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左右组织者流动力学:多少纤毛活动能可靠地产生左右侧化?

Left-right organizer flow dynamics: how much cilia activity reliably yields laterality?

机构信息

CEDOC, Faculdade de Ciências Médicas, Universidade Nova de Lisboa, 1169-056 Lisboa, Portugal.

Instituto Gulbenkian de Ciência, Rua da Quinta Grande 6, 2780-156 Oeiras, Portugal; Laboratorio Nacional de Microscopía Avanzada, Instituto de Biotecnología, Universidad Nacional Autónoma de México (UNAM), Cuernavaca, Morelos 62250, México.

出版信息

Dev Cell. 2014 Jun 23;29(6):716-28. doi: 10.1016/j.devcel.2014.04.030. Epub 2014 Jun 12.

Abstract

Internal organs are asymmetrically positioned inside the body. Embryonic motile cilia play an essential role in this process by generating a directional fluid flow inside the vertebrate left-right organizer. Detailed characterization of how fluid flow dynamics modulates laterality is lacking. We used zebrafish genetics to experimentally generate a range of flow dynamics. By following the development of each embryo, we show that fluid flow in the left-right organizer is asymmetric and provides a good predictor of organ laterality. This was tested in mosaic organizers composed of motile and immotile cilia generated by dnah7 knockdowns. In parallel, we used simulations of fluid dynamics to analyze our experimental data. These revealed that fluid flow generated by 30 or more cilia predicts 90% situs solitus, similar to experimental observations. We conclude that cilia number, dorsal anterior motile cilia clustering, and left flow are critical to situs solitus via robust asymmetric charon expression.

摘要

内脏器官在体内呈不对称排列。胚胎运动纤毛在这一过程中通过在脊椎动物左右组织者内产生定向的流体流动发挥着重要作用。然而,关于流体流动动力学如何调节左右侧性的详细特征尚不清楚。我们使用斑马鱼遗传学实验产生了一系列的流动动力学。通过跟踪每个胚胎的发育,我们表明左右组织者中的流体流动是不对称的,并能很好地预测器官的左右侧性。这在由 dnah7 敲低产生的运动和非运动纤毛组成的镶嵌组织者中进行了测试。同时,我们使用流体动力学模拟来分析我们的实验数据。这些模拟表明,30 个或更多纤毛产生的流体流动可以预测 90%的 situs solitus,与实验观察结果相似。我们的结论是,纤毛数量、背前运动纤毛聚集和左向流动对于通过稳健的不对称 charon 表达实现 situs solitus 是至关重要的。

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