四种蜱的基因组序列扩展了对蜱进化的理解。

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2025-01-21 DOI:10.1186/s12915-025-02121-1
Alexandra Cerqueira de Araujo, Benjamin Noel, Anthony Bretaudeau, Karine Labadie, Matéo Boudet, Nachida Tadrent, Benjamin Istace, Salima Kritli, Corinne Cruaud, Robert Olaso, Jean-François Deleuze, Maarten J Voordouw, Caroline Hervet, Olivier Plantard, Aya Zamoto-Niikura, Thomas Chertemps, Martine Maïbèche, Frédérique Hilliou, Gaëlle Le Goff, Jindřich Chmelař, Vilém Mazák, Mohamed Amine Jmel, Michalis Kotsyfakis, José María Medina, Michael Hackenberg, Ladislav Šimo, Fotini A Koutroumpa, Patrick Wincker, Petr Kopáček, Jan Perner, Jean-Marc Aury, Claude Rispe
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引用次数: 0

摘要

背景:蜱是一种噬血蜱,通过在捕食过程中向脊椎动物宿主传播各种病原体,对人类构成重大威胁。尽管蜱虫基因组学取得了进展,但直到最近还缺乏高质量的基因组,特别是在包括莱姆病主要媒介的硬蜱属中。结果:在这里,我们展示了来自单个雌性个体的四种蜱虫的基因组序列,特别关注欧洲物种蓖麻伊蚊,实现了染色体水平的组装。此外,还对另外3种硬蚊(I. persulcatus、I. pacificus和I. hexonus)进行了聚类分析。四个基因组的质量和几个重要基因家族的广泛注释使我们能够在伊蚊属和蜱类的水平上研究基因库的进化。我们已经确定了在蜱进化过程中经历了主要扩增的基因家族,而获得的蓖麻I. ricinus表达图谱揭示了基因家族之间和内部的显著特化模式。值得注意的是,一些基因家族扩增与单外显子基因的增殖有关——最引人注目的是脂肪酸延长酶和硫转移酶。结论:我们的数据与现有基因组的整合为基因进化研究建立了坚实的框架,提高了我们对蜱生物学的理解。此外,我们的工作为针对这些生物的应用研究和创新控制奠定了基础。
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Genome sequences of four Ixodes species expands understanding of tick evolution.

Background: Ticks, hematophagous Acari, pose a significant threat by transmitting various pathogens to their vertebrate hosts during feeding. Despite advances in tick genomics, high-quality genomes were lacking until recently, particularly in the genus Ixodes, which includes the main vectors of Lyme disease.

Results: Here, we present the genome sequences of four tick species, derived from a single female individual, with a particular focus on the European species Ixodes ricinus, achieving a chromosome-level assembly. Additionally, draft assemblies were generated for the three other Ixodes species, I. persulcatus, I. pacificus, and I. hexagonus. The quality of the four genomes and extensive annotation of several important gene families have allowed us to study the evolution of gene repertoires at the level of the genus Ixodes and of the tick group. We have determined gene families that have undergone major amplifications during the evolution of ticks, while an expression atlas obtained for I. ricinus reveals striking patterns of specialization both between and within gene families. Notably, several gene family amplifications are associated with a proliferation of single-exon genes-most strikingly for fatty acid elongases and sulfotransferases.

Conclusions: The integration of our data with existing genomes establishes a solid framework for the study of gene evolution, improving our understanding of tick biology. In addition, our work lays the foundations for applied research and innovative control targeting these organisms.

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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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