Found: 17
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Evolution, diversity, and function of the disease susceptibility gene Snn1 in wheat.
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- Plant Journal, 2024, v. 119, n. 4, p. 1720, doi. 10.1111/tpj.16879
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- Article
Genetic mapping of a major gene in triticale conferring resistance to bacterial leaf streak.
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- Theoretical & Applied Genetics, 2018, v. 131, n. 3, p. 649, doi. 10.1007/s00122-017-3026-x
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- Article
Inverse gene-for-gene interactions contribute additively to tan spot susceptibility in wheat.
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- Theoretical & Applied Genetics, 2017, v. 130, n. 6, p. 1267, doi. 10.1007/s00122-017-2886-4
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- Article
Correction to: Comparative genomics of the wheat fungal pathogen Pyrenophora tritici-repentis reveals chromosomal variations and genome plasticity.
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- BMC Genomics, 2018, v. 19, n. 1, p. 1, doi. 10.1186/s12864-018-5059-1
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- Article
Characterizing Virulence of the Pyrenophora tritici-repentis Isolates Lacking Both ToxA and ToxB Genes.
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- Pathogens, 2018, v. 7, n. 3, p. 74, doi. 10.3390/pathogens7030074
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- Article
Characterization of α-tubulin gene distinctively presented in a cytoplasmic male sterile and its maintainer line of non-heading Chinese cabbage.
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- Journal of the Science of Food & Agriculture, 2009, v. 89, n. 2, p. 274, doi. 10.1002/jsfa.3438
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- Article
Genome-wide association mapping of tan spot resistance in a worldwide collection of durum wheat.
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- Theoretical & Applied Genetics, 2020, v. 133, n. 7, p. 2227, doi. 10.1007/s00122-020-03593-1
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- Article
Chromosome engineering-mediated introgression and molecular mapping of novel Aegilops speltoides-derived resistance genes for tan spot and Septoria nodorum blotch diseases in wheat.
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- Theoretical & Applied Genetics, 2019, v. 132, n. 9, p. 2605, doi. 10.1007/s00122-019-03374-5
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- Article
Marker development, saturation mapping, and high-resolution mapping of the Septoria nodorum blotch susceptibility gene Snn3- B1 in wheat.
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- Molecular Genetics & Genomics, 2016, v. 291, n. 1, p. 107, doi. 10.1007/s00438-015-1091-x
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- Article
Instability in mitochondrial membranes in Polima cytoplasmic male sterility of Brassica rapa ssp. chinensis.
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- Functional & Integrative Genomics, 2014, v. 14, n. 2, p. 441, doi. 10.1007/s10142-014-0368-1
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- Article
Comparative genomics of the wheat fungal pathogen <italic>Pyrenophora tritici-repentis</italic> reveals chromosomal variations and genome plasticity.
- Published in:
- BMC Genomics, 2018, v. 19, n. 1, p. 1, doi. 10.1186/s12864-018-5059-1
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- Publication type:
- Article
Two putatively homoeologous wheat genes mediate recognition of SnTox3 to confer effector-triggered susceptibility to Stagonospora nodorum.
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- Plant Journal, 2011, v. 65, n. 1, p. 27, doi. 10.1111/j.1365-313X.2010.04407.x
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- Article
A protein kinase–major sperm protein gene hijacked by a necrotrophic fungal pathogen triggers disease susceptibility in wheat.
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- Plant Journal, 2021, v. 106, n. 3, p. 720, doi. 10.1111/tpj.15194
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- Article
Quantitative interactions: the disease outcome of Botrytis cinerea across the plant kingdom.
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- G3: Genes | Genomes | Genetics, 2021, v. 11, n. 8, p. 1, doi. 10.1093/g3journal/jkab175
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- Article
Genome-wide association mapping of resistance to the foliar diseases septoria nodorum blotch and tan spot in a global winter wheat collection.
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- Molecular Breeding, 2023, v. 43, n. 7, p. 1, doi. 10.1007/s11032-023-01400-5
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- Article
Interactions of Tomato and Botrytis cinerea Genetic Diversity: Parsing the Contributions of Host Differentiation, Domestication, and Pathogen Variation.
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- Plant Cell, 2019, v. 31, n. 2, p. 502, doi. 10.1105/tpc.18.00857
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- Article
Components of the Arabidopsis CBF Cold-Response Pathway Are Conserved in Non-heading Chinese Cabbage.
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- Plant Molecular Biology Reporter, 2011, v. 29, n. 3, p. 525, doi. 10.1007/s11105-010-0256-3
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- Article