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

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 w...

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Autores principales: Yan, Zhengwen, Tong, Xiaoling, Xiong, Gao, Yang, Weike, Lu, Kunpeng, Yuan, Yajie, Han, Minjin, Hu, Hai, Wei, Wei, Dai, Fangyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101387/
https://www.ncbi.nlm.nih.gov/pubmed/35563544
http://dx.doi.org/10.3390/ijms23095155
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author Yan, Zhengwen
Tong, Xiaoling
Xiong, Gao
Yang, Weike
Lu, Kunpeng
Yuan, Yajie
Han, Minjin
Hu, Hai
Wei, Wei
Dai, Fangyin
author_facet Yan, Zhengwen
Tong, Xiaoling
Xiong, Gao
Yang, Weike
Lu, Kunpeng
Yuan, Yajie
Han, Minjin
Hu, Hai
Wei, Wei
Dai, Fangyin
author_sort Yan, Zhengwen
collection PubMed
description 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 Bombyx mori. 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 larval serum protein and prisilkin. 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.
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spelling pubmed-91013872022-05-14 A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori Yan, Zhengwen Tong, Xiaoling Xiong, Gao Yang, Weike Lu, Kunpeng Yuan, Yajie Han, Minjin Hu, Hai Wei, Wei Dai, Fangyin Int J Mol Sci Article 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 Bombyx mori. 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 larval serum protein and prisilkin. 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. MDPI 2022-05-05 /pmc/articles/PMC9101387/ /pubmed/35563544 http://dx.doi.org/10.3390/ijms23095155 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yan, Zhengwen
Tong, Xiaoling
Xiong, Gao
Yang, Weike
Lu, Kunpeng
Yuan, Yajie
Han, Minjin
Hu, Hai
Wei, Wei
Dai, Fangyin
A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title_full A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title_fullStr A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title_full_unstemmed A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title_short A Blueprint of Microstructures and Stage-Specific Transcriptome Dynamics of Cuticle Formation in Bombyx mori
title_sort blueprint of microstructures and stage-specific transcriptome dynamics of cuticle formation in bombyx mori
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101387/
https://www.ncbi.nlm.nih.gov/pubmed/35563544
http://dx.doi.org/10.3390/ijms23095155
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