INSA-Lyon, INRA, BF2I, UMR0203, Université de Lyon, 69621 Villeurbanne, France.
Plant Protection Department, Faculty of Agronomy, Lebanese University, Dekwaneh P.O. Box 146404, Lebanon.
Biomolecules. 2023 Feb 27;13(3):446. doi: 10.3390/biom13030446.
Currently, crop protection relies heavily on chemical treatments, which ultimately leads to environmental contamination and pest resistance. Societal and public policy considerations urge the need for new eco-friendly solutions. In this perspective, biopesticides are effective alternatives to chemical insecticides for the control of various insect pests. Legumes contain numerous insecticidal proteins aimed at protecting their high nitrogen content from animal/insect predation. Investigating one such protein family at genome scale, we discovered a unique diversity of the albumin 1 family in the (model) barrel medic genome. Only some members retained very high insecticidal activity. We uncovered that AG41 peptide from the alfalfa roots displays an outstanding insecticidal activity against several pests such as aphids and weevils. Here we report the 3D structure and activity of AG41 peptide. Significant insights into the structural/functional relationships explained AG41 high insecticidal activity. Such observations pave the way for the development of bio-insecticides, with AG41 peptide as the lead compound.
目前,作物保护严重依赖于化学处理,这最终导致了环境污染和害虫抗药性的产生。社会和公共政策的考虑因素迫切需要新的环保解决方案。从这个角度来看,生物农药是化学杀虫剂的有效替代品,可用于控制各种虫害。豆类植物含有多种杀虫蛋白,旨在保护其高氮含量免受动物/昆虫的捕食。在对基因组规模的一个这样的蛋白质家族进行研究时,我们在(模式)药桶 Medic 基因组中发现了白蛋白 1 家族的独特多样性。只有一些成员保留了非常高的杀虫活性。我们发现来自紫花苜蓿根部的 AG41 肽对蚜虫和象鼻虫等几种害虫具有出色的杀虫活性。在这里,我们报告了 AG41 肽的 3D 结构和活性。对结构/功能关系的深入了解解释了 AG41 具有高杀虫活性的原因。这些观察结果为生物杀虫剂的开发铺平了道路,AG41 肽作为先导化合物。