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线虫 Hox 基因组合和基因组基因座排列的进化可塑性。

Evolutionary plasticity in nematode Hox gene complements and genomic loci arrangement.

机构信息

Institut für Zoologie, Universität zu Köln, Zülpicher str. 47b, 50674, Cologne, Germany.

Institute of Evolutionary Biology, University of Edinburgh, EH9 3FL, Edinburgh, Scotland.

出版信息

Sci Rep. 2024 Nov 27;14(1):29513. doi: 10.1038/s41598-024-79962-3.

Abstract

Hox genes are central to metazoan body plan formation, patterning and evolution, playing a critical role in cell fate decisions early in embryonic development in invertebrates and vertebrates. While the archetypical Hox gene cluster consists of members of nine ortholog groups (HOX1-HOX9), arrayed in close linkage in the order in which they have their anterior-posterior patterning effects, nematode Hox gene sets do not fit this model. The Caenorhabditis elegans Hox gene set is not clustered and contains only six Hox genes from four of the ancestral groups. The pattern observed in C. elegans is not typical of the phylum, and variation in orthologue set presence and absence and in genomic organisation has been reported. Recent advances in genome sequencing have resulted in the availability of many novel genome assemblies in Nematoda, especially from taxonomic groups that had not been analysed previously. Here, we explored Hox gene complements in high-quality genomes of 80 species from all major clades of Nematoda to understand the evolution of this key set of body pattern genes and especially to probe the origins of the "dispersed" cluster observed in C. elegans. We also included the recently available high-quality genomes of some Nematomorpha as an outgroup. We find that nematodes can have Hox genes from up to six orthology groups. While nematode Hox "clusters" are often interrupted by unrelated genes we identify species in which the cluster is intact and not dispersed.

摘要

Hox 基因是后生动物体模式形成、模式形成和进化的核心,在无脊椎动物和脊椎动物胚胎发育的早期对细胞命运决定起着关键作用。虽然典型的 Hox 基因簇由九个同源基因组成(HOX1-HOX9),按照它们具有前后模式效应的顺序紧密连锁排列,但线虫 Hox 基因集不符合这种模式。秀丽隐杆线虫的 Hox 基因集没有聚类,并且只包含来自四个祖先群的六个 Hox 基因。在秀丽隐杆线虫中观察到的模式不是该门的典型模式,并且已经报道了同源基因集存在和缺失以及基因组组织的变化。最近在基因组测序方面的进展导致了许多新的线虫基因组组装在可用,特别是在以前没有分析过的分类群中。在这里,我们探索了来自线虫所有主要类群的 80 个高质量基因组中的 Hox 基因补充,以了解这组关键身体模式基因的进化,特别是探测在秀丽隐杆线虫中观察到的“分散”簇的起源。我们还包括最近可用的一些线虫动物门的高质量基因组作为外群。我们发现线虫可以拥有多达六个同源基因的 Hox 基因。虽然线虫 Hox“簇”经常被不相关的基因打断,但我们确定了一些物种的簇是完整的,而不是分散的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/080d/11603191/bb40e9ce087c/41598_2024_79962_Fig1_HTML.jpg

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