Design, Synthesis,
and Structure–Activity Relationship
of Novel Aryl-Substituted Formyl Oxazolidine Derivatives as Herbicide
Safeners
Posted on 2023-05-16 - 11:33
Nicosulfuron is the leading herbicide in the global sulfonylurea
(SU) herbicide market; it was jointly developed by DuPont and Ishihara.
Recently, the widespread use of nicosulfuron has led to increasingly
prominent agricultural production hazards, such as environmental harm
and influence on subsequent crops. The use of herbicide safeners can
significantly alleviate herbicide injury to protect crop plants and
expand the application scope of existing herbicides. A series of novel
aryl-substituted formyl oxazolidine derivatives were designed using
the active group combination method. Title compounds were synthesized
using an efficient one-pot method and characterized by infrared (IR)
spectrometry, 1H and 13C nuclear magnetic resonance
(NMR), and high-resolution mass spectrometry (HRMS). The chemical
structure of compound V-25 was further identified by
X-ray single crystallography. The bioactivity assay and structure–activity
relationship proved that nicosulfuron phytotoxicity to maize could
be reduced by most title compounds. The glutathione S-transferase (GST) activity and acetolactate synthase (ALS) in vivo were determined, and compound V-12 showed
inspiring activity comparable to that of the commercial safener isoxadifen-ethyl.
The molecular docking model indicated that compound V-12 competed with nicosulfuron for the acetolactate synthase active
site and that this is the protective mechanism of safeners. Absorption,
distribution, metabolism, excretion, and toxicity (ADMET) predictions
demonstrated that compound V-12 exhibited superior pharmacokinetic
properties to the commercialized safener isoxadifen-ethyl. The target
compound V-12 shows strong herbicide safener activity
in maize; thus, it may be a potential candidate compound that can
help further protect maize from herbicide damage.
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Ding, Yu; Zhao, Dong-Mei; Kang, Tao; Shi, Juan; Ye, Fei; Fu, Ying (2023). Design, Synthesis,
and Structure–Activity Relationship
of Novel Aryl-Substituted Formyl Oxazolidine Derivatives as Herbicide
Safeners. ACS Publications. Collection. https://doi.org/10.1021/acs.jafc.3c00467