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| plant:wheat [2025/09/15 07:48] – [References] rkoebnik | plant:wheat [2026/04/13 09:43] (current) – [Further reading] rkoebnik | ||
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| Author: [[https:// | Author: [[https:// | ||
| Internal reviewer: [[https:// | Internal reviewer: [[https:// | ||
| - | Expert reviewer: [[https:// | + | Expert reviewer: [[https:// |
| ===== Pathogen: // | ===== Pathogen: // | ||
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| === Brief description === | === Brief description === | ||
| - | Three triticale lines, Sir& | + | Three triticale lines, Sir& |
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| Johnson JW, Cunfer BM, Morey DD (1987). Inheritance of resistance to // | Johnson JW, Cunfer BM, Morey DD (1987). Inheritance of resistance to // | ||
| - | Khan H, Manan F, Acharya N, Pothula H, Basyal S, Salsman E, Hegstad J, Liang Z, Liu Z, Li X (2025). Phenotypic evaluation and genome-wide association mapping for bacterial leaf streak resistance in a worldwide cultivated emmer wheat collection. Phytopathology, in press. DOI: [[https:// | + | Khan H, Manan F, Acharya N, Pothula H, Basyal S, Salsman E, Hegstad J, Liang Z, Liu Z, Li X (2026). Phenotypic evaluation and genome-wide association mapping for bacterial leaf streak resistance in a worldwide cultivated emmer wheat collection. Phytopathology |
| + | 116: 129-136 | ||
| - | Ritzinger MG, Sallam A, Smith KP, Case AJ, Wodarek J, Curland RD, Dill-Macky R, Steffenson BJ (2023). Genome-wide association mapping of bacterial leaf streak resistance in two elite barley breeding panels. Phytopathology 113: 2119-2126 . doi: [[https:// | + | Ritzinger MG, Sallam A, Smith KP, Case AJ, Wodarek J, Curland RD, Dill-Macky R, Steffenson BJ (2023). Genome-wide association mapping of bacterial leaf streak resistance in two elite barley breeding panels. Phytopathology 113: 2119-2126 . DOI: [[https:// |
| - | Thapa S, Singh M, Gill H, Ali S, Halder J, Koupal D, Sidhu JS, Sehgal S (2025). Identification of novel sources and genetic mapping for bacterial leaf streak resistance in a geographically diverse panel of wheat. Plant Dis., in press. | + | Thapa S, Singh M, Gill H, Ali S, Halder J, Koupal D, Sidhu JS, Sehgal S (2025). Identification of novel sources and genetic mapping for bacterial leaf streak resistance in a geographically diverse panel of wheat. Plant Dis., in press. |
| Tyrka M, Chelkowski J (2004). Enhancing the resistance of triticale by using genes from wheat and rye. J. Appl. Genet. 45: 283-296. PDF: [[http:// | Tyrka M, Chelkowski J (2004). Enhancing the resistance of triticale by using genes from wheat and rye. J. Appl. Genet. 45: 283-296. PDF: [[http:// | ||
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| + | Velasco DD, Shi G, Bruggeman R, Horsley R, Baldwin T, Liu Z (2026). Identification and genomic location of resistance to bacterial leaf streak of barley. Plant Genome 19: e70231. DOI: [[https:// | ||
| Wen A, Jayawardana M, Fiedler J, Sapkota S, Shi G, Peng Z, Liu S, White FF, Bogdanove AJ, Li X, Liu Z (2018). Genetic mapping of a major gene in triticale conferring resitance to bacterial leaf streak. Theor. Appl. Genet. 131: 649-658. DOI: [[https:// | Wen A, Jayawardana M, Fiedler J, Sapkota S, Shi G, Peng Z, Liu S, White FF, Bogdanove AJ, Li X, Liu Z (2018). Genetic mapping of a major gene in triticale conferring resitance to bacterial leaf streak. Theor. Appl. Genet. 131: 649-658. DOI: [[https:// | ||
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| Sapkota S, Mergoum M, Liu Z (2020). The translucens group of // | Sapkota S, Mergoum M, Liu Z (2020). The translucens group of // | ||
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| + | Zhao S, Li M, Ren X, Wang C, Sun X, Sun M, Yu X, Wang X (2024). Enhancement of broad-spectrum disease resistance in wheat through key genes involved in systemic acquired resistance. Front. Plant Sci. 15: 1355178. DOI: [[https:// | ||
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