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在栉蚕Euperipatoides rowelli(栉蚕科)中,不属于NK基因簇的NK基因的表达。

Expression of NK genes that are not part of the NK cluster in the onychophoran Euperipatoides rowelli (Peripatopsidae).

作者信息

Treffkorn Sandra, Mayer Georg

机构信息

Department of Zoology, Institute of Biology, University of Kassel, Kassel, Germany.

出版信息

BMC Dev Biol. 2019 Apr 15;19(1):7. doi: 10.1186/s12861-019-0185-9.

Abstract

BACKGROUND

NK genes are a group of homeobox transcription factors that are involved in various molecular pathways across bilaterians. They are typically divided into two subgroups, the NK cluster (NKC) and NK-linked genes (NKL). While the NKC genes have been studied in various bilaterians, corresponding data of many NKL genes are missing to date. To further investigate the ancestral roles of NK family genes, we analyzed the expression patterns of NKL genes in the onychophoran Euperipatoides rowelli.

RESULTS

The NKL gene complement of E. rowelli comprises eight genes, including BarH, Bari, Emx, Hhex, Nedx, NK2.1, vax and NK2.2, of which only NK2.2 was studied previously. Our data for the remaining seven NKL genes revealed expression in different structures associated with the developing nervous system in embryos of E. rowelli. While NK2.1 and vax are expressed in distinct medial regions of the developing protocerebrum early in development, BarH, Bari, Emx, Hhex and Nedx are expressed in late developmental stages, after all major structures of the nervous system have been established. Furthermore, BarH and Nedx are expressed in distinct mesodermal domains in the developing limbs.

CONCLUSIONS

Comparison of our expression data to those of other bilaterians revealed similar patterns of NK2.1, vax, BarH and Emx in various aspects of neural development, such as the formation of anterior neurosecretory cells mediated by a conserved molecular mechanism including NK2.1 and vax, and the development of the central and peripheral nervous system involving BarH and Emx. A conserved role in neural development has also been reported from NK2.2, suggesting that the NKL genes might have been primarily involved in neural development in the last common ancestor of bilaterians or at least nephrozoans (all bilaterians excluding xenacoelomorphs). The lack of comparative data for many of the remaining NKL genes, including Bari, Hhex and Nedx currently hampers further evolutionary conclusions. Hence, future studies should focus on the expression of these genes in other bilaterians, which would provide a basis for comparative studies and might help to better understand the role of NK genes in the diversification of bilaterians.

摘要

背景

NK基因是一组同源框转录因子,参与两侧对称动物的各种分子途径。它们通常分为两个亚组,NK簇(NKC)和NK连锁基因(NKL)。虽然NKC基因已在各种两侧对称动物中得到研究,但许多NKL基因的相应数据至今仍缺失。为了进一步研究NK家族基因的祖先作用,我们分析了NKL基因在栉蚕Euperipatoides rowelli中的表达模式。

结果

E. rowelli的NKL基因互补群包括八个基因,即BarH、Bari、Emx、Hhex、Nedx、NK2.1、vax和NK2.2,其中只有NK2.2先前有过研究。我们关于其余七个NKL基因的数据显示,它们在E. rowelli胚胎中与发育中的神经系统相关的不同结构中表达。虽然NK2.1和vax在发育早期在发育中的前脑的不同内侧区域表达,但BarH、Bari、Emx、Hhex和Nedx在发育后期表达,即在神经系统的所有主要结构建立之后。此外,BarH和Nedx在发育中的肢体的不同中胚层区域表达。

结论

将我们的表达数据与其他两侧对称动物的表达数据进行比较,发现在神经发育的各个方面,如由包括NK2.1和vax在内的保守分子机制介导的前神经分泌细胞的形成,以及涉及BarH和Emx的中枢和外周神经系统的发育中,NK2.1、vax、BarH和Emx具有相似的模式。NK2.2在神经发育中也有保守作用,这表明NKL基因可能在两侧对称动物或至少肾管动物(所有两侧对称动物不包括异无腔动物)的最后共同祖先中主要参与神经发育。目前,包括Bari、Hhex和Nedx在内的许多其余NKL基因缺乏比较数据,这阻碍了进一步的进化结论。因此,未来的研究应集中于这些基因在其他两侧对称动物中的表达,这将为比较研究提供基础,并可能有助于更好地理解NK基因在两侧对称动物多样化中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d772/6466738/edbe44fc2c0a/12861_2019_185_Fig1_HTML.jpg

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