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首页> 外文期刊>Bulletin of the American Meteorological Society >A chitinase from Euphorbia characias latex is a novel and powerful plant-based pesticide against Drosophila suzukii
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A chitinase from Euphorbia characias latex is a novel and powerful plant-based pesticide against Drosophila suzukii

机译:来自大戟属characias乳胶的一丁酶是一种新颖而强大的植物农药,对抗果子杆菌铃木

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摘要

Drosophila suzukii attacks on developing soft fruits have recently caused important economic losses in Europe. This study explores the effectiveness of a new control strategy against this insect pest that is based on a plant chitinase extracted from the latex of the Mediterranean spurge, Euphorbia characias. The ability of the purified Euphorbia latex chitinase (ELC) to degrade the chitin exoskeleton of D. suzukii was assessed using confocal laser scanning microscopy. ELC treatment caused reduced larval growth, higher mortality and notable degradation of external insect structures. Therefore, the chitinase may induce a double effect on the D. suzukii larvae, a direct injury on the larval bodies and an action as antifeedant. The effects of the ELC treatment were also tested on leaves of the insect's host plants, Fragariaxananassa and Rubus idaeus, using physiological parameters (chlorophyll concentration, chlorophyll fluorescence, leaf gas exchange and water potential) and defence gene expression (FaPGIP, FaChi2_1 and FaChi2_2) as stress indicators. ELC at concentrations effective against D. suzukii did not damage the host plants. Only plant defence gene expression was somewhat enhanced during the early hours after ELC application. In conclusion, ELC, a natural product, proved to be an effective tool for use in the development of an environmentally friendly integrated management strategy against D. suzukii, a pest whose control by conventional chemical insecticides is problematic.
机译:最近,铃木果蝇攻击正在开发的软性水果在欧洲造成了重大的经济损失。本研究探讨了一种新的防治策略对这种害虫的有效性,该策略基于一种从地中海水刺一品红胶乳中提取的植物几丁质酶。利用共焦激光扫描显微镜研究了纯化的大戟胶乳几丁质酶(ELC)降解铃木假丝酵母菌几丁质外骨架的能力。ELC处理导致幼虫生长减少,死亡率升高,外部昆虫结构显著退化。因此,几丁质酶可能对铃木D.suzukii幼虫产生双重作用,对幼虫体造成直接伤害,并起到拒食作用。利用生理参数(叶绿素浓度、叶绿素荧光、叶片气体交换和水势)和防御基因表达(FaPGIP、FaChi2_1和FaChi2_2)作为胁迫指标,还测试了ELC处理对该昆虫寄主植物Fragariaxananassa和Rubus idaeus叶片的影响。ELC浓度对D.suzukii有效,不会损害寄主植物。在施用ELC后的早期,只有植物防御基因的表达有所增强。总之,ELC是一种天然产品,被证明是一种有效的工具,可用于制定针对铃木蠹蛾的环境友好综合管理战略,铃木蠹蛾是一种害虫,用常规化学杀虫剂进行控制是有问题的。

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