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表皮形成中的微观结构和阶段特异性转录组动态的蓝图。

A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in .

机构信息

State Key Laboratory of Silkworm Genome Biology, Key Laboratory of Sericultural Biology and Genetic Breeding, Ministry of Agriculture and Rural Affairs, College of Sericulture, Textile and Biomass Sciences, Southwest University, Chongqing 400715, China.

College of Notoginseng Medicine and Pharmacy, Wenshan University, Wenshan 663000, China.

出版信息

Int J Mol Sci. 2022 May 5;23(9):5155. doi: 10.3390/ijms23095155.

Abstract

Insect cuticle is critical for the environmental adaptability and insecticide resistance of insects. However, there is no clear understanding of the structure and protein components of the cuticle during each developmental stage of holometabolous insects, and knowledge about the protein components within each layer is vague. We conducted serial sectioning, cuticular structure analysis, and transcriptome sequencing of the larval, pupal, and adult cuticles of . The deposition processes of epicuticle, exocuticle, and endocuticle during larval, pupal, and adult cuticle formation were similar. Transcriptome analysis showed that these cuticle formations share 74% of the expressed cuticular protein (CP) genes and 20 other structural protein genes, such as and . There are seven, six, and eleven stage-specific expressed CP genes in larval, pupal, and adult cuticles, respectively. The types and levels of CP genes may be the key determinants of the properties of each cuticular layer. For example, the CPs of the RR-2 protein family with high contents of histidine (His) are more essential for the exocuticle. Functional analysis suggested that BmorCPAP1-H is involved in cuticle formation. This study not only offers an in-depth understanding of cuticle morphology and protein components but also facilitates the elucidation of molecular mechanisms underlying cuticle formation in future studies.

摘要

昆虫表皮对于昆虫的环境适应性和抗药性至关重要。然而,对于完全变态昆虫在每个发育阶段的表皮结构和蛋白质组成,我们并没有清晰的认识,对每层表皮内的蛋白质组成也知之甚少。我们对 的幼虫、蛹和成虫表皮进行了连续切片、表皮结构分析和转录组测序。在幼虫、蛹和成虫表皮形成过程中,表皮、外表皮和内表皮的沉积过程相似。转录组分析表明,这些表皮形成过程共享 74%的表达表皮蛋白 (CP) 基因和 20 个其他结构蛋白基因,如 和 。幼虫、蛹和成虫表皮分别有 7、6 和 11 个阶段特异性表达的 CP 基因。CP 基因的类型和水平可能是每个表皮层特性的关键决定因素。例如,富含组氨酸 (His) 的 RR-2 蛋白家族的 CP 对于外表皮更为重要。功能分析表明,BmorCPAP1-H 参与了表皮的形成。本研究不仅深入了解了表皮形态和蛋白质组成,还为未来研究表皮形成的分子机制提供了便利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ae7/9101387/386f0ccfa5a3/ijms-23-05155-g001.jpg

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