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氯氟氰菊酯和阿维菌素暴露对苹果蠹蛾发育和繁殖的亚致死和跨代效应。

Exposure to lambda-cyhalothrin and abamectin drives sublethal and transgenerational effects on the development and reproduction of Cydia pomonella.

机构信息

College of Plant Protection, Shenyang Agricultural University, Shenyang 110866, Liaoning, China; Key Laboratory of Economical and Applied Entomology of Liaoning Province, Shenyang 110866, Liaoning, China.

Phytotoxicity Research Department, Central Agricultural Pesticide Laboratory, Agricultural Research Center, Dokki, 12618 Giza, Egypt.

出版信息

Ecotoxicol Environ Saf. 2023 Mar 1;252:114581. doi: 10.1016/j.ecoenv.2023.114581. Epub 2023 Feb 1.

Abstract

The codling moth Cydia pomonella (Lepidoptera: Tortricidae) is a major invasive pest of pome fruits and walnuts worldwide. Lambda-cyhalothrin (LCT) and abamectin (AM) have been frequently used in C. pomonella control, but control of this pest is very difficult because shortly after hatching, larvae of this insect bore tunnels and hide inside host plant fruit. In this study, a simulated field spray bioassay method was developed against neonate larvae of C. pomonella and concentration-response bioassays were conducted to evaluate the susceptibility of the neonate larvae to LCT and AM. Exposure of neonate larvae to sublethal concentration (LC) of LCT or AM significantly reduced the survival rate of larvae (4th and 5th instars), lowered the mean weight of larvae and pupae, and decreased the daily maximal number of eggs laid and the total number of eggs laid (fecundity) per female. The sublethal effects, including reduced body mass, mean fecundity and net reproductive rate, extended mean generation time, and shortened oviposition period, were also found in transgenerational offspring. Furthermore, the transgenerational maternal effects were more obvious for AM than LCT, in comparison to the control. Additionally, the estimated population size was decreased by exposure to LC of LCT and AM, and the observed reduction of fecundity and population size within and across generations was likely the result of the downregulation of the reproduction-related vitellogenin gene (CpVg) after exposure to LC of LCT and AM. These results provide a better understanding of the overall effects of LCT and AM on C. pomonella and the transgenerational effects which should be taken into consideration when using insecticides in order to control C. pomonella.

摘要

苹小卷叶蛾 Cydia pomonella(鳞翅目:卷叶蛾科)是世界范围内危害核果和核桃的主要入侵性害虫。氯氟氰菊酯(LCT)和阿维菌素(AM)已被广泛用于防治 C. pomonella,但由于该昆虫的幼虫在孵化后不久就会在寄主植物果实中钻孔并藏身其中,因此对该害虫的防治非常困难。本研究建立了一种针对苹果卷叶蛾幼虫的模拟田间喷雾生物测定方法,并进行了浓度-反应生物测定,以评估幼虫对 LCT 和 AM 的敏感性。暴露于亚致死浓度(LC)的 LCT 或 AM 显著降低了幼虫(4 龄和 5 龄)的存活率,降低了幼虫和蛹的平均体重,并减少了雌虫每天产卵的最大数量和总产卵量(繁殖力)。在世代间后代中也发现了亚致死效应,包括降低体重、平均繁殖力和净生殖率、延长平均世代时间和缩短产卵期。此外,与对照相比,转代母体效应在 AM 中比 LCT 更明显。此外,暴露于 LCT 和 AM 的 LC 会降低种群大小,并且在世代内和跨世代观察到的繁殖力和种群大小的减少可能是由于暴露于 LCT 和 AM 的 LC 后与繁殖相关的卵黄蛋白原基因(CpVg)的下调所致。这些结果提供了对 LCT 和 AM 对 C. pomonella 的整体影响以及转代效应的更好理解,在使用杀虫剂来控制 C. pomonella 时应考虑这些效应。

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