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一个曲折的故事:单个基因如何使蜗牛发生扭曲?机械遗传学。

A twisting story: how a single gene twists a snail? Mechanogenetics.

作者信息

Kuroda Reiko

机构信息

Institute for Science and Technology,Tokyo University of Science,Noda,Chiba 278-8510,Japan.

出版信息

Q Rev Biophys. 2015 Nov;48(4):445-52. doi: 10.1017/S0033583515000098.

Abstract

Left-right (l-r) symmetry breaking and the establishment of asymmetric animal body plan during embryonic development are fundamental questions in nature. The molecular basis of l-r symmetry breaking of snails is a fascinating topic as it is determined by a maternal single handedness-determining locus at a very early developmental stage. This perspective describes the current state of the art of the chiromorphogenesis, mainly based on our own work, i.e. the first step of l-r symmetry breaking, as proven by our "Mechanogenetics", before the start of zygotic gene expression, transfer of chirality information to the cell-fate determining stage, and the expression of nodal at the blastula stage. The Nodal signalling pathway is a common mechanism in vertebrates' chiromorphogenesis in later development. Studies on snails, especially Lymnaea (L.) stagnalis, shall give important insights into the molecular basis of chiromorphogenesis not only in Lophotrochozoa but in vertebrates as well.

摘要

左右(l-r)对称性破缺以及胚胎发育过程中不对称动物身体结构的建立是自然界中的基本问题。蜗牛左右对称性破缺的分子基础是一个引人入胜的话题,因为它在非常早期的发育阶段就由一个母体单手性决定基因座所决定。本视角描述了手性形态发生的当前技术水平,主要基于我们自己的工作,即在合子基因表达开始之前,通过我们的“机械遗传学”所证明的左右对称性破缺的第一步,手性信息传递到细胞命运决定阶段,以及囊胚期节点的表达。节点信号通路是脊椎动物后期发育中手性形态发生的常见机制。对蜗牛,特别是椎实螺(Lymnaea (L.) stagnalis)的研究,不仅将为冠轮动物门,也将为脊椎动物手性形态发生的分子基础提供重要见解。

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