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泛节肢动物Dmrt基因的系统发育分析与胚胎表达

Phylogenetic analysis and embryonic expression of panarthropod Dmrt genes.

作者信息

Panara Virginia, Budd Graham E, Janssen Ralf

机构信息

1Department of Earth Sciences, Palaeobiology, Uppsala University, Villavägen 16, Uppsala, Sweden.

Present address: Department for Immunology, Genetic and Pathology, Rudbeckslaboratoriet, Dag Hammarskjölds väg 20, Uppsala, Sweden.

出版信息

Front Zool. 2019 Jul 2;16:23. doi: 10.1186/s12983-019-0322-0. eCollection 2019.

Abstract

BACKGROUND

One set of the developmentally important Doublesex and Male-abnormal-3 Related Transcription factors (Dmrt) is subject of intense research, because of their role in sex-determination and sexual differentiation. This likely non-monophyletic group of Dmrt genes is represented by the gene (), the () gene, and vertebrate Dmrt1 genes. However, other members of the Dmrt family are much less well studied, and in arthropods, including the model organism , data on these genes are virtually absent with respect to their embryonic expression and function.

RESULTS

Here we investigate the complete set of Dmrt genes in members of all main groups of Arthropoda and a member of Onychophora, extending our data to Panarthropoda as a whole. We confirm the presence of at least four families of Dmrt genes (including -like genes) in Panarthropoda and study their expression profiles during embryogenesis. Our work shows that the expression patterns of Dmrt11E, Dmrt93B, and Dmrt99B orthologs are highly conserved among panarthropods. Embryonic expression of -like genes, however, is more derived, likely as a result of neo-functionalization after duplication.

CONCLUSIONS

Our data suggest deep homology of most of the panarthropod Dmrt genes with respect to their function that likely dates back to their last common ancestor. The function of and -like genes which are critical for sexual differentiation in animals, however, appears to be much less conserved.

摘要

背景

一组在发育过程中具有重要意义的双性和雄性异常3相关转录因子(Dmrt)是深入研究的对象,因为它们在性别决定和性别分化中发挥作用。这个可能并非单系的Dmrt基因家族由基因()、()基因和脊椎动物Dmrt1基因代表。然而,Dmrt家族的其他成员研究得少得多,在节肢动物中,包括模式生物,关于这些基因的胚胎表达和功能的数据几乎不存在。

结果

在这里,我们研究了节肢动物所有主要类群成员以及有爪动物的一个成员中的完整Dmrt基因集,将我们的数据扩展到整个泛节肢动物。我们证实了泛节肢动物中至少存在四个Dmrt基因家族(包括类基因),并研究了它们在胚胎发生过程中的表达谱。我们的工作表明,Dmrt11E、Dmrt93B和Dmrt99B直系同源基因的表达模式在泛节肢动物中高度保守。然而,类基因的胚胎表达更为特化,可能是复制后新功能化的结果。

结论

我们的数据表明,大多数泛节肢动物Dmrt基因在功能上具有深度同源性,这可能可以追溯到它们的最后一个共同祖先。然而,对动物性别分化至关重要的和类基因的功能似乎保守性要低得多。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/238b/6604209/c3a07a54a2e8/12983_2019_322_Fig1_HTML.jpg

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