基底脊索动物具有高度动态的泛基因组,富含防御和免疫基因,并遵循孟德尔定律遗传。

IF 3.7 2区 生物学 Q1 GENETICS & HEREDITY
PLoS Genetics Pub Date : 2025-08-18 eCollection Date: 2025-08-01 DOI:10.1371/journal.pgen.1011833
Umberto Rosani, Marco Gerdol, Mart Krupovic
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引用次数: 0

摘要

泛基因组分析包含一个物种的全部遗传库,为种内多样性和系统地理基因模式提供了有价值的见解。虽然动物泛基因组的分类广度和功能意义仍有待充分揭示,但最近的发现(如双壳类动物中开放的细菌样泛基因组的报道)强调了更好地理解驱动单倍型间结构变异的分子机制的必要性。受存在-缺失变异(PAV)和非参考序列(NRSs)影响的基因代表了可能塑造基因组结构和可塑性的进化足迹,最终影响物种的适应性和长期适应性。为了研究基础脊索动物的全基因组结构,我们分析了来自belcheri Branchiostoma和B. floridae的全基因组重测序数据,研究了结构基因组变异的影响,并评估了可有可无的基因在代际间的遗传模式。这两个物种的全基因组包括一千多个受PAV影响的基因,并表现出从父母到后代的跨代孟德尔传播。我们进一步证明,白弧菌中35个必不可少的基因是外源的,可能是由马拉结疱疹病毒基因组的整合引起的,从而将马拉结疱疹病毒科的已知宿主范围从无脊椎动物扩展到脊索动物。PAV优先靶向涉及防御、免疫和细胞信号传导的基因家族,包括免疫相关蛋白(GIMAPs)的gtp酶、半胱天冬酶、toll样受体和含有apextrin c -末端(APEC)结构域的模式识别受体。头脊索动物免疫基因的动态特性与开放细菌泛基因组中的模式相似,这表明基因组进化和跨生命域创新的基本原则是由宿主-病原体相互作用形成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The highly dynamic pangenome of basal chordates is enriched in defence and immunity genes and is inherited following the Mendelian law.

The highly dynamic pangenome of basal chordates is enriched in defence and immunity genes and is inherited following the Mendelian law.

The highly dynamic pangenome of basal chordates is enriched in defence and immunity genes and is inherited following the Mendelian law.

The highly dynamic pangenome of basal chordates is enriched in defence and immunity genes and is inherited following the Mendelian law.

Pangenome analyses, which encompass the full genetic repertoire of a species, offer valuable insights into intraspecific diversity and phylogeographic gene patterns. While the taxonomic breadth and functional significance of animal pangenomes remain to be fully uncovered, recent findings (such as reports of open, bacterial-like pangenomes in bivalves) highlight the need to better understand the molecular mechanisms driving inter-haplotype structural variation. Genes affected by presence-absence variation (PAV), along with non-reference sequences (NRSs), represent evolutionary footprints that may shape genome architecture and plasticity, ultimately influencing the adaptability and long-term fitness of species. To investigate the pangenomic architecture of basal chordates, we analyzed available whole-genome resequencing data from Branchiostoma belcheri and B. floridae, examined the impact of structural genomic variation, and assessed the inheritance patterns of dispensable genes across generations. The pangenomes of both species include over a thousand of genes affected by PAV and exhibiting trans-generational Mendelian transmission from parents to offspring. We further demonstrate that 35 dispensable genes in B. belcheri are of exogenous origin, likely resulting from the integration of a malacoherpesvirus genome, thereby extending the known host range of Malacoherpesviridae from invertebrates to chordates. PAV preferentially targeted gene families involved in defense, immunity, and cell signaling, including GTPases of immunity-associated proteins (GIMAPs), caspases, toll-like receptors, and pattern recognition receptors containing apextrin C-terminal (APEC) domains. The dynamic nature of immunity genes in cephalochordates parallels patterns seen in open bacterial pangenomes, suggesting that fundamental principles of genome evolution and innovation across life domains are shaped by host-pathogen interactions.

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来源期刊
PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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