Genetic Underpinnings of Cuticular Hydrocarbon Biosynthesis in the German Cockroach, Blattella germanica (L.): Progress and Perspectives.

IF 2.2 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Chemical Ecology Pub Date : 2024-05-10 DOI:10.1007/s10886-024-01509-7
Xiao-Jin Pei, Coby Schal, Yong-Liang Fan
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Abstract

Insect cuticular hydrocarbons (CHCs) serve as important waterproofing barriers and as signals and cues in chemical communication. Over the past 30 years, numerous studies on CHCs have been conducted in the German cockroach, Blattella germanica, leading to substantial progress in the field. However, there has not been a systematic review of CHC studies in this species in recent years. This review aims to provide a concise overview of the chemical composition, storage, transport, and physical properties of different CHCs in B. germanica. Additionally, we focus on the biosynthetic pathway and the genetic regulation of HC biosynthesis in this species. A considerable amount of biochemical evidence regarding the biosynthetic pathway of insect CHCs has been gathered from studies conducted in B. germanica. In recent years, there has also been an improved understanding of the molecular mechanisms that underlie CHC production in this insect. In this article, we summarize the biosynthesis of different classes of CHCs in B. germanica. Then, we review CHCs reaction to various environmental conditions and stressors and internal physiological states. Additionally, we review a body of work showing that in B. germanica, CHC profiles exhibit significant sexual dimorphism, specific CHCs act as essential precursors for female contact sex pheromone components, and we summarize the molecular regulatory mechanisms that underlie sexual dimorphism of CHC profiles. Finally, we highlight future directions and challenges in research on the biosynthesis and regulatory mechanisms of CHCs in B. germanica, and also identify potential applications of CHC studies in the pest control.

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德国小蠊角质烃生物合成的遗传基础:进展与展望。
昆虫的角质层碳氢化合物(CHC)是重要的防水屏障,也是化学交流的信号和线索。在过去的 30 年中,对德国小蠊的 CHCs 进行了大量研究,在该领域取得了重大进展。然而,近年来还没有对该物种的 CHC 研究进行系统综述。本综述旨在简要概述德国蜚蠊体内不同 CHC 的化学成分、储存、运输和物理性质。此外,我们还将重点关注该物种中碳氢化合物生物合成的生物合成途径和遗传调控。有关昆虫 CHC 生物合成途径的大量生化证据都是通过对 B. germanica 的研究收集的。近年来,人们对这种昆虫产生 CHC 的分子机制也有了更深入的了解。在本文中,我们总结了 B. germanica 不同种类 CHC 的生物合成过程。然后,我们回顾了 CHCs 对各种环境条件和压力以及内部生理状态的反应。此外,我们还回顾了一系列工作,这些工作表明,在德国蝙蝠中,CHC谱系表现出显著的性二态性,特定的CHC是雌性接触性信息素成分的重要前体,我们还总结了CHC谱系性二态性的分子调控机制。最后,我们强调了研究德国蝙蝠 CHC 的生物合成和调控机制的未来方向和挑战,并指出了 CHC 研究在害虫控制中的潜在应用。
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来源期刊
Journal of Chemical Ecology
Journal of Chemical Ecology 环境科学-生化与分子生物学
CiteScore
5.10
自引率
4.30%
发文量
58
审稿时长
4 months
期刊介绍: Journal of Chemical Ecology is devoted to promoting an ecological understanding of the origin, function, and significance of natural chemicals that mediate interactions within and between organisms. Such relationships, often adaptively important, comprise the oldest of communication systems in terrestrial and aquatic environments. With recent advances in methodology for elucidating structures of the chemical compounds involved, a strong interdisciplinary association has developed between chemists and biologists which should accelerate understanding of these interactions in nature. Scientific contributions, including review articles, are welcome from either members or nonmembers of the International Society of Chemical Ecology. Manuscripts must be in English and may include original research in biological and/or chemical aspects of chemical ecology. They may include substantive observations of interactions in nature, the elucidation of the chemical compounds involved, the mechanisms of their production and reception, and the translation of such basic information into survey and control protocols. Sufficient biological and chemical detail should be given to substantiate conclusions and to permit results to be evaluated and reproduced.
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