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Pax-Six-Eya-Dach 网络的进化:钙纤毛海绵案例研究。

Evolution of the Pax-Six-Eya-Dach network: the calcisponge case study.

机构信息

Sars International Centre for Marine Molecular Biology, University of Bergen, Thormøhlensgt. 55, Bergen 5008, Norway ; Department of Biology, University of Bergen, Thormøhlensgt. 55, Bergen 5008, Norway.

Sars International Centre for Marine Molecular Biology, University of Bergen, Thormøhlensgt. 55, Bergen 5008, Norway ; Current address: Institute of Marine Research, Nordnesgaten 50, Bergen 5005, Norway.

出版信息

Evodevo. 2014 Jun 23;5:23. doi: 10.1186/2041-9139-5-23. eCollection 2014.

Abstract

BACKGROUND

The Pax-Six-Eya-Dach network (PSEDN) is involved in a variety of developmental processes, including well documented roles in determination of sensory organs and morphogenesis in bilaterian animals. Expression of PSEDN components in cnidarians is consistent with function in sensory organ development. Recent work in demosponges demonstrated the presence of single homologs of Pax and Six genes, and their possible involvement in morphogenesis, but the absence of the remaining network components. Calcisponges are evolutionarily distant from demosponges, and the developmental toolkits of these two lineages differ significantly. We used an emerging model system, Sycon ciliatum, to identify components of the PSEDN and study their expression during embryonic and postembryonic development.

RESULTS

We identified two Pax, three Six and one Eya genes in calcisponges, a situation strikingly different than in the previously studied demosponges. One of the calcisponge Pax genes can be identified as PaxB, while the second Pax gene has no clear affiliation. The three calcisponge Six genes could not be confidently classified within any known family of Six genes. Expression analysis in adult S. ciliatum demonstrated that representatives of Pax, Six and Eya are expressed in patterns consistent with roles in morphogenesis of the choanocyte chambers. Distinct paralogues of Pax and Six genes were expressed early in the development of the putative larval sensory cells, the cruciform cells. While lack of known photo pigments in calcisponge genomes precludes formal assignment of function to the cruciform cells, we also show that they express additional eumetazoan genes involved in specification of sensory and neuronal cells: Elav and Msi.

CONCLUSIONS

Our results indicate that the role of a Pax-Six-Eya network in morphogenesis likely predates the animal divergence. In addition, Pax and Six, as well as Elav and Msi are expressed during differentiation of cruciform cells, which are good candidates for being sensory cells of the calcaronean sponge larvae.

摘要

背景

Pax-Six-Eya-Dach 网络(PSEDN)参与了多种发育过程,包括在两侧动物中确定感觉器官和形态发生的有充分文献记录的作用。在刺胞动物中 PSEDN 成分的表达与感觉器官发育的功能一致。最近在弥散海绵中进行的工作表明存在 Pax 和 Six 基因的单个同源物,并且它们可能参与形态发生,但缺乏其余网络成分。钙海绵与弥散海绵在进化上相距甚远,这两个谱系的发育工具包有很大的不同。我们使用新兴的模式系统 Sycon ciliatum 来鉴定 PSEDN 的成分,并研究它们在胚胎和胚胎后发育过程中的表达。

结果

我们在钙海绵中鉴定了两个 Pax、三个 Six 和一个 Eya 基因,这种情况与之前研究的弥散海绵明显不同。钙海绵中的一个 Pax 基因可以被鉴定为 PaxB,而第二个 Pax 基因没有明确的归属。三个钙海绵 Six 基因不能在任何已知的 Six 基因家族中被明确分类。在成年 S. ciliatum 中的表达分析表明,Pax、Six 和 Eya 的代表在形态发生模式中表达一致,这些模式与纤毛室的形态发生有关。Pax 和 Six 基因的不同同源物在假定的幼虫感觉细胞十字形细胞的早期发育中表达。虽然钙海绵基因组中缺乏已知的光色素使得无法正式分配功能给十字形细胞,但我们还表明它们表达了参与感觉和神经元细胞特化的其他后生动物基因:Elav 和 Msi。

结论

我们的结果表明,Pax-Six-Eya 网络在形态发生中的作用可能早于动物分歧。此外,Pax 和 Six 以及 Elav 和 Msi 在十字形细胞的分化过程中表达,十字形细胞是钙钙海绵幼虫感觉细胞的良好候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6441/4083861/d153a981dbf9/2041-9139-5-23-1.jpg

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