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蝽象卵寄生蜂滞育诱导的温度和光周期响应

Temperature and Photoperiodic Response of Diapause Induction in , an Egg Parasitoid of Stink Bugs.

作者信息

Zhao Can, Guo Yi, Liu Zixin, Xia Yue, Li Yuyan, Song Ziwei, Zhang Baoxin, Li Dunsong

机构信息

Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Plant Protection Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China.

Laboratory of Bio-Pesticide Creation and Application of Guangdong Province, Department of Entomology, College of Plant Protection, South China Agricultural University, Guangzhou 510642, China.

出版信息

Insects. 2021 Sep 26;12(10):872. doi: 10.3390/insects12100872.

Abstract

Ashmead is a widely used biological control agent against stink bugs that can be successfully reared using the large eggs of the Chinese silkworm. In this study, environmental factors responsible for the induction of diapause in were investigated on host eggs of the Chinese silkworm. exhibited a facultative, mature larval diapause within its host eggs. Second-third instar larva are the most sensitive stages to diapause stimuli. The accumulation of diapause stimuli during all the larval stages maximized the diapause response. A short photoperiod of 10L:14D and temperature of 17 °C led to the occurrence of the highest diapause response, while a long photoperiod (14L:10D) and low temperatures (11 and 14 °C) prevented the diapause. A specific exposure period was required to reach high diapause incidence. Diapausing mature larvae had a significantly higher survival rate after 180 days storage at 10 °C than that of nondiapausing mature larvae. Taken together, results suggest methods that could be exploited in the developmental regulation, field-release pretreatment technology, and long-term storage of .

摘要

阿什米德氏啮小蜂是一种广泛用于防治椿象的生物防治剂,可利用中国家蚕的大卵成功饲养。在本研究中,在中国家蚕的寄主卵上研究了诱导其滞育的环境因素。它在寄主卵内表现出兼性的成熟幼虫滞育。二龄至三龄幼虫是对滞育刺激最敏感的阶段。所有幼虫阶段滞育刺激的积累使滞育反应最大化。10小时光照:14小时黑暗的短光周期和17°C的温度导致最高的滞育反应,而长光周期(14小时光照:10小时黑暗)和低温(11°C和14°C)可防止滞育。达到高滞育发生率需要特定的暴露期。滞育的成熟幼虫在10°C下储存180天后的存活率显著高于非滞育的成熟幼虫。综上所述,研究结果表明了一些可用于阿什米德氏啮小蜂发育调控、田间释放预处理技术和长期储存的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6105/8539535/78bcbfeff9c8/insects-12-00872-g001.jpg

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