转基因动物技术及其应用综述。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
W M E Shakweer, A Y Krivoruchko, Sh M Dessouki, A A Khattab
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引用次数: 0

摘要

如今,分子生物学正以前所未有的速度取得突破。其中之一就是改造转基因动物的能力。转基因动物是指其基因组被改变以携带其他物种的基因或使用动物基因组编辑技术以获得特定性状的动物。动物的特征可以通过有目的地改变基因来改变。老鼠是第一个成功的转基因动物。几年后,猪、羊、牛和兔子又来了。国外感兴趣的用于动物转基因技术的基因是用多种方法制备的。将产生的感兴趣的基因放入各种载体中,包括酵母人工染色体、细菌质粒和粒。包括热休克、电穿孔、病毒、基因枪、显微注射和脂质体在内的几种技术被用来将包含感兴趣的基因的载体传递到宿主细胞中。转基因可以通过DNA显微注射、逆转录病毒、干细胞和克隆在性腺、精子、受精卵和胚胎中进行。目前最有效的转基因标记是荧光蛋白。虽然转基因引起了一些伦理问题,但本文主要介绍动物转基因的基本原理及其在工业、医学和农业中的应用。通过整合抗生素抗性基因、western和southern blots、PCR和ELISA,证实了转基因的成功。如果技术能解决社会和伦理问题,它将是未来最有前途的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review of transgenic animal techniques and their applications.

A review of transgenic animal techniques and their applications.

A review of transgenic animal techniques and their applications.

A review of transgenic animal techniques and their applications.

Nowadays, breakthroughs in molecular biology are happening at an unprecedented rate. One of them is the ability to engineer transgenic animals. A transgenic animal is one whose genome has been changed to carry genes from another species or to use techniques for animal genome editing for specific traits. Animal features can be changed by purposefully altering the gene (or genes). A mouse was the first successful transgenic animal. Then pigs, sheep, cattle, and rabbits came a few years later. The foreign-interested genes that will be used in animal transgenic techniques are prepared using a variety of methods. The produced gene of interest is placed into a variety of vectors, including yeast artificial chromosomes, bacterial plasmids, and cosmids. Several techniques, including heat shock, electroporation, viruses, the gene gun, microinjection, and liposomes, are used to deliver the created vector, which includes the interesting gene, into the host cell. Transgenesis can be carried out in the gonads, sperm, fertilized eggs, and embryos through DNA microinjection, retroviruses, stem cells, and cloning. The most effective transgenic marker at the moment is fluorescent protein. Although transgenesis raises a number of ethical concerns, this review concentrates on the fundamentals of animal transgenesis and its usage in industry, medicine, and agriculture. Transgenesis success is confirmed by the integration of an antibiotic resistance gene, western and southern blots, PCR, and ELISA. If technology solves social and ethical problems, it will be the most promising in the future.

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