Biocontrol of rice blast by Pseudomonas mosselii PR5 through seed priming and foliar application reduces reliance on chemical pesticides. [PDF]
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Exploitation of Host-Derived N-Feruloylputrescine by Fusarium graminearum Promotes DON Biosynthesis and Wheat Rachis Colonisation. [PDF]
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Genome-Wide Association and Transcriptome Analyses Identify OsCBP606 as a Calmodulin-Mediated Susceptibility Gene to Magnaporthe oryzae in Rice. [PDF]
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Selection of a <i>Rhizobium</i> sp. Strain and Culture Medium for the Development of a Liquid Bioinoculant for Rice (<i>Oryza sativa</i> L.) Cultivar Selección 1. [PDF]
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Heterologous Overexpression of <i>Magnaporthe oryzae</i> Effector <i>PWL2</i> Enhances Rice Blast Resistance via SA-Mediated and <i>PWL2</i>-Derived siRNA Defense. [PDF]
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HATs off to OsHAG704 and OsBPM2: novel regulators of OsRpp30 in rice blast resistance. [PDF]
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Genetics of polymorphism in nitrogen-induced-susceptibility of rice to <i>Magnaporthe oryzae</i>. [PDF]
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Regulation of Autophagy Machinery in Magnaporthe oryzae
Plant diseases cause substantial loss to crops all over the world, reducing the quality and quantity of agricultural goods significantly. One of the world’s most damaging plant diseases, rice blast poses a substantial threat to global food security.
Fu-Cheng Lin, Xueming Zhu, Nida Asif
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