Transcriptome analysis and temporal expression patterns of wing development-related genes in Lymantria dispar (Lepidoptera: Erebidae).

IF 1.8 3区 农林科学 Q2 ENTOMOLOGY
Fengrui Dou, Wenzhuai Ji, Qing Xie, Jingyu Wang, Yixia Cao, Juan Shi
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Abstract

Spongy moth, Lymantria dispar Linnaeus (Lepidoptera: Erebidae), stands as a pervasive international threat, marked by its designation as one of the "world's 100 worst invasive species" by IUCN, owing to its voracious leaf-eating habits encompassing over 500 plant species. Its strong flight ability facilitates its spread and invasion. The present study aims to uncover differential gene expression, utilizing the Illumina Novaseq6000 sequencing platform for comprehensive transcriptome sequencing and bioinformatic analysis of total RNA extracted from larvae and pupae. Results revealed pivotal processes of protein functional structure conformation, transport, and signal transduction in functional gene annotation during the 2 developmental stages of spongy moth. 18 functional genes, namely, Distal-less (Dll), Wingless (Wg), Decapentaplegic (Dpp), Hedgehog (Hh), Cubitus interruptus (Ci), Patched (Ptc), Apterous (Ap), Serrate (Ser), Fringe (Fng), Achaete (Ac), Engrailed (En), Vestigial (Vg), Scute (Sc), Invected (Inv), Scalloped (Sd), Ultrabithorax (Ubx), Serum Response Factor (SRF), and Spalt-major, associated with wing development were identified, and their expression levels were meticulously assessed through real-time quantitative PCR (RT-qPCR) in 1st-6th instar larvae and male and female pupae wing discs. The results showed that 18 genes exhibited expression. Furthermore, the relative expression values of wing development-related genes were significantly higher in the pupae stage than in the larval stage. The relative expression values of male and female pupae were also significantly different. The RT-qPCR results were in general agreement with the results of transcriptome analysis. This study establishes a foundational understanding of the developmental mechanisms governing the formation of spongy moth wings.

异毒蛾翅发育相关基因的转录组分析及时间表达模式。
海绵蛾Lymantria dispar Linnaeus(鳞翅目:灰蛾科)是一种普遍存在的国际威胁,被世界自然保护联盟(IUCN)列为“世界上100个最严重的入侵物种”之一,因为它贪婪地吃叶子,吞噬了500多种植物。其强大的飞行能力有利于其传播和入侵。本研究旨在揭示差异基因表达,利用Illumina Novaseq6000测序平台对幼虫和蛹提取的总RNA进行全面的转录组测序和生物信息学分析。结果揭示了海绵蛾两个发育阶段蛋白功能结构构象、转运和功能基因注释信号转导的关键过程。鉴定出与翅膀发育相关的18个功能基因,即远端缺失(Dll)、无翼缺失(Wg)、Decapentaplegic (Dpp)、Hedgehog (Hh)、Cubitus interruptus (Ci)、Patched (Ptc)、Apterous (Ap)、Serrate (Ser)、Fringe (Fng)、Achaete (Ac)、Engrailed (En)、vestial (Vg)、sccute (Sc)、Invected (Inv)、scalalloped (Sd)、Ultrabithorax (Ubx)、血清反应因子(SRF)、Spalt-major。并通过实时荧光定量PCR (RT-qPCR)技术,在1 ~ 6龄幼虫和雌雄蛹翅盘中仔细检测其表达水平。结果表明,有18个基因表达。羽翼发育相关基因在蛹期的相对表达量显著高于幼虫期。雌雄蛹的相对表达量也有显著差异。RT-qPCR结果与转录组分析结果基本一致。本研究建立了对海绵蛾翅膀形成的发育机制的基本认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Environmental Entomology
Environmental Entomology 生物-昆虫学
CiteScore
3.90
自引率
5.90%
发文量
97
审稿时长
3-8 weeks
期刊介绍: Environmental Entomology is published bimonthly in February, April, June, August, October, and December. The journal publishes reports on the interaction of insects with the biological, chemical, and physical aspects of their environment. In addition to research papers, Environmental Entomology publishes Reviews, interpretive articles in a Forum section, and Letters to the Editor.
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