褐飞虱
RNA干扰
生物
基因敲除
有害生物分析
表皮(毛发)
基因
RNA沉默
秀丽隐杆线虫
孵化
细胞生物学
核糖核酸
植物
遗传学
生态学
作者
Chao Zhang,Jin‐Yi Zhang,Ni Wang,Amr S. Abou El‐Ela,Zheyi Shi,Yuan‐Zheng You,Soomro Abid Ali,Wenwu Zhou,Zeng‐Rong Zhu
摘要
Abstract BACKGROUND The brown planthopper (BPH), Nilaparvata lugens , is one of the most destructive pests of rice. Owing to the rapid adaptation of BPH to many pesticides and resistant varieties, identifying putative gene targets for developing RNA interference (RNAi)‐based pest management strategies has received much attention for this pest. The glucoprotein papilin is the most abundant component in the basement membranes of many organisms, and its function is closely linked to development. RESULTS In this study, we identified a papilin homologous gene in BPH ( NlPpn ). Quantitative Real‐time PCR analysis showed that the transcript of NlPpn was highly accumulated in the egg stage. RNAi of NlPpn in newly emerged BPH females caused nonhatching phenotypes of their eggs, which may be a consequence of the maldevelopment of their embryos. Moreover, the transcriptomic analysis identified 583 differentially expressed genes between eggs from the ds GFP ‐ and ds NlPpn ‐treated insects. Among them, the ‘structural constituent of cuticle’ cluster ranked first among the top 15 enriched GO terms. Consistently, ultrastructural analysis unveiled that ds NlPpn ‐treated eggs displayed a discrete and distorted serosal endocuticle lamellar structure. Furthermore, the hatchability of BPH eggs was also successfully reduced by the topical application of NlPpn ‐dsRNA‐layered double hydroxide nanosheets onto the adults. CONCLUSION Our findings demonstrate that NlPpn is essential to maintaining the regular structure of the serosal cuticle and the embryonic development in BPH, indicating NlPpn could be a potential target for pest control during the egg stage. © 2024 Society of Chemical Industry.
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