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1.
外源基因在转基因动物中遗传和表达的稳定性   总被引:2,自引:0,他引:2  
Kong QR  Liu ZH 《遗传》2011,33(5):504-511
转基因技术经过近半个世纪的发展,已成为当今生物技术研究的热点。近10多年来,与核移植技术的结合,转基因效率大大提高,携带有不同外源基因的不同种类的转基因动物迅速增加。但是,成功获得转基因动物并不是转基因动物研究的最终目的,如何利用转基因技术为人类的需求服务才是科研人员始终面对的课题。在畜牧生产领域,通过转基因技术培育家畜新品种是转基因技术应用的重要体现,在我国这方面已经引起了广泛关注。但迄今为止,外源基因在转基因动物中遗传和表达的稳定性仍然是亟待解决的问题,究其原因,这主要与位置效应、外源基因的表观遗传学修饰和遗传效率相关,文章结合目前的研究进展和本实验室的研究结果,从这3方面阐述其作用机制,期望为转基因动物遗传育种向产业化的迈进提供一定的理论探讨。  相似文献   

2.
转基因动物在输血医学中的应用   总被引:2,自引:0,他引:2  
转基因动物技术是在动物整体水平研究和表达目的基因的生物技术,其基本特点是:分子及细胞水平操作,组织及整体水平表达,是常规分子生物学理论和技术的拓展和延伸,也是现代生物高技术研究和开发的热点之一。本简述了转基因动物在输血医学领域的应用及其发展前景,包括利用转基因动物生物反应器制备人血浆蛋白和人血红蛋白、建立血传播病毒的感染模型和血液相关遗传模型以及转基因动物与输血医学的基础研究等。  相似文献   

3.
转基因动物新技术研究进展   总被引:3,自引:0,他引:3  
Luo QM  Miao XY  Zhang RJ 《遗传》2011,33(5):449-458
转基因技术经过数十年的发展日渐成熟,并推动转基因技术研究进入一个新的发展阶段。文章综述了体细胞核移植技术、慢病毒载体法、转座子介导的基因转移法、RNA干扰介导的基因敲除法和锌指核酸酶-基因打靶技术等近年发展起来的方法。而近来诱导多能干细胞(iPS细胞)的成功为尚未获得ES细胞的大动物建立多能干细胞系提供了一种新的方案,为转基因动物研究开创一片更广阔的天地。文章在前人研究的基础上重点总结了以上各种转基因技术的最新研究动态并对各种转基因技术的特点进行了探讨。  相似文献   

4.
药用蛋白质乳腺生物反应器的制作技术及新方法进展   总被引:1,自引:0,他引:1  
用乳腺生物反应器生产人类珍稀的药用蛋白已经构成了现代生物技术的一个重要领域.与其他的生物工程方法比起来,用乳腺生物反应器生产人类珍稀的药用蛋白具有更多的优点.这一生物技术的实际应用依赖于基因的时空表达调控操作和可靠的转基因动物制作方法.综述了这一技术的优点,概括描述了了乳腺生物反应器表达载体的构建方法,及转基因动物的制作方法.讨论了这些方法的优缺点及技术改进的发展方向,特别是介绍了最近出现的、有研究和应用价值的用精原干细胞制作转基因动物的方法.  相似文献   

5.
精原干细胞(spermatogonial stem cells,SSCs)具有高度的自我更新能力和分化潜能。精原干细胞移植技术作为精原干细胞研究的重要手段,已成为一种新兴的动物繁殖技术,能够提高雄性动物的生殖能力。该技术是从适龄雄性供体动物中采集精原干细胞,注射入受体动物的生精小管中使其产生精子。通过对精原干细胞的体外培养、遗传修饰及移植等操作,可以为探讨精子的发生机制、重建不育个体的精子发生、生产转基因动物提供新的途径;同时为提高优良品种家畜的生产效率、保护野生动物资源及不育症的治疗提供了一种新的方法;在医学、生物学及动物科学方面有着广泛地应用。通过对培养体系的不断完善,筛选、移植方法的不断改进,可获得更高的移植成功率。本文将从利用精原干细胞法生产转基因动物的优势,精原干细胞的形态特性和增殖分化特性,精原干细胞的移植技术和影响移植效率的关键因素,精原干细胞的体外培养,以及相关操作技术的应用与前景展望等方面做一概述。  相似文献   

6.
利用转基因克隆技术实现外源基因的导入宿主染色体基因组内稳定整合,并能遗传给后代,已在基因表达与调控的理论研究、人类遗传病动物模型的建立、药用蛋白的生产、抗病育种、人类移植用的器官的研究等方面得到广泛应用。转基因动物的研究与应用也已经成为21世纪生命科学领域最活跃、最具有实际应用价值的方向之一,尤其是作为生物反应器和医学上为人类提供所用器官方面,其经济价值和社会效益将是不可估量。在查阅大量近年来国内外相关资料的基础上,本文以转基因动物克隆为中心,对转基因动物克隆所采用显微注射技术、核移植技术、基因打靶与真核BAC表达载体制备等主要研究技术,以及转基因动物克隆在异种器官移植、构建生物反应器等方面的应用进行了综合性论述与分析,同时阐述了各种转基因技术的优点与缺点,以其为转基因动物克隆研究提供理论基础与技术支撑。  相似文献   

7.
莱茵衣藻(Chlamydomonas reinharditi)是一种遗传机制已研究比较清楚的模式植物。近年来,生物反应器是当今世界上各国生物技术研究的一个热点,随着生物技术的发展,已成功实现衣藻作为生物反应器生产重组蛋白及抗体,生产的部分产品已经实现了商品化,与其他生物反应器相比,其在外源基因表达水平和转基因植物安全性等方面有明显的优势,尤其是在控制转基因沉默和遗传稳定性方面展示了极大的优越性。因此,莱茵衣藻是一种具有很好发展前景的生物反应器,必将在未来的药用蛋白生物技术领域发挥重要作用。主要对提高基因在莱茵衣藻叶绿体中表达的策略,转化技术的特点及其未来的发展前景等方面进行了简单评述。  相似文献   

8.
体细胞基因打靶-核移植技术研究进展   总被引:1,自引:0,他引:1  
转基因效率与外源基因表达水平低的现状一直是制约动物生物反应器研究与产业化的主要技术瓶颈。体细胞克隆动物的成功和胚胎干细胞基因打靶技术的逐步完善使得体细胞基因打靶与核移植技术的结合使用成为可能,这就为生产遗传修饰家畜提供了一种新的手段,为动物生物反应器的成功研制提供了新的技术途径。从体细胞基因打靶的载体设计、转染系统的建立、中靶细胞的筛选和鉴定以及培养体细胞寿命等方面阐述了体细胞基因打靶—核移植技术体系的最新研究进展,并对其在异种器官移植、建立动物疾病模型、提高家畜生长性能以及生产药用蛋白等各个领域中的应用前景作了展望 。  相似文献   

9.
转基因动物乳腺生产人类重组蛋白人血清白蛋白(h SA)、人纤维蛋白原(h FIB)、人蛋白C(h PC)、人凝血因子(h F-Ⅷ)和(h F-Ⅸ)等具有较高市场潜力,使其在医学领域获得广泛应用。对转基因动物乳腺生物反应器的优势、目的基因选择、载体构建、基因工程技术、重组蛋白在肿瘤治疗上的应用、当前困境和未来前景等方面进行较为全面的综述,以期能有助于转基因动物生物反应器的研究。此外较详细地探讨了利用CRISPR-Cas基因打靶技术生产高表达量的人类重组蛋白的可能性。  相似文献   

10.
随着科学研究的不断深入及临床治疗的需要,人们对转基因动物的需求越来越大;但是传统的转基因动物技术大多操作复杂、成本高、效率低,从而限制了转基因技术的广泛应用。利用雄性生殖细胞作为载体介导外源基因导入受精卵来建立转基因动物具有操作简便、经济、易于推广的优点,发展前景广阔。该文就利用雄性生殖细胞建立转基因动物的发展历程和方法进行系统的阐述和分析。从利用精子和精原干细胞携带外源DNA两个方向展开,分别分析和评价了恒温共孵育法、脂质体介导法、电穿孔法、胞浆内单精子注射法、输精管注射法、体外转染精原干细胞法以及体内转染精原干细胞法七种实验设计方法。  相似文献   

11.
Transgenic farm animals - A critical analysis   总被引:1,自引:0,他引:1  
Wall RJ  Seidel GE 《Theriogenology》1992,38(2):337-357
The notion of directly introducing new genes or otherwise manipulating the genotype of an animal is conceptually straightforward and appealing from the standpoints of both speed and precision with which phenotypic changes can be made. Thus, it is little wonder that the imagination of many animal scientists has been captivated by the success others have achieved in introducing foreign genes into mice. Transgenic mice not only exhibit unique phenotypes, but they also pass those traits on to their progeny. However, before transgenic farm animals become a common component of the livestock industry, a number of formidable obstacles must be overcome. In this review we attempt to identify the critical issues that should be considered by both those currently working in the field and those scientists considering the feasibility of initiating a transgenic livestock project. The inefficiency of producing transgenic animals has been well documented. This does not constrain investigators using laboratory animal models, but it has a major impact on applying transgenic technology to farm animals. The molecular mechanisms of transgene integration have not been elucidated, and as a consequence it is difficult to design strategies to improve the efficiency of the process. In addition to the problems associated with integration of new genes, there are inefficiencies associated with collecting and culturing fertilized eggs as well as embryo transfer in farm animals. Transgenic farm animal studies are major logistical undertakings. Even in the face of these practical hindrances, some may be pressured by administrators to embrace this new technology. As powerful as the transgenic animal model system is, currently there are limits to the kinds of agricultural questions that can be addressed. Some uses are so appealing, however, that several commercial organizations have explored this technology. Within the next decade or two, it is likely that many of the technical hurdles will be overcome. Combining new techniques with a better understanding of the genetic control of physiological systems will make it possible to improve the characteristics of farm animals in highly imaginative ways.  相似文献   

12.
随着转基因相关技术的发展,转基因动物技术在许多方面得到了成功应用.但外源基因在体内的表达仍然难以预测,特别是大动物的转基因,由于制备效率低下,因而难以筛选出足够的高表达的阳性动物数.基因表达调控研究对提高外源基因在动物体内的表达水平提供了一些新手段,本就避免转基因的位置效应、控制外源基因在动物宿主基因组中的整合、提高转基因的表达效率、构建转基因载体和使用外源基因需要注意的问题等进行综述.  相似文献   

13.
Using embryonic stem cells to introduce mutations into the mouse germ line   总被引:5,自引:0,他引:5  
It is now possible, through the use of a number of experimental technologies, to transfer genetic information into mouse embryos to stably alter the genetic constitution of mice. This experimental approach, namely the generation of so-termed "transgenic" animals, is affording new insights into a wide variety of biological problems. This review focuses on one system for the generation of transgenic mice, which utilizes tissue culture cell lines of embryonic stem cells, termed ES cells. The remarkable property of ES cells is that they retain the potential to reform an embryo; when they are replaced inside a carrier embryo, they resume normal development and contribute to all the tissues of the live-born chimeric animal. Recent experiments, using a repertoire of gene transfer techniques, have shown that ES cells are amenable to a variety of experimental manipulations in tissue culture. Moreover, it has been demonstrated that these genetically altered cells can be transferred into the germ line of chimeric mice, thus allowing the production of unique strains of animals for study. The applications of the ES cell system are reviewed, with particular emphasis on their use for the generation of random insertional mutations using a retrovirally mediated mutagenesis approach. Finally, the use of ES cells in conjunction with the recently described technique of homologous recombination, or "gene targeting," is discussed. This technology allows the generation of animals carrying extremely precise genetic modifications of endogenous genes.  相似文献   

14.
制备动物乳腺生物反应器的问题和对策   总被引:4,自引:0,他引:4  
邓继先  林福玉 《生物技术通讯》2003,14(3):204-206,230
动物乳腺是理想的用于生产复杂的生物活性蛋白的生物反应器。目前,显微注射仍然是制备大型转基因动物的主要方法,但外源基因整合效率低下和位置效应还需要解决。要解决这两个问题,人们探索了几种策略。尽管使用转染的体细胞和基因打靶的体细胞作为核移植的供体的动物克隆技术还在改善中,但是这一技术是有应用前景的转基因牲畜的方法。在转基因载体中使用LCR和MAR序列可显著提高表达水平和转基因效率。YAC、BAC作为理想的转基因载体可能因为它们能容纳基因座的所有元件。虽然这些技术和方法还存在不完善之处,但其发展将极大地提高动物乳腺生物反应器的整合率和表达水平。  相似文献   

15.
Genetic modification of animals in the next century   总被引:2,自引:0,他引:2  
Murray JD 《Theriogenology》1999,51(1):149-159
Since the initial demonstration in 1982 of profound phenotypic effects stemming from the expression of a single transgene, genetic engineering has revolutionized fundamental biological and biomedical research. The application of transgenic technology to farm animals has held the promise of being able to improve animal agriculture significantly and has resulted in a new industry, i.e., the successful expression of foreign proteins in the mammary gland for the pharmaceutical industry. Work over the last few years in model species (e.g., the mouse) and new technical developments such as cloning have now set the stage for the initial application of transgenic technology for the improvement of farm animals. Major limitations that remain are the lack understanding of which genes we should transfer in order to alter quantitative production traits usefully and the low efficiency of producting transgenic founders. Furthermore, more research is needed concerning the consequences and potential problems arising from the integration of transgenes into populations with varying genetic backgrounds. Recent advances suggest that within the first decade of the 21 st century the first transgenic animals will become available to the livestock industry, with acceptance depending upon their cost versus their potential economic benefit to the producers.  相似文献   

16.
Transgenic animals in biomedical research.   总被引:2,自引:0,他引:2  
G T Merlino 《FASEB journal》1991,5(14):2996-3001
The advent of transgenic technology, in which foreign genetic information is stably introduced into the mammalian germ line, has dramatically enhanced our basic knowledge of physiologic and pathologic processes. Transgenic animals created by these genetic manipulations are being used to provide insights into gene regulation, development, pathogenesis, and the treatment of disease. Furthermore, transgenic biotechnology holds great promise for the creation of genetically superior livestock and the industrial production of precious pharmaceuticals. It is evident now that the study and use of transgenic animals will significantly improve the human condition.  相似文献   

17.
《Biotechnology advances》2017,35(6):832-844
The history of transgenesis is marked by milestones such as the development of cellular transdifferentiation, recombinant DNA, genetic modification of target cells, and finally, the generation of simpler genetically modified organisms (e.g. bacteria and mice). The first transgenic fish was developed in 1984, and since then, continuing technological advancements to improve gene transfer have led to more rapid, accurate, and efficient generation of transgenic animals. Among the established methods are microinjection, electroporation, lipofection, viral vectors, and gene targeting. Here, we review the history of animal transgenesis, with an emphasis on fish, in conjunction with major developments in genetic engineering over the past few decades. Importantly, spermatogonial stem cell modification and transplantation are two common techniques capable of revolutionizing the generation of transgenic fish. Furthermore, we discuss recent progress and future biotechnological prospects of fish transgenesis, which has strong applications for the aquaculture industry. Indeed, some transgenic fish are already available in the current market, validating continued efforts to improve economically important species with biotechnological advancements.  相似文献   

18.
精准高效整合技术是将外源DNA片段插入到目的细胞基因组特定位置的一项转基因技术。早期通过细胞基因组与外源DNA同源序列发生重组来完成靶向整合的目的。伴随基因编辑技术发展,特别是CRISPR/Cas9技术的出现,精准高效的外源DNA整合技术日益成熟,广泛应用到功能基因组学、转基因动物及遗传疾病治疗的研究中。围绕基因编辑研究进展、引导RNA修饰技术、单碱基整合技术、转座子技术和外源DNA整合效率等方面对精准靶向和高效整合技术进行综述。  相似文献   

19.
O L Serov 《Ontogenez》1985,16(6):553-567
A review of literature on genetic transformation of animal (mouse and Drosophila) germ cells by microinjection of the cloned genes into the pronuclei or into the early embryos. The fate of foreign genes and mechanisms of their integration into the recipient genome are considered in detail, as well as genetic consequences of the exogenic DNA insertion. Expression of the donor genes in transgenic animals is analyzed, its irregular and unusual pattern is noted in transgenic mice. An attempt has been undertaken not only to stress obvious advances in genetic transformation of animals, but also to outline unsolved problems related to inheritance of exogenous genes, insertion mutagenesis and irregular expression of the donor genes.  相似文献   

20.
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