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比目鱼左眼侧化与左侧缰核中变形 pitx2 表达相关。

Metamorphic pitx2 expression in the left habenula correlated with lateralization of eye-sidedness in flounder.

机构信息

Laboratory of Bioindustrial Informatics, Graduate School of Agricultural Science, Tohoku University, Sendai, Japan.

出版信息

Dev Growth Differ. 2009 Dec;51(9):797-808. doi: 10.1111/j.1440-169X.2009.01139.x. Epub 2009 Oct 15.

Abstract

The bilateral symmetry of flounder larvae changes through the process of morphogenesis to produce external asymmetry at metamorphosis. The process is characterized by the lateral migration of one eye and pigmentation at the ocular side. Migration of the left or right eye to produce either dextral or sinistral forms, respectively, is usually fixed within a species. Here we propose a mechanism for the mediation of lateralization by the nodal-lefty-pitx2 (NLP) pathway in flounders, in which pitx2, the final left-right determinant of the NLP pathway, is re-expressed in the left habenula at pre-metamorphosis. After the initiation of left-sided pitx2 re-expression, the eye commences migration, when the habenulae shift their position on the ventral diencephalon rightwards in sinistral flounder (Paralichthys olivaceus) and leftwards in dextral flounder (Verasper variegatus). In addition, the right habenula increases in size relative to the left habenula in both species. Loss of pitx2 re-expression induces randomization of eye-sidedness, manifesting as normal, reversed or bilateral symmetry, with laterality of the structural asymmetry of habenulae being entirely inverted in reversed flounders compared with normal ones. Thus, flounder pitx2 appears to be re-expressed in the left habenula at metamorphosis to direct eye-sidedness by lateralizing the morphological asymmetry of the habenulae.

摘要

比目鱼幼体的双侧对称性通过形态发生过程发生变化,在变态期产生外部不对称性。这个过程的特征是一只眼睛的侧向迁移和眼部的色素沉着。左眼或右眼的迁移分别产生右旋或左旋形式,通常在一个物种内是固定的。在这里,我们提出了一个比目鱼中由节点-lefty-pitx2(NLP)途径介导的偏侧化机制,其中 pitx2 是 NLP 途径的最终左右决定因素,在变态前重新表达在左侧缰核中。在开始重新表达左侧 pitx2 之后,眼睛开始迁移,此时缰核在左侧比目鱼(Paralichthys olivaceus)中在腹侧间脑向右移位,在右旋比目鱼(Verasper variegatus)中向左移位。此外,在这两个物种中,右侧缰核相对于左侧缰核增大。pitx2 重新表达的缺失会导致眼睛偏向的随机化,表现为正常、反转或双侧对称性,与正常比目鱼相比,反转比目鱼中缰核结构不对称的偏侧性完全颠倒。因此,比目鱼 pitx2 似乎在变态期重新表达在左侧缰核中,通过偏侧化缰核的形态不对称性来指导眼睛偏向性。

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