吡虫啉亚致死处理对白僵虫拟寄生虫瓜硬皮虫的影响。

Shuang Li, Yu-Jun Kong, Zuo-Xiang Sun, Xin-Yi Peng, Jia Li, Dan-Dan Cao, Jian-Rong Wei
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摘要

本研究旨在探讨亚致死剂量吡虫啉是否会影响布氏香蝇幼虫的生理生化反应,从而影响其寄生类瓜硬皮蝇的寄生和后代发育。首先采用生物测定法确定了吡虫啉对bungii的适宜亚致死剂量,然后定量测定了经亚致死剂量吡虫啉处理的人工饲料对bungii幼虫的取食量和生物量,以及处理后幼虫的解毒和防御酶活性。随后,我们确定了喂食亚致死剂量吡虫啉的幼虫如何影响观水绦虫的生产性能。结果表明,亚致死剂量吡虫啉显著降低了布氏拟虫幼虫的取食量和生物量,诱导了解毒酶GST的活性,抑制了另一种解毒酶CarE的活性;诱导抗氧化酶CAT、SOD、POD活性,且呈剂量依赖性;0.5 mg/kg、1 mg/kg和5 mg/kg处理对布氏单胞杆菌幼虫总死亡率和观水单胞杆菌子代发育期无显著影响,但与对照相比,布氏单胞杆菌生殖死亡率分别降低了64.84%、83.52%和100%;雌禽产蛋量分别下降46.21%、53.87%和69.08%,羽化率分别下降46.10%、43.89%和100%;其后代雌雄比也有所下降。亚致死剂量吡虫啉通过诱导布氏弓形虫幼虫体内强烈的生理生化反应对瓜氏弓形虫产生显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of sublethal treatments of imidacloprid against Aromia bungii on its parasitoid, Sclerodermus guani.

This study aimed to determine whether sublethal doses of imidacloprid affect physiological and biochemical responses in Aromia bungii larvae that influence parasitism and offspring development of its parasitoids Sclerodermus guani. We first determined appropriate sublethal doses of imidacloprid against A. bungii by bioassay, then quantified feeding and biomass of A. bungii larvae with an artificial diet treated with sublethal doses of imidacloprid, and the activity of detoxification and defense enzymes in treated larvae. Subsequently, we determined how larvae fed with sublethal doses of imidacloprid affected the performance of S. guani. Results showed that sublethal doses of imidacloprid significantly decreased the feeding and biomass of A. bungii larvae, induced activity of the detoxifying enzyme GST, and inhibited the activity of another detoxifying enzyme CarE; the activity of antioxidant enzymes CAT, SOD, and POD were also induced and the effect was dose-dependent; total mortality of A. bungii larvae and developmental duration of S. guani offspring were not significantly affected, but compared with the control, the reproductive mortality rate of A. bungii decreased by 64.84%, 83.52%, and 100%, respectively at 0.5 mg/kg, 1 mg/kg, and 5 mg/kg; the egg production of S. guani female decreased by 46.21%, 53.87%, and 69.08%, respectively, and the emergence rate decreased by 46.10%, 43.89%, and 100%, respectively; the sex ratio (female:male) of S. guani offspring was also decreased. Sublethal doses of imidacloprid had a significant impact on S. guani via induction of strong physiological and biochemical responses in the larval body of A. bungii.

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