Molecular Phylogenetics, Department of Evolutionary Biology, Faculty of Life Sciences, University of Vienna, Althanstr. 14, 1090, Vienna, Austria.
Dev Genes Evol. 2009 Oct;219(9-10):523-30. doi: 10.1007/s00427-009-0308-6. Epub 2009 Dec 1.
Regulatory gene expression during the patterning of molluscan shells has only recently drawn the attention of scientists. We show that several Hox genes are expressed in association with the shell gland and the mantle in the marine vetigastropod Gibbula varia (L.). The expression of Gva-Hox1, Gva-Post2, and Gva-Post1 is initially detected in the trochophore larval stage in the area of the shell field during formation of embryonic shell. Later, during development, these genes are expressed in the mantle demonstrating their continuous role in larval shell formation and differentiation of mantle edge that secretes the adult shell. Gva-Hox4 is expressed only late during the development of the veliger-like larva and may also be involved in the adult shell morphogenesis. Additionally, this gene also seems to be associated with secretion of another extracellular structure, the operculum. Our data provide further support for association of Hox genes with shell formation which suggest that the molecular mechanisms underlying shell synthesis may consist of numerous conserved pattern-formation genes. In cephalopods, the only other molluscan class in which Hox gene expression has been studied, no involvement of Hox genes in shell formation has been reported. Thus, our results suggest that Hox genes are coopted to various functions in molluscs.
调控基因在软体动物贝壳模式形成过程中的表达最近才引起了科学家的关注。我们表明,几种 Hox 基因在海洋腹足纲生物 Gibbula varia(L.)的贝壳腺和套膜中与贝壳相关联表达。Gva-Hox1、Gva-Post2 和 Gva-Post1 的表达最初在胚胎贝壳形成过程中贝壳场的担轮幼虫阶段检测到。后来,在发育过程中,这些基因在套膜中表达,证明它们在幼虫贝壳形成和分泌成体贝壳的套膜边缘分化中具有持续作用。Gva-Hox4 仅在 veliger 样幼虫的发育后期表达,也可能参与成体贝壳形态发生。此外,该基因似乎还与另一种细胞外结构——瓣鳃的分泌有关。我们的数据进一步支持 Hox 基因与贝壳形成的关联,表明贝壳合成的分子机制可能包含许多保守的形态发生基因。在头足类动物中,这是唯一研究过 Hox 基因表达的软体动物类群,尚未报道 Hox 基因参与贝壳形成。因此,我们的结果表明 Hox 基因在软体动物中被重新用于各种功能。