Development and migration of the C. elegans Q neuroblasts and their descendants.

Teije C Middelkoop, Hendrik C Korswagen
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引用次数: 39

Abstract

During the first stage of larval development, the Q neuroblasts and their descendants migrate to well-defined positions along the anteroposterior body axis, where they differentiate into sensory neurons and interneurons. The two Q neuroblasts are initially present at similar positions on the left and right lateral side, but this symmetry is broken when the Q neuroblast on the left side (QL) polarizes towards the posterior and the Q neuroblast on the right side (QR) towards the anterior. This left-right asymmetry is maintained when the descendants of the two Q neuroblasts migrate to their final positions in the posterior and anterior. The mechanisms that establish this asymmetry and control the migration of the Q descendants along the anteroposterior axis are surprisingly complex and include interplay between Wnt signaling pathways, homeotic genes, and the basic cell migration and polarity machinery. Here, we will give an overview of what is currently known about the mechanisms that mediate and control the development and migration of the Q neuroblasts and their descendants.

秀丽隐杆线虫Q型神经母细胞及其后代的发育和迁移。
在幼虫发育的第一阶段,Q神经母细胞及其后代沿着身体的前后轴迁移到明确的位置,在那里它们分化为感觉神经元和中间神经元。两个Q神经母细胞最初出现在左右侧的相似位置,但当左侧的Q神经母细胞(QL)向后极化而右侧的Q神经母细胞(QR)向前极化时,这种对称性被打破。当两个Q神经母细胞的后代迁移到其后部和前部的最终位置时,这种左右不对称保持不变。建立这种不对称性和控制Q后代沿前后轴迁移的机制非常复杂,包括Wnt信号通路、同质基因、基本细胞迁移和极性机制之间的相互作用。在这里,我们将概述目前已知的介导和控制Q神经母细胞及其后代的发育和迁移的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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