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Maf调节CYP307A1的过表达,CYP307A1与抗双三氟虫脲的斜纹夜蛾(夜蛾科:鳞翅目)的适应性优势有关。

Maf regulates the overexpression of CYP307A1, which is involved in the fitness advantage of bistrifluron-resistant Spodoptera litura (Fab.) (Noctuidae: Lepidoptera).

作者信息

Gong Changwei, Wang Yumeng, Huang Qian, Xu Zhengze, Zhang Yuming, Hasnain Ali, Zhan Xiaoxu, He Yunfeng, Zhang Tianyi, Shen Litao, Pu Jian, Awais Muhammad, Wang Xuegui

机构信息

College of Agriculture, Sichuan Agricultural University, Chengdu 611130, China.

College of Agriculture, Sichuan Agricultural University, Chengdu 611130, China.

出版信息

Ecotoxicol Environ Saf. 2022 Apr 1;234:113425. doi: 10.1016/j.ecoenv.2022.113425. Epub 2022 Mar 21.

Abstract

Spodoptera litura is a widely distributed multifeeding pest, that has developed high resistance to many chemical insecticides. In the present study, a bistrifluron-resistant (Bis-SEL) strain showing 113.8-fold resistance ratio relative to a bistrifluron-susceptible (Bis-UNSEL) strain was obtained and showed a fitness advantage (resurgence). First, we found that the observed resurgence might have resulted from Maf transcription factor overexpression in the Bis-SEL strain, which would influence the synthesis of ecdysone and chitin. Additionally, a co-expression relationship between Maf and CYP307A1 was verified by weighted correlation network analysis (WGCNA) and qRT-PCR, and the expression of CYP307A1, a key gene in ecdysone synthesis, was significantly downregulated by Maf interference. The assay for transposase-accessible chromatin with high-throughput sequencing (ATAC-seq) and a yeast one-hybrid showed that Maf could bind to the cncc:maf-s element in the CYP307A1 promoter region. The synthesis of ecdysone, which stimulated chitin synthesis, was also decreased significantly following Maf and CYP307A1 interference. Therefore, the upregulation of Maf expression leaded to the upregulation CYP307A1 expression, which led to an increase in the synthesis of ecdysone, resulting in resurgence accompanied by resistance to bistrifluron.

摘要

斜纹夜蛾是一种分布广泛的多食性害虫,已对多种化学杀虫剂产生了高抗性。在本研究中,获得了一个对双三氟虫脲具有抗性的(Bis-SEL)品系,其相对于双三氟虫脲敏感(Bis-UNSEL)品系的抗性比为113.8倍,并且表现出适合度优势(种群回升)。首先,我们发现观察到的种群回升可能是由于Bis-SEL品系中Maf转录因子的过表达,这会影响蜕皮激素和几丁质的合成。此外,通过加权基因共表达网络分析(WGCNA)和qRT-PCR验证了Maf与CYP307A1之间的共表达关系,并且通过Maf干扰显著下调了蜕皮激素合成中的关键基因CYP307A1的表达。通过高通量测序转座酶可及染色质分析(ATAC-seq)和酵母单杂交表明,Maf可以与CYP307A1启动子区域中的cncc:maf-s元件结合。在Maf和CYP307A1干扰后,刺激几丁质合成的蜕皮激素的合成也显著降低。因此,Maf表达的上调导致CYP307A1表达的上调,从而导致蜕皮激素合成增加,导致种群回升并伴有对双三氟虫脲的抗性。

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