外源DNA微注射对海鲷(Sparus aurata)早期发育反应的影响

S García-Pozo, J Béjar, M Shaw, M C Alvarez
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摘要

DNA转移技术允许对商业鱼类进行基因操作。然而,由于动物技术要求困难,海洋物种很少受到关注。海鲷(Sparus aurata)已成为地中海国家水产养殖中最重要的物种之一,开发合适的DNA转移程序是其遗传改良的主要步骤。为了评估海鲷对外源DNA的反应,将自然受精卵以超螺旋和线性形式注入质粒pCMV-CAT、pCMVTklacZ和pEGFP-N1。分析胚胎和幼虫在发育早期的存活、DNA命运和报告基因表达。结果表明,尽管条件不利,但显微注射是一种有效的转移方法。线性化质粒比超卷曲质粒聚合效率更高;然而,在它们的持久性和表达水平上没有发现显著差异。报告基因在囊胚中期转化后开始表达。不同启动子基因组合的瞬时表达持续时间不同,没有检测到转基因整合到鱼类染色体上。结果表明,影响DNA的持久性和表达的主要因素似乎与发育过程有关。在所使用的标记中,CAT被证明是最敏感的,但GFP比空间标记lacZ具有明显的方法学优势。绿色荧光蛋白对转基因诊断的有用性由于aurata的胚胎和幼虫的透明性而增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of exogenous DNA microinjection on early development response of the seabream (Sparus aurata).

DNA transfer techniques allow genetic manipulation of commercial fish. However, marine species have received little attention because of their difficult zootechnical requirements. The seabream (Sparus aurata) has become one of the most important species in the aquaculture of Mediterranean countries, and the development of suitable DNA transfer procedures represents a main step in its genetic improvement. To assess the response of the seabream to exogenous DNA, naturally fertilized eggs were injected with the plasmids pCMV-CAT, pCMVTklacZ, and pEGFP-N1, in supercoiled and linearized forms. Embryo and larval survival, DNA fate, and reporter gene expression were analyzed during early development. The survival results indicate that microinjection is an effective transfer method in spite of the unfavorable conditions. Linearized plasmids were more efficiently polymerized than supercoiled ones; however, no significant differences were detected either in their persistence or in their expression levels. Reporter gene expression was initiated after mid-blastula transition. The duration of transient expression varied between the promoter-gene combinations, and no integration of transgenes into fish chromosomes was detected. Results suggest that the main factor affecting the persistence and expression of DNA seems to be related to developmental processes. Among the markers used, CAT proved to be the most sensitive, but GFP had obvious methodologic advantages over the spatial marker lacZ. The usefulness of GFP for diagnosis of transgenesis is enhanced by the transparency of embryos and larvae in S. aurata.

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