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作为实验室水母的半海月水母的过去、现在与未来

Past, present and future of Clytia hemisphaerica as a laboratory jellyfish.

作者信息

Houliston Evelyn, Leclère Lucas, Munro Catriona, Copley Richard R, Momose Tsuyoshi

机构信息

Sorbonne Université, CNRS, Laboratoire de Biologie du Développement de Villefranche-sur-mer (LBDV), France.

Sorbonne Université, CNRS, Laboratoire de Biologie du Développement de Villefranche-sur-mer (LBDV), France.

出版信息

Curr Top Dev Biol. 2022;147:121-151. doi: 10.1016/bs.ctdb.2021.12.014. Epub 2022 Feb 28.

Abstract

The hydrozoan species Clytia hemisphaerica was selected in the mid-2000s to address the cellular and molecular basis of body axis specification in a cnidarian, providing a reliable daily source of gametes and building on a rich foundation of experimental embryology. The many practical advantages of this species include genetic uniformity of laboratory jellyfish, derived clonally from easily-propagated polyp colonies. Phylogenetic distance from other laboratory models adds value in providing an evolutionary perspective on many biological questions. Here we outline the current state of the art regarding available experimental approaches and in silico resources, and illustrate the contributions of Clytia to understanding embryo patterning mechanisms, oogenesis and regeneration. Looking forward, the recent establishment of transgenesis methods is now allowing gene function and imaging studies at adult stages, making Clytia particularly attractive for whole organism biology studies across fields and extending its scientific impact far beyond the original question of interest.

摘要

21世纪中期,水螅虫纲物种半球美螅水母被选用于研究刺胞动物体轴特化的细胞和分子基础,它能每日稳定提供配子,且有着丰富的实验胚胎学基础。该物种的诸多实用优势包括实验室水母的基因一致性,这些水母通过易于繁殖的水螅体群落克隆而来。与其他实验室模型的系统发育距离,为从进化角度研究诸多生物学问题增添了价值。在此,我们概述了现有实验方法和计算机资源的当前技术水平,并阐述了半球美螅水母在理解胚胎模式形成机制、卵子发生和再生方面所做的贡献。展望未来,转基因方法的近期建立使得在成体阶段进行基因功能和成像研究成为可能,这使得半球美螅水母在跨领域的全生物体生物学研究中极具吸引力,并将其科学影响扩展到远远超出最初感兴趣的问题。

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