Cry1Ac公司
苏云金杆菌
菜蛾
预言酚氧化酶
生物
微生物学
毒素
血淋巴
免疫系统
生殖器鳞翅目
基因
先天免疫系统
植物
转基因作物
细菌
遗传学
转基因
作者
Zeyun Li,Lei Xiong,Jingge Li,Shuyuan Yao,Yi Dong,Yongbin Li,Xuanhao Chen,Min Ye,Yangrui Zhang,Xuefeng Xie,Minsheng You,Zhiguang Yuchi,Yuanyuan Liu,Shijun You
标识
DOI:10.1016/j.ijbiomac.2023.124678
摘要
Plutella xylostella has evolved resistance to Bacillus thuringiensis Cry1Ac toxin over a long evolutionary period. Enhanced immune response is an important factor in insect resistance to a variety of insecticides, and whether phenoloxidase (PO), an immune protein, is involved in resistance to Cry1Ac toxin in P. xylostella remains unclear. Here, spatial and temporal expression patterns showed that prophenoloxidase (PxPPO1 and PxPPO2) in the Cry1S1000-resistant strain was more highly expressed in eggs, 4th instar, head, and hemolymph than those in G88-susceptible strain. The results of PO activity analysis showed that after treatment with Cry1Ac toxin PO activity was about 3 times higher than that before treatment. Furthermore, knockout of PxPPO1 and PxPPO2 significantly increased the susceptibility to Cry1Ac toxin. These findings were further supported by the knockdown of Clip-SPH2, a negative regulator of PO, which resulted in increased PxPPO1 and PxPPO2 expression and Cry1Ac susceptibility in the Cry1S1000-resistant strain. Finally, the synergistic effect of quercetin showed that larval survival decreased from 100 % to <20 % compared to the control group. This study will provide a theoretical basis for the analysis of immune-related genes (PO) genes involved in the resistance mechanism and pest control of P. xylostella.
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