Transcriptome Analysis of Culex pipiens quinquefasciatus Larvae Exposed to a Semi-Lethal Dose of Vermistatin.

IF 2.6 4区 医学 Q2 INFECTIOUS DISEASES Tropical Medicine and Infectious Disease Pub Date : 2025-01-22 DOI:10.3390/tropicalmed10020031
Junhui Chen, Zhiyong Xu, Feiying Yang, Jian Yang, Wendong Kuang, Jianghuai Li, Yaqi Wang, Liang Jin
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Abstract

Culex pipiens quinquefasciatus is a notorious vector transmitting severe diseases such as Zika virus and West Nile virus to humans worldwide. Vermistatin is a type of funicon-like compound and was first isolated from Penicillin vermiculatum in the 1970s. Vermistatin has shown promising activity against Cx. p. quinquefasciatus larvae in our previous research. Here, we conducted a transcriptomic analysis of Cx. p. quinquefasciatus larvae treated with a median lethal concentration of 28.13 mg/L vermistatin. Differential expression analysis identified 1055 vermistatin-responsive genes, with 477 downregulated and 578 upregulated. Gene Ontology annotation and enrichment analysis revealed the metabolic process to be the most significantly affected biological process, the membrane to be the most significantly affected cellular component, and catalytic activity to be the most significantly affected molecular function. Kyoto Encyclopedia of Genes and Genomes pathway analysis classified the differential expression genes into six major categories, with metabolism and organismal systems being the most enriched. Fifty-five pathways were significantly enriched, with the hematopoietic cell lineage, renin-angiotensin system, cholesterol metabolism, and peroxisome proliferator-activated receptor signaling pathways among the top altered pathways. Furthermore, 32 potential detoxification-related genes were differentially expressed, with 3 cytochrome P450s, 2 ABC transporters, and 1 UGT induced by vermistatin. This study provides insights into the molecular mechanisms of vermistatin's action against Cx. p. quinquefasciatus larvae, highlighting potential targets for novel mosquito control strategies.

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暴露于半致死剂量蚯蚓素的五带喙库蚊幼虫转录组分析
致倦库蚊是世界范围内传播寨卡病毒、西尼罗河病毒等严重疾病的著名媒介。Vermistatin是一种真菌类化合物,于20世纪70年代首次从盘尼西林中分离出来。Vermistatin对Cx有很好的抑制作用。致倦库蚊幼虫的研究。在这里,我们对Cx进行了转录组学分析。致倦库蚊幼虫中位致死浓度为28.13 mg/L。差异表达分析鉴定出1055个驱虫素应答基因,其中477个下调,578个上调。基因本体注释和富集分析显示,代谢过程是受影响最显著的生物过程,膜是受影响最显著的细胞组分,催化活性是受影响最显著的分子功能。《京都基因与基因组百科全书》通路分析将差异表达基因分为六大类,其中代谢和有机体系统基因最为丰富。55条通路显著富集,其中造血细胞谱系、肾素-血管紧张素系统、胆固醇代谢和过氧化物酶体增殖激活受体信号通路是变化最大的通路。此外,32个潜在的解毒相关基因存在差异表达,其中3个细胞色素p450, 2个ABC转运蛋白和1个UGT被虫毒素诱导。本研究揭示了抑菌素抗Cx的分子机制。致倦库蚊幼虫,突出了新型蚊虫控制策略的潜在目标。
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来源期刊
Tropical Medicine and Infectious Disease
Tropical Medicine and Infectious Disease Medicine-Public Health, Environmental and Occupational Health
CiteScore
3.90
自引率
10.30%
发文量
353
审稿时长
11 weeks
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