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| plant:wheat [2025/03/31 16:28] – [Resistance gene: //QBls.fcu-5B.1//] rkoebnik | plant:wheat [2025/09/15 07:48] (current) – [References] rkoebnik | ||
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| Author: [[https:// | Author: [[https:// | ||
| - | Internal reviewer: [[https:// | + | Internal reviewer: [[https:// |
| + | Expert reviewer: [[https:// | ||
| ===== Pathogen: // | ===== Pathogen: // | ||
| Line 115: | Line 116: | ||
| === Source === | === Source === | ||
| - | //Triticum aestivum// cultivar Mochis T88 (Duveiller | + | Wheat variety Boost (Acharya |
| === Status (identified, | === Status (identified, | ||
| - | Identified, mapped on chromosome 3B (Acharya //et al.//, 2024) | + | Identified, mapped on chromosome 3B (Acharya //et al.//, 2024). |
| === Molecular markers === | === Molecular markers === | ||
| - | KASP markers (Acharya //et al.//, 2024) | + | KASP markers (Acharya //et al.//, 2024). |
| === Brief description === | === Brief description === | ||
| Line 135: | Line 136: | ||
| === Source === | === Source === | ||
| - | //Triticum aestivum// cultivar Mochis T88 (Duveiller | + | Wheat variety Boost (Acharya |
| === Status (identified, | === Status (identified, | ||
| - | Identified, mapped on chromosome 5A (Acharya //et al.//, 2024) | + | Identified, mapped on chromosome 5A (Acharya //et al.//, 2024). |
| === Molecular markers === | === Molecular markers === | ||
| - | KASP markers (Acharya //et al.//, 2024) | + | KASP markers (Acharya //et al.//, 2024). |
| === Brief description === | === Brief description === | ||
| Line 158: | Line 159: | ||
| === Status (identified, | === Status (identified, | ||
| - | Identified, mapped on chromosome 5B (Acharya //et al.//, 2024) | + | Identified, mapped on chromosome 5B (Acharya //et al.//, 2024). |
| === Molecular markers === | === Molecular markers === | ||
| - | KASP markers (Acharya //et al.//, 2024) | + | KASP markers (Acharya //et al.//, 2024). |
| === Brief description === | === Brief description === | ||
| Line 175: | Line 176: | ||
| === Source === | === Source === | ||
| - | //Triticum aestivum// cultivar Mochis T88 (Duveiller | + | Synthetic hexaploid wheat line W-7984 |
| === Status (identified, | === Status (identified, | ||
| - | Identified, mapped on chromosome 7D (Acharya //et al.//, 2024) | + | Identified, mapped on chromosome 7D (Acharya //et al.//, 2024). |
| === Molecular markers === | === Molecular markers === | ||
| - | KASP markers (Acharya //et al.//, 2024) | + | KASP markers (Acharya //et al.//, 2024). |
| === Brief description === | === Brief description === | ||
| QTL under field and greenhouse conditions (Acharya //et al.//, 2024). | QTL under field and greenhouse conditions (Acharya //et al.//, 2024). | ||
| + | |||
| + | ---- | ||
| + | |||
| + | ==== Resistance gene: // | ||
| + | |||
| + | === Synonyms === | ||
| + | |||
| + | //NA// | ||
| + | === Source === | ||
| + | |||
| + | Cultivated emmer wheat lines (Khan //et al.//, 2025). | ||
| + | === Status (identified, | ||
| + | |||
| + | Identified, mapped on chromosome 1A (Khan //et al.//, 2025). | ||
| + | === Molecular markers === | ||
| + | |||
| + | SNP marker (Khan //et al.//, 2025). | ||
| + | === Brief description === | ||
| + | |||
| + | QTL on chromosome 1A, which explained 6.1% of the total phenotypic variation (Khan //et al.//, 2025). | ||
| ---- | ---- | ||
| Line 197: | Line 218: | ||
| === Source === | === Source === | ||
| - | Triticale (//X. triticosecale// | + | Triticale (//X. triticosecale// |
| === Status (identified, | === Status (identified, | ||
| - | Mapped on chromosome 5R (Wen //et al.//, 2018) | + | Mapped on chromosome 5R (Wen //et al.//, 2018). |
| === Molecular markers === | === Molecular markers === | ||
| Line 222: | Line 243: | ||
| Johnson JW, Cunfer BM, Morey DD (1987). Inheritance of resistance to // | Johnson JW, Cunfer BM, Morey DD (1987). Inheritance of resistance to // | ||
| - | Ritzinger MG, Sallam A, Smith KP, Case AJ, Wodarek J, Curland RD, Dill-Macky R, Steffenson BJ (2023). Genome-wide association mapping of bacterial | + | 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, |
| + | |||
| + | Ritzinger MG, Sallam A, Smith KP, Case AJ, Wodarek J, Curland RD, Dill-Macky R, Steffenson BJ (2023). Genome-wide association mapping of bacterial | ||
| + | |||
| + | 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. doi: [[https:// | ||
| 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:// | ||