Unveiling the genetic architecture of stripe rust resistance in wheat: a region-specific GWAS in Xinjiang, China. [PDF]
Zhang F +9 more
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Components of Brachypodium distachyon resistance to nonadapted wheat stripe rust pathogens are simply inherited. [PDF]
Gilbert B +7 more
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Deep learning framework using UAV imagery for multi-disease detection in cereal crops. [PDF]
Mahmood A +5 more
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Genome-wide association studies for identification of stripe rust resistance loci in diverse wheat genotypes. [PDF]
Tanwar V +13 more
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The AP-1 Sigma Subunit Gene PsAP1 Acts as a Key Pathogenicity Factor by Regulating Metabolic Reprogramming in Puccinia striiformis f. sp. tritici. [PDF]
Liu B +8 more
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Nucleoredoxin 1 in Wheat: Genomic Analysis and Demonstration of Its Role in Redox Homeostasis and Stress Resilience. [PDF]
Ghafoor MS +7 more
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Current Status and Future Direction of the High-Temperature Resistance in Wheat to Control Stripe Rust. [PDF]
Lyu X +9 more
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A 4NsL chromosome segment from <i>Leymus mollis</i> confers stripe rust and Fusarium head blight resistance in wheat. [PDF]
Du X +14 more
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The development and validation of a genotyping-by-target sequencing chip for fungal population genetic analysis. [PDF]
Yan H +16 more
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China has the largest stripe rust epidemic region in the world in terms of wheat acreage affected by the disease. Extensive studies on the epidemiology and management of stripe rust have been carried out since the widespread occurrence of the disease in the 1950s.
A. M. Wan, X. M. Chen, Z. H. He
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