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直接发育的海胆红斑海胆(Heliocidaris erythrogramma)中msp130基因在时间、空间表达及mRNA加工方面的进化变化机制。

Mechanisms of evolutionary changes in timing, spatial expression, and mRNA processing in the msp130 gene in a direct-developing sea urchin, Heliocidaris erythrogramma.

作者信息

Klueg K M, Harkey M A, Raff R A

机构信息

Department of Biology, Indiana University, Bloomington 47405, USA.

出版信息

Dev Biol. 1997 Feb 1;182(1):121-33. doi: 10.1006/dbio.1996.8431.

Abstract

Developmental processes associated with skeletogenesis differ in the direct-developing sea urchin Heliocidaris erythrogramma from that in Heliocidaris tuberculata and other indirect-developing species. In H. erythrogramma, the differences include ingression of a much higher number of mesenchyme cells, failure of the cells to form the typical ring pattern of cells prior to the onset of skeletogenesis, a significantly reduced larval skeleton, and a delay in timing of expression of the skeletogenic cell-restricted gene msp130. We report that the heterochronic change in msp130 expression is regulated at the level of transcription. By transient expression of reporter constructs containing msp130 promoter regions from direct- and indirect-developing species, we found that this evolutionary change in regulation is consistent with changes in the timing of action of trans-acting factors in skeletogenic mesenchyme cells. We further used these experiments to show that the H. erythrogramma promoter contains elements required for correct spatial expression in the primary mesenchyme cells of an indirect-developing host. We finally show that alternate processing of H. erythrogramma msp130 is thus far specific to this species and not an aspect of adult skeletogenesis.

摘要

与骨骼发生相关的发育过程在直接发育的海胆红斑海胆(Heliocidaris erythrogramma)中与在瘤海胆(Heliocidaris tuberculata)及其他间接发育物种中有所不同。在红斑海胆中,差异包括更多数量的间充质细胞内陷、在骨骼发生开始之前细胞未能形成典型的细胞环状模式、幼虫骨骼显著减少以及骨骼发生细胞限制性基因msp130表达时间延迟。我们报告称,msp130表达中的异时性变化在转录水平受到调控。通过瞬时表达包含直接发育和间接发育物种msp130启动子区域的报告构建体,我们发现这种调控上的进化变化与骨骼发生间充质细胞中转录因子作用时间的变化一致。我们进一步利用这些实验表明,红斑海胆启动子包含在间接发育宿主的初级间充质细胞中正确空间表达所需的元件。我们最终表明,红斑海胆msp130的交替加工迄今为止是该物种特有的,并非成年骨骼发生的一个方面。

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