不对称纤毛器官的显著特征。

Bioarchitecture Pub Date : 2014-01-01 Epub Date: 2014-01-31 DOI:10.4161/bioa.28014
Jeffrey D Amack
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引用次数: 24

摘要

许多内部器官都发育了不同的左右两侧,这对它们的功能至关重要。在一些脊椎动物胚胎中,运动纤毛产生不对称的流体流动,在建立左右(LR)信号级联中起重要作用。这些“LR纤毛”存在于哺乳动物的腹结和脊索后板、两栖动物的胃顶板和硬骨鱼的库普弗氏囊中。我认为这些短暂的纤毛结构是“不对称器官”,指导发育中的胚胎的LR模式。在不同的脊椎动物物种中,不对称器官的大小和形态的变化提出了关于LR测定所需的基本特征的问题。在这里,我回顾了目前关于脊椎动物LR不对称如何建立的模型,讨论了不对称纤毛器官的细胞结构,然后提出了该器官的关键特征,这些特征对LR体轴的定向至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Salient features of the ciliated organ of asymmetry.

Salient features of the ciliated organ of asymmetry.

Salient features of the ciliated organ of asymmetry.

Many internal organs develop distinct left and right sides that are essential for their functions. In several vertebrate embryos, motile cilia generate an asymmetric fluid flow that plays an important role in establishing left-right (LR) signaling cascades. These 'LR cilia' are found in the ventral node and posterior notochordal plate in mammals, the gastrocoel roof plate in amphibians and Kupffer's vesicle in teleost fish. I consider these transient ciliated structures as the 'organ of asymmetry' that directs LR patterning of the developing embryo. Variations in size and morphology of the organ of asymmetry in different vertebrate species have raised questions regarding the fundamental features that are required for LR determination. Here, I review current models for how LR asymmetry is established in vertebrates, discuss the cellular architecture of the ciliated organ of asymmetry and then propose key features of this organ that are critical for orienting the LR body axis.

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