Brown Charmaine Y, Eom Dae Seok, Amarnath Smita, Agarwala Seema
Institute for Cellular and Molecular Biology, University of Texas at Austin, 78712, USA.
Cold Spring Harb Protoc. 2012 Aug 1;2012(8):pdb.prot069708. doi: 10.1101/pdb.prot069708.
In ovo electroporation of chick embryos at ages ≥ E2 is simple to conduct and widely used to manipulate gene function. However, in ovo electroporation at early E1 stages has so far been unsuccessful because of unacceptable levels of tissue damage and embryonic lethality. Early E1 manipulations in the chick have therefore relied on in vitro electroporation, posing problems for morphogenetic studies in which the long-term preservation (>24 h) of three-dimensional tissue organization is critical. This article describes a simple technique for in vivo electroporation of E1 embryos as young as Hamburger-Hamilton stage 4 (HH4). It uses thin microelectrodes and low voltages, which permit precise localization of gene misexpression while causing minimal tissue damage and embryonic lethality. Critically, it does not depend on the presence of a lumen for DNA injections and can easily be adapted for a wide variety of tissues.
对≥E2龄的鸡胚进行卵内电穿孔操作简便,被广泛用于操纵基因功能。然而,由于组织损伤和胚胎致死率过高,迄今为止在E1早期阶段进行卵内电穿孔尚未成功。因此,鸡胚E1早期操作依赖于体外电穿孔,这给形态发生学研究带来了问题,因为在形态发生学研究中,三维组织结构的长期保存(>24小时)至关重要。本文描述了一种对早至汉密尔顿-汉堡第4期(HH4)的E1胚胎进行体内电穿孔的简单技术。它使用细微电极和低电压,既能精确地定位基因错误表达,又能使组织损伤和胚胎致死率降至最低。至关重要的是,它不依赖于用于DNA注射的管腔的存在,并且可以很容易地适用于多种组织。