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肠特异性芳香磷蛋白介导舞毒蛾对 Cry 诱导损伤的中肠再生反应。

Gut-specific arylphorin mediates midgut regenerative response against Cry-induced damage in Achaea janata.

机构信息

Department of Human Genetics and Molecular Medicine, School of Health Sciences, Central University of Punjab, Ghudda, Bathinda 151401, India; Department of Animal Biology, School of Life Sciences, University of Hyderabad, Hyderabad 500046, India.

Department of Animal Biology, School of Life Sciences, University of Hyderabad, Hyderabad 500046, India; Department of Zoology, Siksha Bhavana Visva-Bharati Santiniketan, Santiniketan 731235, India.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2021 Aug-Sep;255:110600. doi: 10.1016/j.cbpb.2021.110600. Epub 2021 Apr 10.

Abstract

Development of insect resistance to biopesticides is a current and pertinent global issue. Earlier, it was established that lepidopteran larvae can recover from Bt intoxication via a midgut regenerative response and subsequently generate resistance. Molecular aspects of restoration of the midgut integrity following toxin exposure are emerging recently. In the present study, we bring out the pivotal role of gut arylphorin in mediating the midgut regenerative response following sublethal Bt exposure in Achaea janata. Bt-induced midgut damage was characterized by microscopic analysis using differential interference contrast (DIC) and immunofluorescence (IF). Extensive disruption of brush-border membrane, associated with the underlying cytoskeletal alterations including F-actin, α-actin and β-tubulin was observed. Single-photon fluorescence microscopy combined with fluorescence lifetime imaging (FLIM) established the metabolic state associated with enhanced stem cell proliferation and migration from the basal side towards the luminal side following the damage. In-silico analysis revealed the phylogenetic relationship of gut arylphorin with closely related insect species and indicated the presence of two different subunits. Transient RNAi knockdown of the arylphorin resulted in diminished expression of mitotic Cyclin B mRNA levels. Human monoclonal Cyclin B antibody cross-reactivity with the Cyclin B located in the stem cells further validate the role of arylphorin as the mitogenic factor responsible for stem cell proliferation and epithelial regeneration. An in-depth understanding of resistance mechanisms will aid in the design of new strategies for the long-term usage and efficacy of Bt technology against pest control.

摘要

昆虫对生物农药产生抗性是当前一个全球性的热点问题。此前有研究表明鳞翅目幼虫可以通过中肠再生反应从 Bt 中毒中恢复,并随后产生抗性。最近,毒素暴露后中肠完整性恢复的分子方面的研究也逐渐出现。在本研究中,我们揭示了在 Achaea janata 中,肠芳香素在亚致死 Bt 暴露后介导中肠再生反应中的关键作用。使用微分干涉对比(DIC)和免疫荧光(IF)的微观分析来表征 Bt 诱导的中肠损伤。观察到刷状边界膜广泛破坏,伴随着细胞骨架的改变,包括 F-肌动蛋白、α-肌动蛋白和β-微管蛋白。单光子荧光显微镜结合荧光寿命成像(FLIM)确立了与增强的干细胞增殖和从基底侧向腔侧迁移相关的代谢状态。基于序列的系统发育分析表明,肠芳香素与密切相关的昆虫物种具有亲缘关系,并表明存在两种不同的亚基。芳香素的瞬时 RNAi 敲低导致有丝分裂周期素 B mRNA 水平的表达减少。人单克隆 Cyclin B 抗体与位于干细胞中的 Cyclin B 的交叉反应进一步验证了芳香素作为有丝分裂因子的作用,该因子负责干细胞增殖和上皮再生。深入了解抗性机制将有助于设计新的策略,以长期使用和提高 Bt 技术在害虫防治方面的功效。

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