非洲慈鲷鱼类转座元件和 piRNA 途径的动态共同进化

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Genome Biology Pub Date : 2025-01-22 DOI:10.1186/s13059-025-03475-z
Miguel Vasconcelos Almeida, Moritz Blumer, Chengwei Ulrika Yuan, Pío Sierra, Jonathan L. Price, Fu Xiang Quah, Aleksandr Friman, Alexandra Dallaire, Grégoire Vernaz, Audrey L. K. Putman, Alan M. Smith, Domino A. Joyce, Falk Butter, Astrid D. Haase, Richard Durbin, M. Emília Santos, Eric A. Miska
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引用次数: 0

摘要

东非慈鲷以爆炸性的方式多样化,但这些鱼类表型多样性的遗传基础仍然很大程度上是未知的。虽然转座因子(TEs)与慈鲷的表型变异有关,但对其转录活性和表观遗传沉默知之甚少。我们着手弥合这一差距,并了解TEs与其宿主慈鲷之间的相互作用。在这里,我们描述了TE表达在非洲慈鲷性腺和早期发育的动态模式。同源推断揭示了TE沉默因子在慈鲷中具有很强的保守性,并且piwil1基因在马拉维湖慈鲷中扩展,这可能是由PiggyBac TE驱动的。扩展后的piwil1拷贝具有正选择的特征,并保留催化活性必需的氨基酸残基。此外,非洲稚鱼的性腺表达一种靶向TEs的piwi相互作用RNA (piRNA)途径。我们确定了非洲稚鱼产生piRNA的基因组位点,并在密切相关的物种中发现了差异,这与piRNA产生位点的快速进化一致。我们的研究结果表明,TEs和宿主沉默途径在非洲慈鲷辐射中的动态共同进化。我们认为这种共同进化促进了慈鲷的基因组多样性。
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Dynamic co-evolution of transposable elements and the piRNA pathway in African cichlid fishes
East African cichlid fishes have diversified in an explosive fashion, but the (epi)genetic basis of the phenotypic diversity of these fishes remains largely unknown. Although transposable elements (TEs) have been associated with phenotypic variation in cichlids, little is known about their transcriptional activity and epigenetic silencing. We set out to bridge this gap and to understand the interactions between TEs and their cichlid hosts. Here, we describe dynamic patterns of TE expression in African cichlid gonads and during early development. Orthology inference revealed strong conservation of TE silencing factors in cichlids, and an expansion of piwil1 genes in Lake Malawi cichlids, likely driven by PiggyBac TEs. The expanded piwil1 copies have signatures of positive selection and retain amino acid residues essential for catalytic activity. Furthermore, the gonads of African cichlids express a Piwi-interacting RNA (piRNA) pathway that targets TEs. We define the genomic sites of piRNA production in African cichlids and find divergence in closely related species, in line with fast evolution of piRNA-producing loci. Our findings suggest dynamic co-evolution of TEs and host silencing pathways in the African cichlid radiations. We propose that this co-evolution has contributed to cichlid genomic diversity.
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来源期刊
Genome Biology
Genome Biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
21.00
自引率
3.30%
发文量
241
审稿时长
2 months
期刊介绍: Genome Biology stands as a premier platform for exceptional research across all domains of biology and biomedicine, explored through a genomic and post-genomic lens. With an impressive impact factor of 12.3 (2022),* the journal secures its position as the 3rd-ranked research journal in the Genetics and Heredity category and the 2nd-ranked research journal in the Biotechnology and Applied Microbiology category by Thomson Reuters. Notably, Genome Biology holds the distinction of being the highest-ranked open-access journal in this category. Our dedicated team of highly trained in-house Editors collaborates closely with our esteemed Editorial Board of international experts, ensuring the journal remains on the forefront of scientific advances and community standards. Regular engagement with researchers at conferences and institute visits underscores our commitment to staying abreast of the latest developments in the field.
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