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海胆Paracentrotus lividus中的wnt2直系同源基因。

A wnt2 ortholog in the sea urchin Paracentrotus lividus.

作者信息

Robert Nicolas, Hammami Firas, Lhomond Guy, Dru Philippe, Lepage Thierry, Schubert Michael, Croce Jenifer C

机构信息

Sorbonne Université, CNRS, Laboratoire de Biologie du Développement de Villefranche-sur-Mer (LBDV), Evolution of Intercellular Signaling in Development (EvoInSiDe) Team, Villefranche-sur-Mer, France.

Université Côte d'Azur, CNRS, INSERM, iBV, France.

出版信息

Genesis. 2019 Nov;57(11-12):e23331. doi: 10.1002/dvg.23331. Epub 2019 Sep 3.

DOI:10.1002/dvg.23331
PMID:31479176
Abstract

Members of the wnt gene family encode secreted glycoproteins that mediate critical intercellular communications in metazoans. Large-scale genome and transcriptome analyses have shown that this family is composed of 13 distinct subfamilies. These analyses have further established that the number of wnt genes per subfamily varies significantly between metazoan phyla, highlighting that gene duplication and gene loss events have shaped the complements of wnt genes during evolution. In sea urchins, for example, previous work reported the absence of representatives of both the WNT2 and WNT11 subfamilies in two different species, Paracentrotus lividus and Strongylocentrotus purpuratus. Recently, however, we identified a gene encoding a WNT2 ortholog in P. lividus and, based on that finding, we also reanalyzed the genome of S. purpuratus. Yet, we found no evidence of a bona fide wnt2 gene in S. purpuratus. Furthermore, we established that the P. lividus wnt2 gene is selectively expressed in vegetal tissues during embryogenesis, in a pattern that is similar, although not identical, to that of other P. lividus wnt genes. Taken together, this study amends previous work on the P. lividus wnt complement and reveals an unexpected variation in the number of wnt genes between closely related sea urchin species.

摘要

Wnt基因家族的成员编码分泌型糖蛋白,这些糖蛋白介导后生动物中关键的细胞间通讯。大规模的基因组和转录组分析表明,该家族由13个不同的亚家族组成。这些分析进一步证实,后生动物门中每个亚家族的Wnt基因数量差异显著,这突出表明基因复制和基因丢失事件在进化过程中塑造了Wnt基因的组成。例如,在海胆中,先前的研究报道在两种不同的物种——地中海海胆和紫球海胆中,WNT2和WNT11亚家族均无代表基因。然而,最近我们在地中海海胆中鉴定出一个编码WNT2直系同源基因的基因,并基于这一发现,我们还重新分析了紫球海胆的基因组。然而,我们在紫球海胆中未发现真正的wnt2基因的证据。此外,我们确定地中海海胆的wnt2基因在胚胎发育过程中在植物组织中选择性表达,其模式与其他地中海海胆wnt基因相似,但并不完全相同。综上所述,本研究修正了先前关于地中海海胆wnt基因组成的研究,并揭示了亲缘关系密切的海胆物种之间Wnt基因数量的意外差异。

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