This shows you the differences between two versions of the page.
| Both sides previous revisionPrevious revisionNext revision | Previous revision | ||
| typing:molecular_typing [2026/08/07 10:02] – [References] rkoebnik | typing:molecular_typing [2026/08/07 10:30] (current) – [References] rkoebnik | ||
|---|---|---|---|
| Line 125: | Line 125: | ||
| Mhedbi-Hajri N, Hajri A, Boureau T, Darrasse A, Durand K, Brin C, Fischer-Le Saux M, Manceau C, Poussier S, Pruvost O, Lemaire C, Jacques MA (2013). Evolutionary history of the plant pathogenic bacterium // | Mhedbi-Hajri N, Hajri A, Boureau T, Darrasse A, Durand K, Brin C, Fischer-Le Saux M, Manceau C, Poussier S, Pruvost O, Lemaire C, Jacques MA (2013). Evolutionary history of the plant pathogenic bacterium // | ||
| - | |||
| - | Mirmajlessi SM, Destefanis M, Gottsberger RA, Mänd M, Loit E (2015). PCR-based specific techniques used for detecting the most important pathogens on strawberry: a systematic review. Syst. Rev. 4: 9. DOI: [[https:// | ||
| Mkandawire AB, Mabagala RB, Guzmán P, Gepts P, Gilbertson RL (2004). Genetic diversity and pathogenic variation of common blight bacteria (// | Mkandawire AB, Mabagala RB, Guzmán P, Gepts P, Gilbertson RL (2004). Genetic diversity and pathogenic variation of common blight bacteria (// | ||
| Line 178: | Line 176: | ||
| Siddique F, Xiaofeng X, Zhe N, Mingxiu Y, Dawei L, Yuting L, Naibo Y, Younis H, Niaz N, Junhua Z (2025). Genetic diversity and population structure of phyllosphere-associated // | Siddique F, Xiaofeng X, Zhe N, Mingxiu Y, Dawei L, Yuting L, Naibo Y, Younis H, Niaz N, Junhua Z (2025). Genetic diversity and population structure of phyllosphere-associated // | ||
| - | |||
| - | Stöger A, Ruppitsch W (2004). A rapid and sensitive method for the detection of // | ||
| Timilsina S, Jibrin MO, Potnis N, Minsavage GV, Kebede M, Schwartz A, Bart R, Staskawicz B, Boyer C, Vallad GE, Pruvost O, Jones JB, Goss EM (2015). Multilocus sequence analysis of xanthomonads causing bacterial spot of tomato and pepper plants reveals strains generated by recombination among species and recent global spread of // | Timilsina S, Jibrin MO, Potnis N, Minsavage GV, Kebede M, Schwartz A, Bart R, Staskawicz B, Boyer C, Vallad GE, Pruvost O, Jones JB, Goss EM (2015). Multilocus sequence analysis of xanthomonads causing bacterial spot of tomato and pepper plants reveals strains generated by recombination among species and recent global spread of // | ||
| Line 188: | Line 184: | ||
| Vancheva T, Stoyanova M, Tasheva-Terzieva E, Bogatzevska N, Moncheva P (2018). Molecular methods for diversity assessment among xanthomonads of Bulgarian and Macedonian pepper. Braz. J. Microbiol. 49: 246-259. DOI: [[https:// | Vancheva T, Stoyanova M, Tasheva-Terzieva E, Bogatzevska N, Moncheva P (2018). Molecular methods for diversity assessment among xanthomonads of Bulgarian and Macedonian pepper. Braz. J. Microbiol. 49: 246-259. DOI: [[https:// | ||
| - | |||
| - | Vandroemme J, Baeyen S, Van Vaerenbergh J, De Vos P, Maes M (2008). Sensitive real-time PCR detection of // | ||
| Vernière C, Bui Thi Ngoc L, Jarne P, Ravigné V, Guérin F, Gagnevin L, Le Mai N, Chau NM, Pruvost O (2014). Highly polymorphic markers reveal the establishment of an invasive lineage of the citrus bacterial pathogen // | Vernière C, Bui Thi Ngoc L, Jarne P, Ravigné V, Guérin F, Gagnevin L, Le Mai N, Chau NM, Pruvost O (2014). Highly polymorphic markers reveal the establishment of an invasive lineage of the citrus bacterial pathogen // | ||
| - | |||
| - | Wang H, Turechek WW (2020). Detection of viable // | ||
| - | |||
| - | Wang S, Wang P, Liao W, Liu X, Ouyang M, Lin S, Lin R, Xu Z, Chen G, Zhu B (2025). Rapid detection of // | ||
| Wei F, Liang X, Shi JC, Luo J, Qiu LJ, Li XX, Lu LJ, Wen Y, Feng J (2023). Pan-genomic analysis identifies the Chinese strain as a new subspecies of // | Wei F, Liang X, Shi JC, Luo J, Qiu LJ, Li XX, Lu LJ, Wen Y, Feng J (2023). Pan-genomic analysis identifies the Chinese strain as a new subspecies of // | ||