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CP9和CP83的过表达会增加粉虱细胞角质层厚度,从而导致对吡虫啉产生抗性。

Over-expression of CP9 and CP83 increases whitefly cell cuticle thickness leading to imidacloprid resistance.

作者信息

He Chao, Liang Jinjin, Yang Jing, Xue Hu, Huang Mingjiao, Fu Buli, Wei Xuegao, Liu Shaonan, Du Tianhua, Ji Yao, Yin Cheng, Gong Peipan, Hu JinYu, Du He, Zhang Rong, Xie Wen, Wang Shaoli, Wu Qingjun, Zhou Xuguo, Yang Xin, Zhang Youjun

机构信息

State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

Department of Entomology, University of Kentucky, S-225 Agricultural Science Center North, Lexington, KY 40546-0091, USA.

出版信息

Int J Biol Macromol. 2023 Apr 1;233:123647. doi: 10.1016/j.ijbiomac.2023.123647. Epub 2023 Feb 11.

Abstract

Cuticular proteins (CPs) play an important role in protecting insects from adverse environmental conditions, like neonicotinoid insecticides, which are heavily used for numerous pests and caused environmental problems and public health concerns worldwide. However, the relationship between CPs and insecticides resistance in Bemisia tabaci, a serious and developed high insecticide resistance, is lacking. In this study, 125 CPs genes were identified in B. tabaci. Further phylogenetic tree showed the RR-2-type genes formed large gene groups in B. tabaci. Transcriptional expression levels of CPs genes at different developmental stages revealed that some CPs genes may play a specific role in insect development. The TEM results indicated that the cuticle thickness of susceptible strain was thinner than imidacloprid-resistance strain. Furthermore, 16 CPs genes (5 in RR-1 subfamily, 7 in RR-2 subfamily, 3 in CPAP3 subfamily and 1 in CPCFC subfamily) were activated in response to imidacloprid. And RNAi results indicated that CP9 and CP83 involved in imidacloprid resistance. In conclusion, this study was the first time to establish a basic information framework and evolutionary relationship between CPs and imidacloprid resistance in B. tabaci, which provides a basis for proposing integrated pest management strategies.

摘要

表皮蛋白(CPs)在保护昆虫免受不利环境条件影响方面发挥着重要作用,比如新烟碱类杀虫剂,这类杀虫剂被大量用于防治多种害虫,在全球范围内引发了环境问题和公共卫生担忧。然而,对于烟粉虱这种严重且已产生高抗药性的害虫,其表皮蛋白与抗药性之间的关系尚不明确。在本研究中,在烟粉虱中鉴定出了125个表皮蛋白基因。进一步的系统发育树显示RR - 2型基因在烟粉虱中形成了大的基因簇。不同发育阶段表皮蛋白基因的转录表达水平表明,一些表皮蛋白基因可能在昆虫发育中发挥特定作用。透射电镜结果表明,敏感品系的表皮厚度比吡虫啉抗性品系薄。此外,有16个表皮蛋白基因(RR - 1亚家族中有5个,RR - 2亚家族中有7个,CPAP3亚家族中有3个,CPCFC亚家族中有1个)在吡虫啉处理后被激活。RNA干扰结果表明,CP9和CP83与吡虫啉抗性有关。总之,本研究首次建立了烟粉虱表皮蛋白与吡虫啉抗性之间的基础信息框架和进化关系,为提出综合虫害管理策略提供了依据。

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