Molecular Targets of Herbicides and Fungicides─Are There Useful Overlaps for Fungicide Discovery?

Stephen O Duke, Zhiqiang Pan, Joanna Bajsa-Hirschel, Prabin Tamang, Raymond Hammerschmidt, Beth A Lorsbach, Thomas C Sparks

Journal: Journal of agricultural and food chemistry 2023;71(51):20532-20548

PMID: 38100716

Abstract

New fungicide modes of action are needed for fungicide resistance management strategies. Several commercial herbicide targets found in fungi that are not utilized by commercial fungicides are discussed as possible fungicide molecular targets. These are acetyl CoA carboxylase, acetolactate synthase, 5-enolpyruvylshikimate-3-phosphate synthase, glutamine synthase, phytoene desaturase, protoporphyrinogen oxidase, long-chain fatty acid synthase, dihydropteroate synthase, hydroxyphenyl pyruvate dioxygenase, and Ser/Thr protein phosphatase. Some of the inhibitors of these herbicide targets appear to be either good fungicides or good leads for new fungicides. For example, some acetolactate synthase and dihydropteroate inhibitors are excellent fungicides. There is evidence that some herbicides have indirect benefits to certain crops due to their effects on fungal crop pathogens. Using a pesticide with both herbicide and fungicide activities based on the same molecular target could reduce the total amount of pesticide used. The limitations of such a product are discussed.

Address: National Center for Natural Products Research, School of Pharmacy, University of Mississippi, University 38667, United States.; Natural Products Utilization Research Unit, United States Department of Agriculture, University 38667, United States.; Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, Michigan 48824, United States.; Nufarm, 4020 Aerial Center Parkway, Morrisville, North Carolina 27560, United States.; Agrilucent LLC, Morro Bay, California 93442, United States.
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