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一个修订的螺旋同源盒基因分类,包含新的多毛类转录组,揭示了一个多样化的 TALE 类和一个分化的 Hox 基因。

A Revised Spiralian Homeobox Gene Classification Incorporating New Polychaete Transcriptomes Reveals a Diverse TALE Class and a Divergent Hox Gene.

机构信息

Gatty Marine Laboratory, The Scottish Oceans Institute, School of Biology, University of St. Andrews, United Kingdom.

The Biomedical Sciences Research Complex, School of Biology, University of St. Andrews, United Kingdom.

出版信息

Genome Biol Evol. 2018 Sep 1;10(9):2151-2167. doi: 10.1093/gbe/evy144.

Abstract

The diversity of mechanisms and capacity for regeneration across the Metazoa present an intriguing challenge in evolutionary biology, impacting on the burgeoning field of regenerative medicine. Broad taxonomic sampling is essential to improve our understanding of regeneration, and studies outside of the traditional model organisms have proved extremely informative. Within the historically understudied Spiralia, the Annelida have an impressive variety of tractable regenerative systems. The biomeralizing, blastema-less regeneration of the head appendage (operculum) of the serpulid polychaete keelworm Spirobranchus (formerly Pomatoceros) lamarcki is one such system. To profile potential regulatory mechanisms, we classified the homeobox gene content of opercular regeneration transcriptomes. As a result of retrieving several difficult-to-classify homeobox sequences, we performed an extensive search and phylogenetic analysis of the TALE and PRD-class homeobox gene content of a broad selection of lophotrochozoan genomes. These analyses contribute to our increasing understanding of the diversity, taxonomic extent, rapid evolution, and radical flexibility of these recently discovered homeobox gene radiations. Our expansion and integration of previous nomenclature systems helps to clarify their cryptic orthology. We also describe an unusual divergent S. lamarcki Antp gene, a previously unclassified lophotrochozoan orphan gene family (Lopx), and a number of novel Nk class orphan genes. The expression and potential involvement of many of these lineage- and clade-restricted homeobox genes in S. lamarcki operculum regeneration provides an example of diversity in regenerative mechanisms, as well as significantly improving our understanding of homeobox gene evolution.

摘要

后生动物门的各种机制和再生能力在进化生物学中提出了一个有趣的挑战,这对新兴的再生医学领域产生了影响。广泛的分类采样对于提高我们对再生的理解至关重要,并且传统模式生物之外的研究已经被证明具有非常丰富的信息。在历史上研究较少的螺旋动物中,环节动物门拥有令人印象深刻的多种可处理的再生系统。这种生物具有双胚层、无芽基的头部附肢(瓣)再生能力,例如,沙蚕科多毛环节动物龙骨虫的龙骨虫(以前的 Pomatoceros)lamarcki 的瓣。为了描述潜在的调节机制,我们对瓣再生转录组中的同源盒基因含量进行了分类。由于检索到几个难以分类的同源盒序列,我们对广泛选择的担轮动物基因组中的 TALE 和 PRD 类同源盒基因含量进行了广泛的搜索和系统发育分析。这些分析有助于我们越来越了解这些最近发现的同源盒基因辐射的多样性、分类学范围、快速进化和激进的灵活性。我们对以前命名系统的扩展和整合有助于澄清它们的隐式同系物关系。我们还描述了一个不寻常的 S. lamarcki Antp 基因的分歧,一个以前未分类的担轮动物孤儿基因家族(Lopx),以及一些新的 Nk 类孤儿基因。这些谱系和分支受限的同源盒基因中的许多在 S. lamarcki 瓣再生中的表达和潜在参与提供了再生机制多样性的一个例子,同时也显著提高了我们对同源盒基因进化的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e856/6118893/93c0b6f20300/evy144f1.jpg

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