Department of Applied Chemistry, College of Science, China Agricultural University, Beijing, P. R. China.
Department of Entomology, College of Plant Protection, China Agricultural University, Beijing, P. R. China.
Pest Manag Sci. 2020 Oct;76(10):3432-3439. doi: 10.1002/ps.5721. Epub 2020 Jan 6.
The discovery of ecofriendly insecticides through a new strategy for aphid control is important because of the substantial resistance and unexpected eco-toxicity to honeybees caused by traditional insecticides. The insect kinins, a class of multifunctional insect neuropeptides, are considered for potential application in pest control. In our previous work we developed several series of insect kinin analogues and found a promising lead II-1 with good aphicidal activity. To seek further eco-friendly aphicides, the optimization of II-1 is carried out in this study.
Fifteen novel Yaa modified analogues based on the lead II-1 were synthesized. The aphicidal tests indicated that IV-3, IV-5 and IV-10 exhibited significant activity against the soybean aphid Aphis glycines with LC values of 0.0029, 0.0072 and 0.0086 mmol L , respectively, higher than that of lead II-1 and the commercial Pymetrozine. The molecular modeling results showed that analogues II-1, IV-3, IV-5, IV-7 and IV-10 formed a β-turn-like conformation, while the conformation of analogues IV-1, IV-2 and IV-9 seemed to be linear. Some structural elements favorable for the activity were proposed based on the conformation-activity relationship of the analogues.
Insect kinin analogues derived from lead II-1 by modifying the hydrolysis site Yaa with natural, sterically hindered α- and β-amino acids showed great potential as eco-friendly insecticides. Inspiringly, the most active analogue IV-3 can be a candidate for further development. The β-turn-like conformation and the orientation of the aromatic rings of the side chain of Phe and Trp may be critical factors beneficial to activity. © 2019 Society of Chemical Industry.
由于传统杀虫剂对蚜虫产生了大量抗性和意外的生态毒性,因此通过新的策略发现环保型杀虫剂非常重要。昆虫激肽,一类多功能昆虫神经肽,被认为具有潜在的应用于害虫防治的可能性。在我们之前的工作中,我们开发了几类昆虫激肽类似物,并发现了一种具有良好杀虫活性的很有前途的先导化合物 II-1。为了寻找进一步的环保型杀虫剂,本研究对 II-1 进行了优化。
合成了基于先导化合物 II-1 的 15 种新型 Yaa 修饰类似物。杀虫试验表明,化合物 IV-3、IV-5 和 IV-10 对大豆蚜虫 Aphis glycines 表现出显著的活性,LC 值分别为 0.0029、0.0072 和 0.0086mmol/L,高于先导化合物 II-1 和商业药剂吡虫啉。分子模拟结果表明,类似物 II-1、IV-3、IV-5、IV-7 和 IV-10 形成β-转角样构象,而类似物 IV-1、IV-2 和 IV-9 的构象似乎呈线性。根据类似物的构效关系,提出了一些有利于活性的结构要素。
通过用天然位阻的α-和β-氨基酸修饰水解位点 Yaa 从先导化合物 II-1 衍生的昆虫激肽类似物具有作为环保型杀虫剂的巨大潜力。令人鼓舞的是,最活跃的类似物 IV-3 可以作为进一步开发的候选物。苯丙氨酸和色氨酸侧链芳香环的β-转角样构象和取向可能是有利于活性的关键因素。© 2019 化学工业协会。