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Defects in flagellin glycosylation affect the virulence of Pseudomonas syringae pv. tabaci 6605TAGUCHI, Fumiko; YAMAMOTO, Masanobu; OHNISHI-KAMEYAMA, Mayumi et al.Microbiology (Reading). 2010, Vol 156, pp 72-80, issn 1350-0872, 9 p., 1Article

Bioassay of toxins as a diagnostic method for Pseudomonas syringae pathovarsWEI, Y. D; MORTENSEN, C. N.Journal of phytopathology (1986). 1992, Vol 134, Num 2, pp 110-116, issn 0931-1785Article

Contribution à l'étude antigénique de quatre pathovars de Pseudomonas syringae : intérêt sérologique du lipopolysaccharide = Contribution to antigenic study of four Pseudomonas syringae pathovars. Serological interest of LipopolysaccharideGUILLORIT, Christiane; ASTIE, Monique.1986, 196 pThesis

Pseudomonas syringae pv. photiniae pv. nov., the causal agent of bacterial leaf spot of Photinia glabra MasimGOTO, M.1983, Vol 49, Num 4, pp 457-462Article

Un substrato selettivo per Pseudomonas syringae pv. savastanoi = Un milieu sélectif pour P. s. pv. s = A selective medium for P. s. pv. sVARVARO, L.Phytopathologia Mediterranea. 1983, Vol 22, Num 1-2, pp 78-79, issn 0031-9465Article

Relatedness of Pseudomonas syringae pv. tomato, Pseudomonas syringae pv. maculicola and Pseudomonas syringae pv. antirrhiniHENDSON, M; HILDEBRAND, D. C; SCHROTH, M. N et al.Journal of applied bacteriology. 1992, Vol 73, Num 6, pp 455-464, issn 0021-8847Article

Diverse AvrPtoB homologs from several Pseudomonas syringae pathovars elicit pto-dependent resistance and have similar virulence activitiesLIN, Nai-Chun; ABRAMOVITCH, Robert B; YOUNG JIN KIM et al.Applied and environmental microbiology (Print). 2006, Vol 72, Num 1, pp 702-712, issn 0099-2240, 11 p.Article

The VirPpha/AvrPtoB family of type III effectors in Pseudomonas syringaeOGUIZA, José A; ASENSIO, Aaron C.Research in microbiology (Paris). 2005, Vol 156, Num 3, pp 298-303, issn 0923-2508, 6 p.Article

Efficiency of procedures for induction and cultivation of Pseudomonas syringae pv. pisi L-formELVIRA-RECUENCO, Margarita; VAN VUURDE, Jim W. L.Microbiological research. 2003, Vol 158, Num 4, pp 271-279, issn 0944-5013, 9 p.Article

Pseudomonas syringae pv. phaseolicola genomic clones harboring heterologous DNA sequences suppress the same phaseolotoxin-deficient mutantsKAMDAR, H. V; ROWLEY, K. B; CLEMENTS, D et al.Journal of bacteriology. 1991, Vol 173, Num 3, pp 1073-1079, issn 0021-9193, 7 p.Article

High-throughput analysis of growth differences among phage strainsTURNER, Paul E; DRAGHI, Jeremy A; WILPISZESKI, Regina et al.Journal of microbiological methods. 2012, Vol 88, Num 1, pp 117-121, issn 0167-7012, 5 p.Article

The case for the defense: plants versus Pseudomonas syringaeGIMENEZ-IBANEZ, Selena; RATHJEN, John P.Microbes and infection. 2010, Vol 12, Num 6, pp 428-437, issn 1286-4579, 10 p.Article

Fatty acid composition of Pseudomonas syringae pv. savastanoiWELLS, J. M; CASANO, F. J; SURICO, G et al.Journal of phytopathology (1986). 1991, Vol 133, Num 2, pp 152-162, issn 0931-1785Article

Nachweis einer direkten Isomerisierung von Mannose zu Fructose und ihre Bedeutung für den Mannosestoffwechsel von Pseudomonas syringae pv. phaseolicola = Mise en évidence d'une isomérisation directe de mannose en fructose et sa signification pour le métabolisme du mannose chez Pseudomonas syringae pv. phaseolicola = Isomerization of mannose to fructose and its significance for the metabolism of mannose in Pseudomonas syringae pv. phaseolicolaSAUERSTEIN, J; RAMM, M; SCHUBERT, K et al.Journal of basic microbiology. 1988, Vol 28, Num 9-10, pp 673-679, issn 0233-111XArticle

Misidentification of Pseudomonas strain NCPPB 1498 (ATCC 19875) and proposal for a rejection of the name Pseudomonas syringae pv. panici (Elliott 1923) Young et al. 1978HILDEBRAND, D. C; PALLERONI, N. J.Letters in applied microbiology. 1987, Vol 5, Num 2, pp 27-28, issn 0266-8254Article

Ornithine carbamoyltransferase genes and phaseolotoxin immunity in Pseudomonas syringae pv. phaseolicolaPEET, R. C; PANOPOULOS, N. J.EMBO journal (Print). 1987, Vol 6, Num 12, pp 3585-3591, issn 0261-4189Article

Soil water flow is a source of the plant pathogen Pseudomonas syringae in subalpine headwatersMONTEIL, Caroline L; LAFOLIE, François; LAURENT, Jimmy et al.Environmental microbiology (Print). 2014, Vol 16, Num 7, pp 2038-2052, issn 1462-2912, 15 p.Article

Pseudomonas syringae pv. actinidiae: a re-emerging, multi-faceted, pandemic pathogenSCORTICHINI, Marco; MARCELLETTI, Simone; FERRANTE, Patrizia et al.Molecular plant pathology. 2012, Vol 13, Num 7, pp 631-640, issn 1464-6722, 10 p.Article

Flagellin glycans from two pathovars of Pseudomonas syringae contain rhamnose in D and L configurations in different ratios and modified 4-amino-4,6-dideoxyglucoseTAKEUCHI, Kasumi; ONO, Hiroshi; YOSHIDA, Mitsuru et al.Journal of bacteriology. 2007, Vol 189, Num 19, pp 6945-6956, issn 0021-9193, 12 p.Article

Characterization of the transcriptional activators SalA and SyrF, which are required for syringomycin and syringopeptin production by Pseudomonas syringae pv. syringaeNIAN WANG; LU, Shi-En; RECORDS, Angela R et al.Journal of bacteriology. 2006, Vol 188, Num 9, pp 3290-3298, issn 0021-9193, 9 p.Article

Bildung von Phaseolotoxin und Phosphosulfamylornithin durch Pseudomonas syringae pv. phaseolicola in Submerskultur = Formation de phaséolotoxine et de phosphosulfamylornithine par Pseudomonas syringae pv. phaseolicola en culture profonde = Production of phaseolotoxin and phosphosulfamylornithine by Pseudomonas syringae pv. phaseolicola in submerged cultureBUBLITZ, F; VÖLKSCH, B.Zeitschrift für allgemeine Mikrobiologie. 1983, Vol 23, Num 8, pp 485-490, issn 0044-2208Article

Genome Sequence of the Plant Pathogen Pseudomonas syringae pv. panici LMG 2367HE LIU; HUI QIU; WENJUN ZHAO et al.Journal of bacteriology. 2012, Vol 194, Num 20, pp 5693-5694, issn 0021-9193, 2 p.Article

AlgW regulates multiple Pseudomonas syringae virulence strategiesSCHREIBER, Karl J; DESVEAUX, Darrell.Molecular microbiology (Print). 2011, Vol 80, Num 2, pp 364-377, issn 0950-382X, 14 p.Article

Catalytic domain of the diversified Pseudomonas syringae type III effector HopZ1 determines the allelic specificity in plant hostsMORGAN, Robyn L; HUANBIN ZHOU; LEHTO, Elizabeth et al.Molecular microbiology (Print). 2010, Vol 76, Num 2, pp 437-455, issn 0950-382X, 19 p.Article

Confocal Imaging of Pseudomonas syringae pv. phaseolicola Colony Development in Bean Reveals Reduced Multiplication of Strains Containing the Genomic Island PPHGI-1GODFREY, S. A. C; MANSFIELD, J. W; CORRY, D. S et al.Molecular plant-microbe interactions. 2010, Vol 23, Num 10, pp 1294-1302, issn 0894-0282, 9 p.Article

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