Borneol-Containing
Cinnamic Acid Derivatives from Pinus yunnanensis as CYP51 Inhibitors: Design, Synthesis,
and Mechanistic Study for Fungicidal Development
posted on 2025-11-05, 06:04authored byDanling Huang, Zhenling Yuan, Xi Han, Qin-Bin Jiang, Yong-Xian Cheng
A cinnamic acid derivative bearing
borneol <b>SX-6</b>, isolated
and identified from Pinus yunnanensis exudates, was used as a lead compound to conduct structural optimization
for the innovation of fungicidal agents. Here, thirty-five <b>SX-6</b> derivatives were designed, synthesized, and evaluated for their
fungicidal activities. Among them, <b>SX-6-6</b> provided the
EC<sub>50</sub> values of 3.29, 8.22, and 6.68 mg/L against Botrytis cinerea, Sclerotinia sclerotiorum, and Curvularia mebaldsii, respectively,
whose activities are superior or similar to those of hymexazol. Besides,
photoreaction was used to transfer <b>SX-6-6</b> to its <i>Z</i>-isomer <b>SX-6-6i</b>, which possessed EC<sub>50</sub> values of 2.97 mg/L against S. sclerotiorum. <i>In vivo</i> experiments proved that <b>SX-6-6</b> and <b>SX-6-6i</b> have excellent protective effects on B. cinerea and S. sclerotiorum at 200 mg/L, respectively. The action mechanism studies reveal that <b>SX-6-6</b> displays fungicidal activities due to 14α-demethylase
(CYP51) inhibition, which suppresses ergosterol synthesis, impairs
fungal cell membrane function, and causes cell death. In addition,
acute toxicity studies showed that <b>SX-6-6</b> was safe for
rodents at a dose of 1 g/kg. This is the first report on the application
of plant protection using active derivatives from P.
yunnanensis, offering a novel structural precursor
for the design of fungicidal agents.