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探索内在的荒野:一项关于近野生和已定植的综合代谢组学和转录组学研究

Exploring the Wilderness within: An Integrative Metabolomics and Transcriptomics Study on Near-Wild and Colonized .

作者信息

Kelly Erin Taylor, Mack Lindsey K, Attardo Geoffrey M

机构信息

Department of Entomology and Nematology, College of Agricultural and Environmental Sciences, University of California Davis, One Shields Ave, Davis, CA 95616, USA.

出版信息

Insects. 2024 Jul 6;15(7):507. doi: 10.3390/insects15070507.

Abstract

This study examines the phenotypic differences between wild-derived F2 Central Valley mosquitoes and the insecticide-susceptible Rockefeller (Rock) lab strain of . Given the rarity of wild pyrethroid-susceptible populations, the focus of this work is to develop an understanding of the resistance physiology in this invasive mosquito population and explore the potential of metabolites as diagnostic biomarkers for metabolic resistance. This study utilizes metabolomic, gene expression, and lifespan data for a comparison between strains. The findings indicate that wild-derived mosquitoes with greater metabolic resistance have a lifespan sensitivity to restricted larval nutrition. In terms of metabolism and gene expression, Central Valley mosquitoes show increased activity in oxidoreductase, glutathione metabolism, and the pentose phosphate pathway. Conversely, Rock mosquitoes display signs of metabolic inefficiency and mitochondrial dysregulation, likely tolerated due to the consistency and nutritional abundance of a controlled lab environment. The study also examines P450 and GSTE profiles in relation to other insecticide-resistant groups. While metabolomic data can differentiate our study groups, the challenges in biomarker development arise from few detected markers meeting high fold change thresholds.

摘要

本研究考察了野生来源的F2中央山谷蚊子与杀虫剂敏感的洛克菲勒(Rock)实验室品系之间的表型差异。鉴于野生拟除虫菊酯敏感种群的稀有性,这项工作的重点是了解这种入侵蚊子种群的抗性生理,并探索代谢物作为代谢抗性诊断生物标志物的潜力。本研究利用代谢组学、基因表达和寿命数据对不同品系进行比较。研究结果表明,具有更强代谢抗性的野生来源蚊子对幼虫营养受限具有寿命敏感性。在代谢和基因表达方面,中央山谷蚊子在氧化还原酶、谷胱甘肽代谢和磷酸戊糖途径中表现出活性增加。相反,Rock蚊子表现出代谢效率低下和线粒体失调的迹象,这可能是由于受控实验室环境的一致性和营养丰富性而被耐受。该研究还考察了与其他抗杀虫剂群体相关的P450和GSTE谱。虽然代谢组学数据可以区分我们的研究组,但生物标志物开发面临的挑战在于很少有检测到的标志物达到高倍数变化阈值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/727f/11277204/c203c17f5426/insects-15-00507-g0A1.jpg

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