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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Chemosensing versus mechanosensing in nodal and Kupffer's vesicle cilia and in other left-right organizer organs
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Chemosensing versus mechanosensing in nodal and Kupffer's vesicle cilia and in other left-right organizer organs

机译:Nodal和Kupffer的囊泡和其他左右组织者器官的化学溶解与机械囊

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How is sensing carried out by cilia in the mouse node, zebrafish Kupffer's vesicle and similar left-right (LR) organizer organs in other species? Two possibilities have been put forward. In the former, cilia would detect some chemical species in the fluid; in the latter, they would detect fluid flow. In either case, the hypothesis is that an imbalance would be detected between this signalling coming from cilia on the left and right sides of the organizer, which would initiate a cascade of signals leading ultimately to the breaking of LR symmetry in the developing body plan of the organism. We review the evidence for both hypotheses. This article is part of the Theo Murphy meeting issue 'Unity and diversity of cilia in locomotion and transport'.
机译:Cilia如何在鼠标节点中进行感应,斑马鱼kupffer的囊泡和类似的左右(LR)组织者器官在其他物种中? 已经提出了两种可能性。 在前一种前,纤毛将检测流体中的一些化学物质; 在后者,他们会发现流体流动。 在任何一种情况下,假设是在来自组织者的左侧和右侧的纤毛的该信号之间检测不平衡,这将引发最终导致的信号的级联信号在显影体策划中 生物体。 我们审查了两个假设的证据。 本文是Theo Murphy会议问题的一部分,在机动和运输中智利的慈善团结和多样性。

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