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扁形动物 Gtsix3,Six/so 基因家族的一员,在脑分支中表达,但不在眼细胞中表达。

Planarian Gtsix3, a member of the Six/so gene family, is expressed in brain branches but not in eye cells.

机构信息

Departament de Genètica, Facultat de Biologia, Universitat de Barcelona, Diagonal 645, E-08071 Barcelona, Spain.

出版信息

Mech Dev. 2002 Dec;119 Suppl 1:S167-71. doi: 10.1016/s0925-4773(03)00111-4.

Abstract

Six/sine oculis (Six/so) class genes, with representatives in vertebrates and invertebrates, include members with key developmental roles in the anterior part of the central nervous system (CNS) and eye. Having characterized the role of the first planarian gene of the Six/so family in eye development, we attempted to identify novel genes of this family related to the platyhelminth eye genetic network. We isolated a new Six/so gene in the planarian Girardia tigrina, Gtsix-3, which belongs to the Six3/6 class. Whole mount in situ hybridization revealed Gtsix3 expression in a stripe surrounding the cephalic ganglia in adults. This spatial pattern corresponds to the cephalic branches, the nerve cells that connect the CNS with the marginal sensory organs located continuously at the edge of the head. During head regeneration, Gtsix-3 shows delayed activation compared to other head genes, with an initial two spot pattern that later evolves to a continuous lateral expression in the new regenerated cephalic ganglia with a final reduction to the adult pattern. However, Gtsix-3 is not activated in tail regeneration and no eye expression is observed at any regenerative stage. These findings provide a new marker for the developing anterior nervous system and evidence the complexity of planarian brain.

摘要

六眼(Six/sine oculis,Six/so)类基因,在脊椎动物和无脊椎动物中均有代表,包括在中枢神经系统(CNS)和眼睛的前部具有关键发育作用的成员。我们已经描述了第一个扁形动物 Six/so 家族基因在眼睛发育中的作用,我们试图鉴定与扁形动物眼睛遗传网络相关的该家族的新基因。我们在扁形动物 G.tigrina 中分离出了一个新的 Six/so 基因 Gtsix-3,它属于 Six3/6 类。整体原位杂交显示 Gtsix3 在成年头神经节周围的条纹中表达。这种空间模式与头部分支相对应,头部分支是将 CNS 与位于头部边缘连续的边缘感觉器官连接的神经细胞。在头部再生过程中,Gtsix-3 的激活比其他头部基因延迟,最初呈现两个点状模式,随后在新再生的头神经节中连续侧向表达,最终减少到成年模式。然而,Gtsix-3 不会在尾部再生中激活,在任何再生阶段都不会观察到眼睛表达。这些发现为发育中的前神经系统提供了一个新的标志物,并证明了扁形动物大脑的复杂性。

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