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28 August 2020 Herbicidal Activity and Molecular Docking Study of Novel Ppo Inhibitors
Li-Xia Zhao, Mao-Jun Jiang, Jia-Jun Hu, Yue-Li Zou, Shuang Gao, Ying Fu, Fei Ye
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Abstract

Protoporphyrinogen oxidase (PPO) is an important target for discovering new herbicides that interfere with the synthesis of porphyrin. To discover new PPO inhibitors with improved biological activity, a series of new diphenyl ethers containing tetrahydrophthalimide were designed and synthesized. Among them, J6.1 (IC50 = 4.7 nM) and J6.3 (IC50 = 30.0 nM) show higher maize (Zea mays L.) PPO inhibitory activity than the commercial herbicides oxyfluorfen (IC50 = 117.9 nM) and flumioxazin (IC50 = 157.1 nM). The greenhouse herbicidal activity of J6.3 is comparable to that of oxyfluorfen, and it is greater than that of flumioxazin. Even at a dose of 300 g ai ha–1, cotton (Gossypium hirsutum L.) and peanut (Arachis hypogaea L.) show greater tolerance to J6.3, suggesting that J6.3 could be used for further development of new herbicide candidates in those fields. In addition, molecular docking has been used to further study the mechanism of action of J6.3. The results show that the introduction of a nitro group and tetrahydrophthalimide into the diphenyl ether structure is beneficial to biological activity.

© The Author(s), 2020. Published by Cambridge University Press on behalf of the Weed Science Society of America.
Li-Xia Zhao, Mao-Jun Jiang, Jia-Jun Hu, Yue-Li Zou, Shuang Gao, Ying Fu, and Fei Ye "Herbicidal Activity and Molecular Docking Study of Novel Ppo Inhibitors," Weed Science 68(6), 565-574, (28 August 2020). https://doi.org/10.1017/wsc.2020.66
Received: 1 March 2020; Accepted: 20 August 2020; Published: 28 August 2020
KEYWORDS
biological activity
diphenyl ether
tetrahydrophthalimide
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