
AbstractPeronophythora litchii is the causal agent of litchi downy blight. Enestroburin, SYP-1620, SYP-2815 and ZJ0712 are four novel QoI fungicides developed by China. Eight mutants of P. litchii resistant to these QoI fungicides and azoxystrobin (as a known QoI fungicide) were obtained in our preliminary work. In this study, the full length of the cytochrome b gene in P. litchii, which has a full length of 382 amino acids, was cloned from both sensitive isolates and resistant mutants and single-site mutations G142A, G142S, Y131C, or F128S were found in resistant mutants. Molecular docking was used to predict how the mutations alter the binding of the five QoI fungicides to the Qo-binding pockets. The results have increased our understanding of QoI fungicide-resistance mechanisms and may help in the development of more potent inhibitors against plant diseases in the fields.
Binding Sites, Molecular Structure, Molecular Sequence Data, Molecular Conformation, Protein Array Analysis, Cytochromes b, Molecular Dynamics Simulation, Article, Fungicides, Industrial, Molecular Docking Simulation, Structure-Activity Relationship, Oomycetes, Drug Resistance, Fungal, Mutation, Animals, Cattle, Amino Acid Sequence, Sequence Alignment
Binding Sites, Molecular Structure, Molecular Sequence Data, Molecular Conformation, Protein Array Analysis, Cytochromes b, Molecular Dynamics Simulation, Article, Fungicides, Industrial, Molecular Docking Simulation, Structure-Activity Relationship, Oomycetes, Drug Resistance, Fungal, Mutation, Animals, Cattle, Amino Acid Sequence, Sequence Alignment
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