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《海鞘微注射实用指南:有柄海鞘》。

Practical Guide for Ascidian Microinjection: Phallusia mammillata.

机构信息

Sorbonne Universités, UPMC Univ Paris 06, CNRS, Laboratoire de Biologie du Développement de Villefranche-sur-mer, Observatoire Océanologique, Villefranche-sur-mer, France.

出版信息

Adv Exp Med Biol. 2018;1029:15-24. doi: 10.1007/978-981-10-7545-2_3.

Abstract

Phallusia mammillata has recently emerged as a new ascidian model. Its unique characteristics, including the optical transparency of eggs and embryos and efficient translation of exogenously introduced mRNA in eggs, make the Phallusia system suitable for fluorescent protein (FP)-based imaging approaches. In addition, genomic and transcriptomic resources are readily available for this ascidian species, facilitating functional gene studies. Microinjection is probably the most versatile technique for introducing exogenous molecules such as plasmids, mRNAs, and proteins into ascidian eggs/embryos. However, it is not practiced widely within the community; presumably, because the system is rather laborious to set up and it requires practice. Here, we describe in as much detail as possible two microinjection methods that we use daily in the laboratory: one based on an inverted microscope and the other on a stereomicroscope. Along the stepwise description of system setup and injection procedure, we provide practical tips in the hope that this chapter might be a useful guide for introducing or improving a microinjection setup.

摘要

Phallusia mammillata 最近成为一种新的尾索动物模式生物。其独特的特性,包括卵和胚胎的光学透明度以及卵中外源 mRNA 的高效翻译,使得 Phallusia 系统适合基于荧光蛋白 (FP) 的成像方法。此外,该尾索动物物种具有丰富的基因组和转录组资源,有利于功能基因研究。显微注射可能是将质粒、mRNA 和蛋白质等外源分子引入尾索动物卵/胚胎的最通用技术。然而,该技术在该领域并未广泛应用;大概是因为该系统建立起来比较繁琐,需要多加练习。在这里,我们尽可能详细地描述了我们实验室日常使用的两种显微注射方法:一种基于倒置显微镜,另一种基于立体显微镜。在逐步描述系统设置和注射程序的过程中,我们提供了实用技巧,希望本章能为引入或改进显微注射设置提供有用的指导。

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