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两种远缘海胆,粒瘤雕海胆和心形海胆间质细胞分化基因的表达模式。

Expession patterns of mesenchyme specification genes in two distantly related echinoids, Glyptocidaris crenularis and Echinocardium cordatum.

作者信息

Yamazaki Atsuko, Minokawa Takuya

机构信息

Research Center for Marine Biology, Graduate School of Life Sciences, Tohoku University, 9 Sakamoto, Asamushi, Aomori, Aomori 039-3501, Japan.

Research Center for Marine Biology, Graduate School of Life Sciences, Tohoku University, 9 Sakamoto, Asamushi, Aomori, Aomori 039-3501, Japan.

出版信息

Gene Expr Patterns. 2015 Mar;17(2):87-97. doi: 10.1016/j.gep.2015.03.003. Epub 2015 Mar 21.

Abstract

The molecular mechanism of the larval mesenchyme cell specification in echinoids has been well analyzed. However, most of the data have been provided by studies of a single group of echinoids, the order Camarodonta. Little is known about this mechanism in other echinoid orders. We examined the expression patterns of mesenchyme specification genes, micro1, hesC, alx1, tbr, ets1, cyp1, and gcm, in the two non-Camarodonta echinoids, Glyptocidaris crenularis and Echinocardium cordatum. We found that the expression patterns of some genes contained characteristics that were unique to one of the species; others were shared by the two species. Some of the shared characteristics of G. crenularis and E. cordatum are not found in the species belonging to Camarodonta, suggesting the derived status of this order. The expression of ets1 in E. cordatum aboral ectoderm is one of the molecular level modifications possibly related to an evolutionarily novel larval structure, the posterior process. Our results suggest that a considerable number of modifications in the mesenchyme specification mechanisms have been introduced during the echinoid evolution.

摘要

海胆类幼虫间充质细胞特化的分子机制已得到充分分析。然而,大多数数据是由对单一组海胆类动物——拱齿目动物的研究提供的。对于其他海胆类目动物的这种机制知之甚少。我们研究了间充质特化基因micro1、hesC、alx1、tbr、ets1、cyp1和gcm在两种非拱齿目海胆类动物——粒疣雕海胆和心形海胆中的表达模式。我们发现,一些基因的表达模式包含了其中一个物种特有的特征;其他特征则为两个物种所共有。粒疣雕海胆和心形海胆的一些共有特征在拱齿目物种中未被发现,这表明该目的衍生状态。ets1在心形海胆口外胚层中的表达是一种可能与进化上新出现的幼虫结构——后突相关的分子水平修饰。我们的结果表明,在海胆类动物的进化过程中,间充质特化机制引入了大量修饰。

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