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一种用于研究水螅模式形成的新型双侧嫁接技术。

A novel bilateral grafting technique for studying patterning in Hydra.

机构信息

Department of Bioengineering, University of California San Diego, La Jolla, CA, 92093, USA; Department of Biology, Swarthmore College, Swarthmore, PA, 19081, USA.

Department of Bioengineering, University of California San Diego, La Jolla, CA, 92093, USA; Department of Biology, Swarthmore College, Swarthmore, PA, 19081, USA; Department of Physics, University of California San Diego, La Jolla, CA, 92093, USA.

出版信息

Dev Biol. 2020 Jun 1;462(1):60-65. doi: 10.1016/j.ydbio.2020.03.006. Epub 2020 Mar 9.

Abstract

Control of patterning and the specification of body axes are fundamental aspects of animal development involving complex interactions between chemical, physical, and genetic signals. The freshwater polyp Hydra has long been recognized as a useful model system to address these questions due to its simple anatomy, optical transparency, and strong regenerative abilities, which enabled clever grafting experiments to alter and probe patterning. Reliable methods exist for the transplantation of small tissue pieces into the body column or the combination of sections cut perpendicular to the body axis, which can be used to examine oral-aboral gradients and axis induction potential of tissue fragments. However, existing methods do not allow researchers to probe questions of axis alignment and lateral information exchange. We therefore developed a technique to produce chimeric animals split longitudinally along the body axis of the animal by anesthetizing the animals with the terpene linalool and threading the donor pieces onto pairs of fine glass needles. Our novel approach can be applied to study questions in Hydra research that have thus far been inaccessible, including patterning processes acting perpendicular to the oral-aboral axis and the extent of lateral cell migration.

摘要

模式控制和体轴的特化是动物发育的基本方面,涉及化学、物理和遗传信号之间的复杂相互作用。淡水水螅一直被认为是一个有用的模型系统,可以用来解决这些问题,因为它的解剖结构简单、光学透明性强、再生能力强,这些特点使得巧妙的移植实验能够改变和探测模式。存在可靠的方法将小块组织移植到体柱中,或者将垂直于体轴切割的切片组合在一起,这些方法可用于研究口腔-肛门梯度和组织片段的轴诱导潜力。然而,现有的方法并不允许研究人员探究轴对齐和侧方信息交换的问题。因此,我们开发了一种技术,通过用萜烯里哪醇麻醉动物并用一对细玻璃针将供体片段穿在上面,沿着动物的体轴将动物纵向分割成嵌合体。我们的新方法可用于研究迄今为止难以触及的水螅研究中的问题,包括垂直于口腔-肛门轴的模式形成过程以及侧向细胞迁移的程度。

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