He Nana, Zhou Shaojie, Zhou Chuanming, Yang Weikang, Zhang Sheng, Yan Deqiang, Ji Xiaowen, Liu Wei
School of Plant Protection, Anhui Agricultural University; Anhui Province Key Laboratory of Crop Integrated Pest Management, Hefei, China.
Insect Sci. 2024 Aug 21. doi: 10.1111/1744-7917.13439.
Drosophila suzukii is a notorious pest which causes devastating damage to thin-skinned fruits, and the larvae feed on the fruit, causing extensive agricultural economic loss. The current application of insecticides to manage this pest results in serious resistance and environmental hazards, so an alternative strategy for D. suzukii biocontrol is urgently needed. Here, we reported that entomopathogenic Bacillus cereus has the potential to biocontrol D. suzukii. We isolated and identified the bacterial strain, B. cereus H1, that was detrimental to the fitness of both D. suzukii progenies and parents. D. suzukii was robustly repelled to depositing eggs on the halves with metabolites of B. cereus H1. Both males and females of D. suzukii were susceptible to B. cereus H1. B. cereus H1 significantly arrested larval development with at least 40% lethal larvae. The median lethal time (LT50) of males and females of D. suzukii challenged with B. cereus H1 was 3 and 2 d, respectively. Moreover, B. cereus H1 disrupted the intestinal integrity and pH value of D. suzukii and resulted in an increase in bacterial load of guts and hemolymph. Mechanistically, infection of B. cereus H1 led to the activation of the dual oxidase (DUOX)-ROS-Jun N-terminal kinase (JNK) pathway. The findings showed that the entomopathogen B. cereus H1 could potentially act as a biological control agent against D. suzukii, advancing fundamental concepts of integrated pest management programs against D. suzukii.
铃木氏果蝇是一种臭名昭著的害虫,会对薄皮水果造成毁灭性损害,其幼虫以果实为食,导致广泛的农业经济损失。目前使用杀虫剂来防治这种害虫会导致严重的抗药性和环境危害,因此迫切需要一种替代的铃木氏果蝇生物防治策略。在此,我们报告了昆虫病原蜡样芽孢杆菌具有生物防治铃木氏果蝇的潜力。我们分离并鉴定了对铃木氏果蝇子代和亲代的适合度均有损害的蜡样芽孢杆菌菌株H1。铃木氏果蝇强烈排斥在含有蜡样芽孢杆菌H1代谢物的一半区域产卵。铃木氏果蝇的雄性和雌性对蜡样芽孢杆菌H1均敏感。蜡样芽孢杆菌H1显著阻止幼虫发育,致死幼虫至少达40%。用蜡样芽孢杆菌H1攻击的铃木氏果蝇雄性和雌性的半数致死时间(LT50)分别为3天和2天。此外,蜡样芽孢杆菌H1破坏了铃木氏果蝇的肠道完整性和pH值,并导致肠道和血淋巴中的细菌载量增加。从机制上讲,蜡样芽孢杆菌H1的感染导致双氧化酶(DUOX)-活性氧(ROS)-c-Jun氨基末端激酶(JNK)途径的激活。这些发现表明,昆虫病原菌蜡样芽孢杆菌H1可能作为一种生物防治剂来对抗铃木氏果蝇,推进了针对铃木氏果蝇的综合虫害管理计划的基本概念。