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果蝇的心脏发育需要节段极性基因无翅。

Heart development in Drosophila requires the segment polarity gene wingless.

作者信息

Wu X, Golden K, Bodmer R

机构信息

Department of Biology, University of Michigan, Ann Arbor 48109-1048, USA.

出版信息

Dev Biol. 1995 Jun;169(2):619-28. doi: 10.1006/dbio.1995.1174.

Abstract

Mesoderm induction has been studied in many systems and some of the factors involved have been identified. Although the heart is mesodermal in origin, the molecular basis of heart development is essentially unknown. The Drosophila heart is a simple tubular structure similar to the early heart tube in vertebrates. The homeobox gene, tinman, has been shown to be crucial for heart formation in Drosophila. Several genes with considerable sequence similarities to tinman are expressed in cardiac primordial tissue of vertebrates and are likely to be required for heart development of higher organisms as well. In addition to transcriptional control factors, heart development might also depend on inductive signals. Here, we demonstrate that the gene wingless (wg), which is known to specify segmental polarity and neuroblast identity in Drosophila, has a novel role in mesoderm development: wg function is specifically required for heart development. A temperature-sensitive mutation of wg was used to inactivate wg function during precise developmental time periods. Elimination of wg function for a short time period after gastrulation results in the selective loss of heart precursors, without significantly affecting the formation of the body wall or visceral muscles, although some pattern defects are observed. This developmental requirement of wg for cardiac organogenesis is distinct from its function in segmentation and neurogenesis. We conclude that wg signaling is a crucial component of heart formation.

摘要

中胚层诱导已在许多系统中得到研究,并且一些相关因素已被确定。尽管心脏起源于中胚层,但其发育的分子基础基本上仍不清楚。果蝇的心脏是一个简单的管状结构,类似于脊椎动物早期的心脏管。同源异型框基因tinman已被证明对果蝇心脏形成至关重要。在脊椎动物的心脏原基组织中表达了几个与tinman具有相当序列相似性的基因,它们可能对高等生物的心脏发育也必不可少。除了转录控制因子外,心脏发育可能还依赖于诱导信号。在此,我们证明,已知在果蝇中确定节段极性和成神经细胞身份的无翅基因(wg)在中胚层发育中具有新的作用:wg功能是心脏发育所特需的。利用wg的一个温度敏感突变在精确的发育时间段内使wg功能失活。原肠胚形成后短时间内消除wg功能会导致心脏前体选择性缺失,而不会显著影响体壁或内脏肌肉的形成,尽管观察到一些模式缺陷。wg对心脏器官发生的这种发育需求不同于其在分割和神经发生中的功能。我们得出结论,wg信号传导是心脏形成的关键组成部分。

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