Discovery of a trans -Configured Monofluoroalkene as a Potent Succinate Dehydrogenase Inhibitor against Phakopsora pachyrhizi

Abstract A series of monofluoroalkene derivatives were designed and synthesized as succinate dehydrogenase inhibitors (SDHIs). Most compounds showed high in vitro activity against Rhizoctonia solani, with EC50 values below 0.01 mg/L. Compound V-17b (4-OPh) was the most potent (EC50 = 0.0029 mg/L), surpassing boscalid and fluxapyroxad by over 10-fold. Several compounds retained >50% inhibition in vivo at 200 mg/L against Rhizoctonia solani. Compound V-6b exhibited 100% efficacy against Phakopsora pachyrhizi at 1 mg/L, and V-9b showed 77.8% and 96.3% efficacy against Puccinia glumarum and Puccinia sorghi at 10 mg/L, respectively. Enzyme assays revealed that V-9b inhibited porcine SDH (IC50 = 1.87 μM) more effectively than fluxapyroxad (IC50 = 8.13 μM), with the trans isomer superior to the cis. Molecular docking indicated that the trans configuration enables additional π–π stacking with Trp_B173. These results demonstrate that the monofluoroalkene scaffold, combined with appropriate substitution patterns and configuration, can generate potent SDHIs with promising fungicidal profiles.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.jafc.6c02371
Primary Topic
Plant Disease Resistance and Genetics
Type
article
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article

Discovery of a trans -Configured Monofluoroalkene as a Potent Succinate Dehydrogenase Inhibitor against Phakopsora pachyrhizi

Xiaoyong Xu, Zhong Li, Letian Zhang, Wende Wu et al.
Journal of Agricultural and Food Chemistry
Plant Disease Resistance and Genetics
article

Discovery of a trans -Configured Monofluoroalkene as a Potent Succinate Dehydrogenase Inhibitor against Phakopsora pachyrhizi

Xiaoyong Xu, Zhong Li, Letian Zhang, Wende Wu, Yuchen Li
article en

Abstract

Abstract A series of monofluoroalkene derivatives were designed and synthesized as succinate dehydrogenase inhibitors (SDHIs). Most compounds showed high in vitro activity against Rhizoctonia solani, with EC50 values below 0.01 mg/L. Compound V-17b (4-OPh) was the most potent (EC50 = 0.0029 mg/L), surpassing boscalid and fluxapyroxad by over 10-fold. Several compounds retained >50% inhibition in vivo at 200 mg/L against Rhizoctonia solani. Compound V-6b exhibited 100% efficacy against Phakopsora pachyrhizi at 1 mg/L, and V-9b showed 77.8% and 96.3% efficacy against Puccinia glumarum and Puccinia sorghi at 10 mg/L, respectively. Enzyme assays revealed that V-9b inhibited porcine SDH (IC50 = 1.87 μM) more effectively than fluxapyroxad (IC50 = 8.13 μM), with the trans isomer superior to the cis. Molecular docking indicated that the trans configuration enables additional π–π stacking with Trp_B173. These results demonstrate that the monofluoroalkene scaffold, combined with appropriate substitution patterns and configuration, can generate potent SDHIs with promising fungicidal profiles.

Journal of Agricultural and Food Chemistry
East China University of Science and Technology (CN)
Openalex Percentile: Top 14%
Plant Disease Resistance and Genetics
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Discovery of a trans -Configured Monofluoroalkene as a Potent Succinate Dehydrogenase Inhibitor against Phakopsora pachyrhizi — Xiaoyong Xu, Zhong Li, et al. · Journal of Agricultural and Food Chemistry (2026) | TGRS Research Map | TGRS