Pezenti Larissa Forim, Sosa-Gómez Daniel Ricardo, de Souza Rogério Fernandes, Vilas-Boas Laurival Antônio, Gonçalves Kátia Brumatti, da Silva Carlos Roberto Maximiano, Vilas-Bôas Gislayne Trindade, Baranoski Adrivanio, Mantovani Mário Sérgio, da Rosa Renata
Laboratório de Citogenética Animal, Departamento de Biologia Geral, Universidade Estadual de Londrina, Londrina, Paraná, Brazil; Laboratório de Bioinformática, Departamento de Biologia Geral, Universidade Estadual de Londrina, Londrina, Paraná, Brazil.
Empresa Brasileira de Pesquisa Agropecuária/Centro Nacional de Pesquisa de Soja (Embrapa Soja), Londrina, Paraná, Brazil.
Genomics. 2021 Jul;113(4):2264-2275. doi: 10.1016/j.ygeno.2021.05.012. Epub 2021 May 20.
Anticarsia gemmatalis is one of the main defoliators of soybean in Brazil. Bacillus thuringiensis (Bt) transgenic crops are used for their management. In this paper we used RNA-seq to explore the response of A. gemmatalis to Bt HD73, as well as to detect transcriptional differences after Bt infection between resistant and susceptible strains. A total of 3853 and 6224 differentially expressed genes (DGEs) were identified in susceptible and resistant larvae after Bt exposure, respectively. We identified 2143 DEGs between susceptible and resistant larvae and 1991 between susceptible and resistant larvae Bt exposed. Immunity-related genes, Bt toxins receptors, proteases, genes involved in metabolic processes, transporters, cuticle proteins and mobile elements have been identified. qRT-PCR data demonstrated upregulation of five genes in susceptible strain after Bt exposure. These results provide insights to understand the molecular and cellular mechanisms of response to Bt that could be used in strategies to control agricultural pests.
豆蚀叶野螟是巴西大豆的主要食叶害虫之一。苏云金芽孢杆菌(Bt)转基因作物被用于对其进行防治。在本文中,我们利用RNA测序技术探究了豆蚀叶野螟对Bt HD73的反应,以及检测抗性和敏感品系在Bt感染后的转录差异。在Bt暴露后,敏感和抗性幼虫中分别鉴定出3853个和6224个差异表达基因(DGE)。我们在敏感和抗性幼虫之间鉴定出2143个差异表达基因,在Bt暴露的敏感和抗性幼虫之间鉴定出1991个差异表达基因。已鉴定出与免疫相关的基因、Bt毒素受体、蛋白酶、参与代谢过程的基因、转运蛋白、表皮蛋白和移动元件。qRT-PCR数据表明,Bt暴露后敏感品系中有五个基因上调。这些结果为理解对Bt反应的分子和细胞机制提供了见解,可用于农业害虫防治策略。