Crucial roles of specialized chitinases in elytral and hindwing cuticles construction in Leptinotarsa decemlineata

Author:

Shi Ji‐Feng123ORCID,Cheng Man‐hong4,Zhou Wei123,Zeng Mu‐zi3,Chen Yu3,Yang Jia‐xin3,Wu Hao3,Ye Qiu‐hong3,Tang Hong3,Zhang Qing123,Fu Kai‐Yun5,Guo Wen‐Chao5

Affiliation:

1. State Key Laboratory of Resource Insects Southwest University Chongqing China

2. Key Laboratory of Sericultural Biology and Genetic Breeding Ministry of Agriculture and Rural Affairs Chongqing China

3. College of Sericulture, Textile, and Biomass Sciences Southwest University Chongqing China

4. Chongqing College of Humanities, Science and Technology Chongqing China

5. Ministry of Agriculture/Xinjiang Key Laboratory of Agricultural Biosafety Institute of Plant Protection Xinjiang Academy of Agricultural Sciences/Key Laboratory of Integrated Pest Management on Crops in Northwestern Oasis Urumqi China

Abstract

AbstractBACKGROUNDThe Colorado potato beetle (CPB), Leptinotarsa decemlineata, is a major potato (Solanum tuberosum) pest, infesting over 16 million km2 and causing substantial economic losses. The insect cuticle forms an apical extracellular matrix (ECM) envelope covering exposed organs to direct morphogenesis and confer structural protection. While select chitinase (Cht) genes have proven essential for larval development, their potential activities directing ECM remodeling underlying adult wing maturation remain undefined.RESULTSWe investigated the expression patterns and performed an oral RNA interference (RNAi) screen targeting 19 LdChts in late‐instar L. decemlineata larvae. Subsequently, we assessed their effects on adult eclosion and wing characteristics. Knockdown of LdCht5, LdCht7, LdCht10, LdIDGF2, and LdIDGF4, as well as others from Group IV (LdCht15, LdCht12, LdCht17, and LdCht13) and Groups VII–X (LdCht2, LdCht11, LdCht1, and LdCht3), resulting in shrunken, misshapen elytra with reduced areal density, as well as transverse wrinkling and impaired wing‐tip folding in hindwings. Scanning electron micrographs revealed eroded elytral ridges alongside thinned, ruptured hindwing veins, indicative of mechanical fragility post‐LdCht suppression. Spectroscopic analysis uncovered biomolecular alterations underlying the elytral anomalies, including decreases in peaks representing chitin, proteins, and lipids. This loss of essential ECM components provides evidence for the fragility, wrinkling, and shrinkage observed in the RNAi groups.CONCLUSIONOur findings elucidate the crucial role of chitinases in the turnover of chitinous cuticles on beetle wings, offering insights into RNAi‐based control strategies against this invasive pest. © 2024 Society of Chemical Industry.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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