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在保守的软体动物发育程序中揭示了dpp在双壳类贝壳形成中的新作用。

A novel role for dpp in the shaping of bivalve shells revealed in a conserved molluscan developmental program.

作者信息

Kin Koryu, Kakoi Shota, Wada Hiroshi

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.

出版信息

Dev Biol. 2009 May 1;329(1):152-66. doi: 10.1016/j.ydbio.2009.01.021.

Abstract

During the molluscan evolution leading to the bivalves, the single dorsal shell was doubled. To elucidate the molecular developmental basis underlying this prominent morphological transition, we described the cell cleavage and expression patterns of three genes, brachyury, engrailed, and dpp in the Japanese spiny oyster Saccostrea kegaki, and examined the function of dpp in this species. The cleavage pattern of the S. kegaki embryo was nearly the same as the previously described pattern of other bivalve species, suggesting that the pattern itself is highly important for the establishment or the maintenance of the bivalve body plan. The expression pattern of a brachyury homolog in S. kegaki (SkBra) was similar to the pattern in gastopods even at the single cell level despite the deep divergence of gastropods and bivalves. Engrailed and dpp were previously found to be expressed around the shell anlagen in gastropods. Like that of gastropods, an engrailed homolog in S. kegaki (SkEn) was found to be expressed around the shell anlagen. However, the dpp homologin S. kegaki (SkDpp) was expressed only in the cells along the dorsal midline. ZfBMP4 treatment experiments revealed the importance of dpp in establishing the characteristic shape of the bivalve shell anlagen.

摘要

在导致双壳类动物的软体动物进化过程中,单一的背壳加倍了。为了阐明这一显著形态转变背后的分子发育基础,我们描述了日本刺牡蛎(Saccostrea kegaki)中三个基因(短尾相关蛋白、 engrailed和dpp)的细胞分裂和表达模式,并研究了dpp在该物种中的功能。日本刺牡蛎胚胎的分裂模式与先前描述的其他双壳类物种的模式几乎相同,这表明该模式本身对于双壳类动物身体结构的建立或维持非常重要。尽管腹足纲动物和双壳类动物在进化上差异很大,但日本刺牡蛎(SkBra)中短尾相关蛋白同源物的表达模式即使在单细胞水平上也与腹足纲动物中的模式相似。先前发现engrailed和dpp在腹足纲动物的壳原基周围表达。与腹足纲动物一样,日本刺牡蛎(SkEn)中的engrailed同源物也在壳原基周围表达。然而,日本刺牡蛎(SkDpp)中的dpp同源物仅在背中线沿线的细胞中表达。ZfBMP4处理实验揭示了dpp在建立双壳类动物壳原基特征形状方面的重要性。

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