    • Groll M., et al. A plant pathogen virulence factor inhibits the eukaryotic proteasome by a novel mechanism. Nature 2008, 452:755-758.
    • (2008) Nature , vol.452 , pp. 755-758
    • Groll, M.1
  • 28
    • 0033028398 scopus 로고    scopus 로고
    • Pseudomonas syringae phytotoxins: mode of action, regulation, and biosynthesis by peptide and polyketide synthetases
    • Bender C.L., et al. Pseudomonas syringae phytotoxins: mode of action, regulation, and biosynthesis by peptide and polyketide synthetases. Microbiol. Mol. Biol. Rev. 1999, 63:266-292.
    • (1999) Microbiol. Mol. Biol. Rev. , vol.63 , pp. 266-292
    • Bender, C.L.1
  • 29
    • 0027974970 scopus 로고
    • AvrA and avrE in Pseudomonas syringae pv. tomato PT23 play a role in virulence on tomato plants
    • Lorang J.M., et al. avrA and avrE in Pseudomonas syringae pv. tomato PT23 play a role in virulence on tomato plants. Mol. Plant Microbe Interact. 1994, 7:508-515.
    • (1994) Mol. Plant Microbe Interact. , vol.7 , pp. 508-515
    • Lorang, J.M.1
  • 30
    • 3843093939 scopus 로고    scopus 로고
    • Diverse evolutionary mechanisms shape the type III effector virulence factor repertoire in the plant pathogen Pseudomonas syringae
    • Rohmer L., et al. Diverse evolutionary mechanisms shape the type III effector virulence factor repertoire in the plant pathogen Pseudomonas syringae. Genetics 2004, 167:1341-1360.
    • (2004) Genetics , vol.167 , pp. 1341-1360
    • Rohmer, L.1
  • 31
    • 68249157008 scopus 로고    scopus 로고
    • Comparative large-scale analysis of interactions between several crop species and the effector repertoires from multiple pathovars of Pseudomonas and Ralstonia
    • Wroblewski T., et al. Comparative large-scale analysis of interactions between several crop species and the effector repertoires from multiple pathovars of Pseudomonas and Ralstonia. Plant Physiol. 2009, 150:1733-1749.
    • (2009) Plant Physiol. , vol.150 , pp. 1733-1749
    • Wroblewski, T.1
  • 32
    • 58149284564 scopus 로고    scopus 로고
    • A draft genome sequence of Pseudomonas syringae pv. tomato strain T1 reveals a repertoire of type III related genes significantly divergent from that of Pseudomonas syringae pv. tomato strain DC3000
    • Almeida N.F., et al. A draft genome sequence of Pseudomonas syringae pv. tomato strain T1 reveals a repertoire of type III related genes significantly divergent from that of Pseudomonas syringae pv. tomato strain DC3000. Mol. Plant Microbe Interact. 2009, 22:52-62.
    • (2009) Mol. Plant Microbe Interact. , vol.22 , pp. 52-62
    • Almeida, N.F.1
  • 33
    • 34250807791 scopus 로고    scopus 로고
    • A Pseudomonas syringae pv. tomato DC3000 mutant lacking the type III effector HopQ1-1 is able to cause disease in the model plant Nicotiana benthamiana
    • Wei C.-F., et al. A Pseudomonas syringae pv. tomato DC3000 mutant lacking the type III effector HopQ1-1 is able to cause disease in the model plant Nicotiana benthamiana. Plant J. 2007, 51:32-46.
    • (2007) Plant J. , vol.51 , pp. 32-46
    • Wei, C.-F.1
  • 34
    • 69949188053 scopus 로고    scopus 로고
    • A 'repertoire for repertoire' hypothesis: repertoires of type three effectors are candidate determinants of host specificity in Xanthomonas
    • Hajri A., et al. A 'repertoire for repertoire' hypothesis: repertoires of type three effectors are candidate determinants of host specificity in Xanthomonas. PLoS ONE 2009, 4:e6632.
    • (2009) PLoS ONE , vol.4
    • Hajri, A.1
  • 35
    • 77953170391 scopus 로고    scopus 로고
    • Two virulence determinants of type III effector AvrPto are functionally conserved in diverse Pseudomonas syringae pathovars
    • Nguyen H.P., et al. Two virulence determinants of type III effector AvrPto are functionally conserved in diverse Pseudomonas syringae pathovars. New Phytol. 2010, 187:969-982.
    • (2010) New Phytol. , vol.187 , pp. 969-982
    • Nguyen, H.P.1
  • 36
    • 59849122902 scopus 로고    scopus 로고
    • Pseudomonas syringae type III secretion system effectors: repertoires in search of functions
    • Cunnac S., et al. Pseudomonas syringae type III secretion system effectors: repertoires in search of functions. Curr. Opin. Microbiol. 2009, 12:53-60.
    • (2009) Curr. Opin. Microbiol. , vol.12 , pp. 53-60
    • Cunnac, S.1
  • 37
    • 33644550434 scopus 로고    scopus 로고
    • Diverse AvrPtoB homologs from several Pseudomonas syringae pathovars elicit Pto-dependent resistance and have similar virulence activities
    • Lin N.C., et al. Diverse AvrPtoB homologs from several Pseudomonas syringae pathovars elicit Pto-dependent resistance and have similar virulence activities. Appl. Environ. Microbiol. 2006, 72:702-712.
    • (2006) Appl. Environ. Microbiol. , vol.72 , pp. 702-712
    • Lin, N.C.1
  • 38
    • 70350223944 scopus 로고    scopus 로고
    • The evolution of Pseudomonas syringae host specificity and type III effector repertoires
    • Lindeberg M., et al. The evolution of Pseudomonas syringae host specificity and type III effector repertoires. Mol. Plant Pathol. 2009, 10:767-775.
    • (2009) Mol. Plant Pathol. , vol.10 , pp. 767-775
    • Lindeberg, M.1
  • 39
    • 46449109082 scopus 로고    scopus 로고
    • Roadmap to new virulence determinants in Pseudomonas syringae: insights from comparative genomics and genome organization
    • Lindeberg M., et al. Roadmap to new virulence determinants in Pseudomonas syringae: insights from comparative genomics and genome organization. Mol. Plant Microbe Interact. 2008, 21:685-700.
    • (2008) Mol. Plant Microbe Interact. , vol.21 , pp. 685-700
    • Lindeberg, M.1
  • 40
    • 29044432423 scopus 로고    scopus 로고
    • Exposure to host resistance mechanisms drives evolution of bacterial virulence in plants
    • Pitman A.R., et al. Exposure to host resistance mechanisms drives evolution of bacterial virulence in plants. Curr. Biol. 2005, 15:2230-2235.
    • (2005) Curr. Biol. , vol.15 , pp. 2230-2235
    • Pitman, A.R.1
  • 41
    • 79953278414 scopus 로고    scopus 로고
    • The stealth episome: suppression of gene expression on the excised genomic island PPHGI-1 from Pseudomonas syringae pv. phaseolicola
    • Godfrey S.A., et al. The stealth episome: suppression of gene expression on the excised genomic island PPHGI-1 from Pseudomonas syringae pv. phaseolicola. PLoS Pathog. 2011, 7:e1002010.
    • (2011) PLoS Pathog. , vol.7
    • Godfrey, S.A.1
  • 42
    • 70349269029 scopus 로고    scopus 로고
    • Bacterial evolution by genomic island transfer occurs via DNA transformation in planta
    • Lovell H.C., et al. Bacterial evolution by genomic island transfer occurs via DNA transformation in planta. Curr. Biol. 2009, 19:1586-1590.
    • (2009) Curr. Biol. , vol.19 , pp. 1586-1590
    • Lovell, H.C.1
  • 43
    • 44249087418 scopus 로고    scopus 로고
    • Role of recombination in the evolution of the model plant pathogen Pseudomonas syringae pv. tomato DC3000, a very atypical tomato strain
    • Yan S., et al. Role of recombination in the evolution of the model plant pathogen Pseudomonas syringae pv. tomato DC3000, a very atypical tomato strain. Appl. Environ. Microbiol. 2008, 74:3171-3181.
    • (2008) Appl. Environ. Microbiol. , vol.74 , pp. 3171-3181
    • Yan, S.1
  • 44
    • 80052380439 scopus 로고    scopus 로고
    • The plant pathogen Pseudomonas syringae pv. tomato is genetically monomorphic and under strong selection to evade tomato immunity
    • Cai R., et al. The plant pathogen Pseudomonas syringae pv. tomato is genetically monomorphic and under strong selection to evade tomato immunity. PLoS Pathog. 2011, 7:e1002130.
    • (2011) PLoS Pathog. , vol.7
    • Cai, R.1
  • 45
    • 70350231901 scopus 로고    scopus 로고
    • Contributions of the effector gene hopQ1-1 to differences in host range between Pseudomonas syringae pv. phaseolicola and P. syringae pv. tabaci
    • Ferrante P., et al. Contributions of the effector gene hopQ1-1 to differences in host range between Pseudomonas syringae pv. phaseolicola and P. syringae pv. tabaci. Mol. Plant Pathol. 2009, 10:837-842.
    • (2009) Mol. Plant Pathol. , vol.10 , pp. 837-842
    • Ferrante, P.1
  • 46
    • 34250626427 scopus 로고    scopus 로고
    • Pto/Prf-mediated recognition of AvrPto and AvrPtoB restricts the ability of diverse Pseudomonas syringae pathovars to infect tomato
    • Lin N.-C., Martin G.B. Pto/Prf-mediated recognition of AvrPto and AvrPtoB restricts the ability of diverse Pseudomonas syringae pathovars to infect tomato. Mol. Plant Microbe Interact. 2007, 20:806-815.
    • (2007) Mol. Plant Microbe Interact. , vol.20 , pp. 806-815
    • Lin, N.-C.1    Martin, G.B.2
  • 47
    • 82955213433 scopus 로고    scopus 로고
    • HopAS1 recognition significantly contributes to Arabidopsis nonhost resistance to Pseudomonas syringae pathogens
    • Sohn K.H., et al. HopAS1 recognition significantly contributes to Arabidopsis nonhost resistance to Pseudomonas syringae pathogens. New Phytol. 2011, 193:58-66.
    • (2011) New Phytol. , vol.193 , pp. 58-66
    • Sohn, K.H.1
  • 48
    • 66349121959 scopus 로고    scopus 로고
    • Deletions in the repertoire of Pseudomonas syringae pv. tomato DC3000 type III secretion effector genes reveal functional overlap among effectors
    • Kvitko B.H., et al. Deletions in the repertoire of Pseudomonas syringae pv. tomato DC3000 type III secretion effector genes reveal functional overlap among effectors. PLoS Pathog. 2009, 5:e1000388.
    • (2009) PLoS Pathog. , vol.5
    • Kvitko, B.H.1
  • 49
    • 49449105359 scopus 로고    scopus 로고
    • Nicotiana benthamiana: its history and future as a model for plant-pathogen interactions
    • Goodin M.M., et al. Nicotiana benthamiana: its history and future as a model for plant-pathogen interactions. Mol. Plant Microbe Interact. 2008, 21:1015-1026.
    • (2008) Mol. Plant Microbe Interact. , vol.21 , pp. 1015-1026
    • Goodin, M.M.1
  • 50
    • 33748658249 scopus 로고    scopus 로고
    • The type III effector repertoire of Pseudomonas syringae pv. syringae B728a and its role in survival and disease on host and non-host plants
    • Vinatzer B.A., et al. The type III effector repertoire of Pseudomonas syringae pv. syringae B728a and its role in survival and disease on host and non-host plants. Mol. Microbiol. 2006, 62:26-44.
    • (2006) Mol. Microbiol. , vol.62 , pp. 26-44
    • Vinatzer, B.A.1
  • 51
    • 70349577932 scopus 로고    scopus 로고
    • A draft genome sequence and functional screen reveals the repertoire of type III secreted proteins of Pseudomonas syringae pathovar tabaci 11528
    • Studholme D.J., et al. A draft genome sequence and functional screen reveals the repertoire of type III secreted proteins of Pseudomonas syringae pathovar tabaci 11528. BMC Genomics 2009, 10:395.
    • (2009) BMC Genomics , vol.10 , pp. 395
    • Studholme, D.J.1
  • 52
    • 77956694805 scopus 로고    scopus 로고
    • Plant immunity directly or indirectly restricts the injection of type III effectors by the Pseudomonas syringae type III secretion system
    • Crabill E., et al. Plant immunity directly or indirectly restricts the injection of type III effectors by the Pseudomonas syringae type III secretion system. Plant Physiol. 2010, 154:233-244.
    • (2010) Plant Physiol. , vol.154 , pp. 233-244
    • Crabill, E.1
  • 53
    • 77954216248 scopus 로고    scopus 로고
    • Rapid linkage of indole carboxylic acid to the plant cell wall identified as a component of basal defence in Arabidopsis against hrp mutant bacteria
    • Forcat S., et al. Rapid linkage of indole carboxylic acid to the plant cell wall identified as a component of basal defence in Arabidopsis against hrp mutant bacteria. Phytochemistry 2010, 71:870-876.
    • (2010) Phytochemistry , vol.71 , pp. 870-876
    • Forcat, S.1
  • 54
  • 55
    • 1942520270 scopus 로고    scopus 로고
    • Bacterial disease resistance in Arabidopsis through flagellin perception
    • Zipfel C., et al. Bacterial disease resistance in Arabidopsis through flagellin perception. Nature 2004, 428:764-767.
    • (2004) Nature , vol.428 , pp. 764-767
    • Zipfel, C.1
  • 56
    • 77949773101 scopus 로고    scopus 로고
    • Differential innate immune signalling via Ca(2+) sensor protein kinases
    • Boudsocq M., et al. Differential innate immune signalling via Ca(2+) sensor protein kinases. Nature 2010, 464:418-422.
    • (2010) Nature , vol.464 , pp. 418-422
    • Boudsocq, M.1
  • 57
    • 77950666930 scopus 로고    scopus 로고
    • Interfamily transfer of a plant pattern-recognition receptor confers broad-spectrum bacterial resistance
    • Lacombe S., et al. Interfamily transfer of a plant pattern-recognition receptor confers broad-spectrum bacterial resistance. Nat. Biotechnol. 2010, 28:365-369.
    • (2010) Nat. Biotechnol. , vol.28 , pp. 365-369
    • Lacombe, S.1
  • 58
    • 59749094857 scopus 로고    scopus 로고
    • Emerging concepts in effector biology of plant-associated organisms
    • Hogenhout S.A., et al. Emerging concepts in effector biology of plant-associated organisms. Mol. Plant Microbe Interact. 2009, 22:115-122.
    • (2009) Mol. Plant Microbe Interact. , vol.22 , pp. 115-122
    • Hogenhout, S.A.1
  • 59
    • 42049121663 scopus 로고    scopus 로고
    • Plant pathogenic bacterial type III effectors subdue host responses
    • Zhou J.M., Chai J. Plant pathogenic bacterial type III effectors subdue host responses. Curr. Opin. Microbiol. 2008, 11:179-185.
    • (2008) Curr. Opin. Microbiol. , vol.11 , pp. 179-185
    • Zhou, J.M.1    Chai, J.2
  • 61
    • 79952302258 scopus 로고    scopus 로고
    • Of PAMPs and effectors: the blurred PTI-ETI dichotomy
    • Thomma B.P., et al. Of PAMPs and effectors: the blurred PTI-ETI dichotomy. Plant Cell 2011, 23:4-15.
    • (2011) Plant Cell , vol.23 , pp. 4-15
    • Thomma, B.P.1
  • 62
    • 79960416666 scopus 로고    scopus 로고
    • Physical association of pattern-triggered immunity (PTI) and effector-triggered immunity (ETI) immune receptors in Arabidopsis
    • Qi Y., et al. Physical association of pattern-triggered immunity (PTI) and effector-triggered immunity (ETI) immune receptors in Arabidopsis. Mol. Plant Pathol. 2011, 12:702-708.
    • (2011) Mol. Plant Pathol. , vol.12 , pp. 702-708
    • Qi, Y.1
  • 63
    • 25144508468 scopus 로고    scopus 로고
    • Natural variation in the Arabidopsis response to the avirulence gene hopPsyA uncouples the hypersensitive response from disease resistance
    • Gassmann W. Natural variation in the Arabidopsis response to the avirulence gene hopPsyA uncouples the hypersensitive response from disease resistance. Mol. Plant Microbe Interact. 2005, 18:1054-1060.
    • (2005) Mol. Plant Microbe Interact. , vol.18 , pp. 1054-1060
    • Gassmann, W.1
  • 64
    • 0032863184 scopus 로고    scopus 로고
    • Identification of a pathogenicity island, which contains genes for virulence and avirulence, on a large native plasmid in the bean pathogen Pseudomonas syringae pathovar phaseolicola
    • Jackson R.W., et al. Identification of a pathogenicity island, which contains genes for virulence and avirulence, on a large native plasmid in the bean pathogen Pseudomonas syringae pathovar phaseolicola. Proc. Natl. Acad. Sci. U.S.A. 1999, 96:10875-10880.
    • (1999) Proc. Natl. Acad. Sci. U.S.A. , vol.96 , pp. 10875-10880
    • Jackson, R.W.1
  • 65
    • 0034601051 scopus 로고    scopus 로고
    • Cultivar-specific avirulence and virulence functions assigned to avrPphF in Pseudomonas syringae pv. phaseolicola, the cause of bean halo-blight disease
    • Tsiamis G., et al. Cultivar-specific avirulence and virulence functions assigned to avrPphF in Pseudomonas syringae pv. phaseolicola, the cause of bean halo-blight disease. EMBO J. 2000, 19:3204-3214.
    • (2000) EMBO J. , vol.19 , pp. 3204-3214
    • Tsiamis, G.1
  • 66
    • 34447542796 scopus 로고    scopus 로고
    • A bacterial E3 ubiquitin ligase targets a host protein kinase to disrupt plant immunity
    • Rosebrock T.R., et al. A bacterial E3 ubiquitin ligase targets a host protein kinase to disrupt plant immunity. Nature 2007, 448:370-374.
    • (2007) Nature , vol.448 , pp. 370-374
    • Rosebrock, T.R.1
  • 67
    • 1342311961 scopus 로고    scopus 로고
    • Identification of Pseudomonas syringae type III secreted effectors that suppress programmed cell death in plants and yeast
    • Jamir Y., et al. Identification of Pseudomonas syringae type III secreted effectors that suppress programmed cell death in plants and yeast. Plant J. 2004, 37:554-565.
    • (2004) Plant J. , vol.37 , pp. 554-565
    • Jamir, Y.1
  • 68
    • 68949100365 scopus 로고    scopus 로고
    • The majority of the type III effector inventory of Pseudomonas syringae pv. tomato DC3000 can suppress plant immunity
    • Guo M., et al. The majority of the type III effector inventory of Pseudomonas syringae pv. tomato DC3000 can suppress plant immunity. Mol. Plant Microbe Interact. 2009, 22:1069-1080.
    • (2009) Mol. Plant Microbe Interact. , vol.22 , pp. 1069-1080
    • Guo, M.1
  • 69
    • 77953222838 scopus 로고    scopus 로고
    • Effector-triggered and pathogen-associated molecular pattern-triggered immunity differentially contribute to basal resistance to Pseudomonas syringae
    • Zhang J., et al. Effector-triggered and pathogen-associated molecular pattern-triggered immunity differentially contribute to basal resistance to Pseudomonas syringae. Mol. Plant Microbe Interact. 2010, 23:940-948.
    • (2010) Mol. Plant Microbe Interact. , vol.23 , pp. 940-948
    • Zhang, J.1
  • 70
    • 33746002275 scopus 로고    scopus 로고
    • A bacterial virulence protein suppresses host innate immunity to cause plant disease
    • Nomura K., et al. A bacterial virulence protein suppresses host innate immunity to cause plant disease. Science 2006, 313:220-223.
    • (2006) Science , vol.313 , pp. 220-223
    • Nomura, K.1
  • 71
    • 79960609450 scopus 로고    scopus 로고
    • Effector-triggered immunity blocks pathogen degradation of an immunity-associated vesicle traffic regulator in Arabidopsis
    • Nomura K., et al. Effector-triggered immunity blocks pathogen degradation of an immunity-associated vesicle traffic regulator in Arabidopsis. Proc. Natl. Acad. Sci. U.S.A. 2011, 108:10774-10779.
    • (2011) Proc. Natl. Acad. Sci. U.S.A. , vol.108 , pp. 10774-10779
    • Nomura, K.1
  • 72
    • 68149147245 scopus 로고    scopus 로고
    • Multiple activities of the plant pathogen type III effector proteins WtsE and AvrE require WxxxE motifs
    • Ham J.H., et al. Multiple activities of the plant pathogen type III effector proteins WtsE and AvrE require WxxxE motifs. Mol. Plant Microbe Interact. 2009, 22:703-712.
    • (2009) Mol. Plant Microbe Interact. , vol.22 , pp. 703-712
    • Ham, J.H.1
  • 73
    • 31644451395 scopus 로고    scopus 로고
    • A Pseudomonas syringae pv. tomato avrE1/hopM1 mutant is severely reduced in growth and lesion formation in tomato
    • Badel J.L., et al. A Pseudomonas syringae pv. tomato avrE1/hopM1 mutant is severely reduced in growth and lesion formation in tomato. Mol. Plant Microbe Interact. 2006, 19:99-111.
    • (2006) Mol. Plant Microbe Interact. , vol.19 , pp. 99-111
    • Badel, J.L.1
  • 74
    • 80051746279 scopus 로고    scopus 로고
    • Hormone crosstalk in plant disease and defense: more than just JASMONATE-SALICYLATE antagonism
    • Robert-Seilaniantz A., et al. Hormone crosstalk in plant disease and defense: more than just JASMONATE-SALICYLATE antagonism. Annu. Rev. Phytopathol. 2011, 49:317-343.
    • (2011) Annu. Rev. Phytopathol. , vol.49 , pp. 317-343
    • Robert-Seilaniantz, A.1
  • 75
    • 80052153210 scopus 로고    scopus 로고
    • Two signal models in innate immunity
    • Fontana M.F., Vance R.E. Two signal models in innate immunity. Immunol. Rev. 2011, 243:26-39.
    • (2011) Immunol. Rev. , vol.243 , pp. 26-39
    • Fontana, M.F.1    Vance, R.E.2
  • 76
    • 33947187591 scopus 로고    scopus 로고
    • A J domain virulence effector of Pseudomonas syringae remodels host chloroplasts and suppresses defenses
    • Jelenska J., et al. A J domain virulence effector of Pseudomonas syringae remodels host chloroplasts and suppresses defenses. Curr. Biol. 2007, 17:499-508.
    • (2007) Curr. Biol. , vol.17 , pp. 499-508
    • Jelenska, J.1
  • 77
    • 77955602623 scopus 로고    scopus 로고
    • Pseudomonas syringae hijacks plant stress chaperone machinery for virulence
    • Jelenska J., et al. Pseudomonas syringae hijacks plant stress chaperone machinery for virulence. Proc. Natl. Acad. Sci. U.S.A. 2010, 107:13177-13182.
    • (2010) Proc. Natl. Acad. Sci. U.S.A. , vol.107 , pp. 13177-13182
    • Jelenska, J.1
  • 78
    • 18644369120 scopus 로고    scopus 로고
    • Induction of protein secretory pathway is required for systemic acquired resistance
    • Wang D., et al. Induction of protein secretory pathway is required for systemic acquired resistance. Science 2005, 308:1036-1040.
    • (2005) Science , vol.308 , pp. 1036-1040
    • Wang, D.1
  • 79
    • 79952656785 scopus 로고    scopus 로고
    • Pseudomonas syringae type III effector HopZ1 targets a host enzyme to suppress isoflavone biosynthesis and promote infection in soybean
    • Zhou H., et al. Pseudomonas syringae type III effector HopZ1 targets a host enzyme to suppress isoflavone biosynthesis and promote infection in soybean. Cell Host Microbe 2011, 9:177-186.
    • (2011) Cell Host Microbe , vol.9 , pp. 177-186
    • Zhou, H.1
  • 80
    • 84857780876 scopus 로고    scopus 로고
    • Evidence for network evolution in an Arabidopsis interactome map
    • Arabidopsis-Interactome-Mapping-Consortium
    • Arabidopsis-Interactome-Mapping-Consortium Evidence for network evolution in an Arabidopsis interactome map. Science 2011, 333:601-607.
    • (2011) Science , vol.333 , pp. 601-607
  • 81
    • 3142534455 scopus 로고    scopus 로고
    • The solution structure of type III effector protein AvrPto reveals conformational and dynamic features important for plant pathogenesis
    • Wulf J., et al. The solution structure of type III effector protein AvrPto reveals conformational and dynamic features important for plant pathogenesis. Structure 2004, 12:1257-1268.
    • (2004) Structure , vol.12 , pp. 1257-1268
    • Wulf, J.1
  • 82
    • 0034255015 scopus 로고    scopus 로고
    • AvrPto-dependent Pto-interacting proteins and AvrPto-interacting proteins in tomato
    • Bogdanove A.J., Martin G.B. AvrPto-dependent Pto-interacting proteins and AvrPto-interacting proteins in tomato. Proc. Natl. Acad. Sci. U.S.A. 2000, 97:8836-8842.
    • (2000) Proc. Natl. Acad. Sci. U.S.A. , vol.97 , pp. 8836-8842
    • Bogdanove, A.J.1    Martin, G.B.2
  • 83
    • 65249124549 scopus 로고    scopus 로고
    • Subcellular localization and functional analysis of the Arabidopsis GTPase RabE
    • Speth E.B., et al. Subcellular localization and functional analysis of the Arabidopsis GTPase RabE. Plant Physiol. 2009, 149:1824-1837.
    • (2009) Plant Physiol. , vol.149 , pp. 1824-1837
    • Speth, E.B.1
  • 84
    • 0038152973 scopus 로고    scopus 로고
    • A Pseudomonas syringae type III effector suppresses cell wall-based extracellular defense in susceptible Arabidopsis plants
    • Hauck P., et al. A Pseudomonas syringae type III effector suppresses cell wall-based extracellular defense in susceptible Arabidopsis plants. Proc. Natl. Acad. Sci. U.S.A. 2003, 100:8577-8582.
    • (2003) Proc. Natl. Acad. Sci. U.S.A. , vol.100 , pp. 8577-8582
    • Hauck, P.1
  • 85
    • 67649959828 scopus 로고    scopus 로고
    • +-ATPases to regulate stomatal apertures during pathogen attack
    • +-ATPases to regulate stomatal apertures during pathogen attack. PLoS Biol. 2009, 7:e1000139.
    • (2009) PLoS Biol. , vol.7
    • Liu, J.1
  • 86
    • 79951639951 scopus 로고    scopus 로고
    • Specific threonine phosphorylation of a host target by two unrelated type III effectors activates a host innate immune receptor in plants
    • Chung E.H., et al. Specific threonine phosphorylation of a host target by two unrelated type III effectors activates a host innate immune receptor in plants. Cell Host Microbe 2011, 9:125-136.
    • (2011) Cell Host Microbe , vol.9 , pp. 125-136
    • Chung, E.H.1
  • 87
    • 10344257928 scopus 로고    scopus 로고
    • Arabidopsis RIN4 negatively regulates disease resistance mediated by RPS2 and RPM1 downstream or independent of the NDR1 signal modulator and is not required for the virulence functions of bacterial type III effectors AvrRpt2 or AvrRpm1
    • Belkhadir Y., et al. Arabidopsis RIN4 negatively regulates disease resistance mediated by RPS2 and RPM1 downstream or independent of the NDR1 signal modulator and is not required for the virulence functions of bacterial type III effectors AvrRpt2 or AvrRpm1. Plant Cell 2004, 16:2822-2835.
    • (2004) Plant Cell , vol.16 , pp. 2822-2835
    • Belkhadir, Y.1
  • 88
    • 79960430606 scopus 로고    scopus 로고
    • Pseudomonas syringae pv. phaseolicola: from 'has bean' to supermodel
    • Arnold D.L., et al. Pseudomonas syringae pv. phaseolicola: from 'has bean' to supermodel. Mol. Plant Pathol. 2011, 12:617-627.
    • (2011) Mol. Plant Pathol. , vol.12 , pp. 617-627
    • Arnold, D.L.1
  • 89
    • 74249122811 scopus 로고    scopus 로고
    • Network properties of robust immunity in plants
    • Tsuda K., et al. Network properties of robust immunity in plants. PLoS Genet. 2009, 5:e1000772.
    • (2009) PLoS Genet. , vol.5
    • Tsuda, K.1
  • 90
    • 78649481757 scopus 로고    scopus 로고
    • Sugar transporters for intercellular exchange and nutrition of pathogens
    • Chen L.Q., et al. Sugar transporters for intercellular exchange and nutrition of pathogens. Nature 2010, 468:527-532.
    • (2010) Nature , vol.468 , pp. 527-532
    • Chen, L.Q.1
  • 91
    • 79952257451 scopus 로고    scopus 로고
    • Pseudomonas sax genes overcome aliphatic isothiocyanate-mediated non-host resistance in Arabidopsis
    • Fan J., et al. Pseudomonas sax genes overcome aliphatic isothiocyanate-mediated non-host resistance in Arabidopsis. Science 2011, 331:1185-1188.
    • (2011) Science , vol.331 , pp. 1185-1188
    • Fan, J.1
  • 92
    • 77956324972 scopus 로고    scopus 로고
    • Comparative genome analysis provides insights into the evolution and adaptation of Pseudomonas syringae pv. aesculi on Aesculus hippocastanum
    • Green S., et al. Comparative genome analysis provides insights into the evolution and adaptation of Pseudomonas syringae pv. aesculi on Aesculus hippocastanum. PLoS ONE 2010, 5:e10224.
    • (2010) PLoS ONE , vol.5
    • Green, S.1
  • 93
    • 78650126298 scopus 로고    scopus 로고
    • Signatures of adaptation to obligate biotrophy in the Hyaloperonospora arabidopsidis genome
    • Baxter L., et al. Signatures of adaptation to obligate biotrophy in the Hyaloperonospora arabidopsidis genome. Science 2010, 330:1549-1551.
    • (2010) Science , vol.330 , pp. 1549-1551
    • Baxter, L.1
  • 94
    • 78650122420 scopus 로고    scopus 로고
    • Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism
    • Spanu P.D., et al. Genome expansion and gene loss in powdery mildew fungi reveal tradeoffs in extreme parasitism. Science 2010, 330:1543-1546.
    • (2010) Science , vol.330 , pp. 1543-1546
    • Spanu, P.D.1
  • 95
    • 78650149135 scopus 로고    scopus 로고
    • Genome evolution following host jumps in the Irish potato famine pathogen lineage
    • Raffaele S., et al. Genome evolution following host jumps in the Irish potato famine pathogen lineage. Science 2010, 330:1540-1543.
    • (2010) Science , vol.330 , pp. 1540-1543
    • Raffaele, S.1
  • 96
    • 79952447459 scopus 로고    scopus 로고
    • A molecular evolutionary concept connecting nonhost resistance, pathogen host range, and pathogen speciation
    • Schulze-Lefert P., Panstruga R. A molecular evolutionary concept connecting nonhost resistance, pathogen host range, and pathogen speciation. Trends Plant Sci. 2011, 16:117-125.
    • (2011) Trends Plant Sci. , vol.16 , pp. 117-125
    • Schulze-Lefert, P.1    Panstruga, R.2
  • 97
    • 40249113894 scopus 로고    scopus 로고
    • The life history of the plant pathogen Pseudomonas syringae is linked to the water cycle
    • Morris C.E., et al. The life history of the plant pathogen Pseudomonas syringae is linked to the water cycle. ISME J. 2008, 2:321-334.
    • (2008) ISME J. , vol.2 , pp. 321-334
    • Morris, C.E.1
  • 98
    • 81755163005 scopus 로고    scopus 로고
    • Multiple candidate effectors from the oomycete pathogen Hyaloperonospora arabidopsidis suppress host plant immunity
    • Fabro G., et al. Multiple candidate effectors from the oomycete pathogen Hyaloperonospora arabidopsidis suppress host plant immunity. PLoS Pathog. 2011, 7:e1002348.
    • (2011) PLoS Pathog. , vol.7
    • Fabro, G.1
  • 99
    • 79952041528 scopus 로고    scopus 로고
    • A systems biology perspective on plant-microbe interactions: biochemical and structural targets of pathogen effectors
    • Pritchard L., Birch P. A systems biology perspective on plant-microbe interactions: biochemical and structural targets of pathogen effectors. Plant Sci. 2011, 180:584-603.
    • (2011) Plant Sci. , vol.180 , pp. 584-603
    • Pritchard, L.1    Birch, P.2
  • 100
    • 77956097573 scopus 로고    scopus 로고
    • Studying plant-pathogen interactions in the genomics era: beyond molecular Koch's postulates to systems biology
    • Schneider D.J., Collmer A. Studying plant-pathogen interactions in the genomics era: beyond molecular Koch's postulates to systems biology. Annu. Rev. Phytopathol. 2010, 48:457-479.
    • (2010) Annu. Rev. Phytopathol. , vol.48 , pp. 457-479
    • Schneider, D.J.1    Collmer, A.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.