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1.
噬菌体是微生物遗传学研究的有力工具及源泉.分枝杆菌噬菌体也是构建分枝杆菌,尤其是结核分枝杆菌遗传研究工具的基础.目前,基于分枝杆菌噬菌体重组酶的重组系统是国际热点.总结了近年来基于分枝杆菌噬菌体Che9c重组酶gp60、gp61所构建的分枝杆菌重组工程体系及其在分枝杆菌基因组研究方面的应用,并结合实验室工作展望了其研究前景.该体系不依赖细菌自身的RecA系统,不需要限制性内切核酸酶和DNA连接酶,不需要复杂的体外操作,只需表达分枝杆菌噬菌体重组酶,从而使结核分枝杆菌基因敲除、基因敲入及点突变和构建分枝杆菌噬菌体突变株更方便.这为分枝杆菌及其噬菌体基因诱变及基因功能研究提供了迅捷的新途径.  相似文献   

2.
转座子Tn2是大肠杆菌质粒RSF 1030上一段带有α-氨基苄青霉素抗性基因的DNA序列。这段序列具有转座能力,它能通过不同于一般的DNA重组机理从一个复制子转座到另一个复制子。已知,噬菌体Mu,插入序列IS1、IS2、IS3和抗药性转座子TnA、Tn5、Tn9、Tn10等均能使被插入的基因发生突变。已有报道,不同的转座子在E.coli K12乳糖操纵子Z基因中的插入模式不同。Mu噬菌体在Z基因  相似文献   

3.
转座子是DNA插入因子的一种,是指能在基因组间或组内跳跃的DNA片段。转座子作为插入突变剂或分子标签已被广泛地应用于基因的分离和克隆,且因其独特的性质已成为发现新基因和基因功能分析的有效工具。这使得转座子无论是在单基因水平还是全基因组水平,都成为细菌、酵母和其他微生物研究的有力工具。简单而有效的体外转座反应可以对一些以往难以进行分析的顽固微生物进行转座诱变分析。而建立在转座子基础上的信号标签诱变技术和遗传足迹法的应用则发现了一些新的病原微生物毒力因子,从而可以更好地对这些病原微生物的致病机理进行阐述。这些再次说明转座子是微生物功能基因组研究中的有力工具。本文综述了转座子及其衍生载体介导的一些技术,并讨论其在微生物功能基因组研究中的应用。  相似文献   

4.
在小鼠胚胎干细胞进行基因打靶的策略   总被引:8,自引:0,他引:8  
基因打靶技术是一种通过同源重组按预期方式改变生物活体的遗传信息的实验手段,与小鼠胚胎干细胞培养系统相结合,使得人们可以方便地将各种突变引入小鼠体内,得以从生物整体水平上研究高等真核生物基因的表达、调控及其生理功能.扼要介绍了近年来在小鼠胚胎干细胞进行基因打靶的研究进展.  相似文献   

5.
Gap-Repair方式建立一种基于pBR322-Red的新型重组工程系统   总被引:5,自引:0,他引:5  
应用Gap—Repair新技术,以pBR322为载体,在λ噬菌体Red重组酶的作用下,通过同源重组直接从大肠杆菌DY330染色体上亚克隆了长度为6.7kb的包含Red重组酶基因的λ噬菌体左向操纵子基因序列。建立了一种能够随意在不同细菌宿主中转移的基于pBR322-Red的重组工程系统。为了验证pBR322-Red的生物功能,以大肠杆菌染色体上的galk基因为靶标,用Red介导的单链DNA重组技术敲入T→G单碱基突变,使galk基因内编码第145位氨基酸的密码子由TAT转变成TAG,产生了一个琥珀突变。确定了pBR322-Red系统的重组功能。  相似文献   

6.
重组微生物生理学主要研究外源基因与宿主的相互作用以及细胞生理状态对这种相互作用的影响。宿主与外源基因的相互作用可发生在复制、分配、表达、代谢等各种水平,主要的分子机制为核酸-核酸、核酸-蛋白质的相互作用,一些小分子化合物可作为信号或效应子参与大分子的相互作用。重组微生物生理学研究主要包括下列三方面工作:1.噬菌体、质粒与宿主的相互作用以及基因工程菌中目的基因的复制、分配和表达规律。2.微生物响答系统的响答及适应的分子机制及其对外源基因调控的影响。3.细胞生长速率对宿主基因和外源基因调控的影响。这些工作融合了分子水平和细胞水平的研究,模糊了分子生物学和生理学的界限,成为基因工程的理论基础之一。美国微生物学会自1987年起把重组微生物生理学列为年会的一个独立专题。 外源基因与宿主的相互作用 噬菌体和质粒等染色体外基因与宿主基因处于一种依赖、互补和竞争的复杂关系。  相似文献   

7.
Cre/lox位点特异性重组系统在高等真核生物中的研究进展   总被引:1,自引:0,他引:1  
Long DP  Tan B  Zhao AC  Xu LX  Xiang ZH 《遗传》2012,34(2):177-189
来自于P1噬菌体的Cre/lox系统通过位点特异性重组可以迅速而有效地实现各种生理环境下的基因定点插入、删除、替换和倒位等操作。Cre/lox系统作为目前基因打靶技术的核心工具,已被广泛应用于拟南芥、水稻、小鼠、果蝇、斑马鱼等高等真核模式生物。文章较为全面地介绍了Cre/lox系统的基本概况及其在高等真核生物中的应用,讨论了Cre/lox系统在研究中存在的主要问题和今后的发展方向,为利用该系统在不同高等生物中进行基因操作提供有用的参考。  相似文献   

8.
人癌胚抗原单链抗体基因的构建和筛选   总被引:3,自引:0,他引:3  
从分泌抗癌胚抗原(carcinoembryoni antigen, CEA)单抗的杂交瘤细胞株C50中提取总RNA, 逆转录成cDNA, PCR扩增分别得到抗体轻、重链可变区基因, 再利用两对PCR引物合成和扩增得到全单链抗体基因. 将含轻、重链可变区序列的DNA片段克隆于含噬菌体基因Ⅲ的噬菌粒pCANTAB5. 重组克隆在噬菌体表面表达基因Ⅲ与单链抗体的融合蛋白. 表达具抗原结合活性的单链抗体的重组噬菌体可以通过亲和筛选的方法筛选得到并富集. 利用该方法我们可以从许多分泌不同抗体的杂交瘤细胞RNA中快速克隆和筛选功能性抗体可变区基因.  相似文献   

9.
龙定沛  谭兵  赵爱春  许龙霞  向仲怀 《遗传》2012,34(2):177-189
来自于P1噬菌体的Cre/lox系统通过位点特异性重组可以迅速而有效地实现各种生理环境下的基因定点插入、删除、替换和倒位等操作。Cre/lox系统作为目前基因打靶技术的核心工具, 已被广泛应用于拟南芥、水稻、小鼠、果蝇、斑马鱼等高等真核模式生物。文章较为全面地介绍了Cre/lox系统的基本概况及其在高等真核生物中的应用, 讨论了Cre/lox系统在研究中存在的主要问题和今后的发展方向, 为利用该系统在不同高等生物中进行基因操作提供有用的参考。  相似文献   

10.
Red同源重组技术研究进展   总被引:6,自引:0,他引:6  
伴随着分子生物学的发展,一种基于λ噬菌体Red重组酶的同源重组系统已应用于大肠杆菌基因工程研究。Red重组系统由三种蛋白组成:Exo蛋白是一种核酸外切酶,结合在双链DNA的末端,从5′端向3′端降解DNA,产生3′突出端;Beta蛋白结合在单链DNA上,介导互补单链DNA退火;Gam蛋白可与RecBCD酶结合,抑制其降解外源DNA的活性。Red同源重组技术具有同源序列短(40~60bp)、重组效率高的特点。这种技术可在DNA靶标分子的任意位点进行基因敲除、敲入、点突变等操作,无需使用限制性内切酶和连接酶。此外,这种新型重组技术可直接将目的基因克隆于载体上,目的基因既可来源于细菌人工染色体也可是基因组DNA。Red同源重组技术使难度较大的基因工程实验顺利进行,大大推动功能基因组研究的发展。  相似文献   

11.
12.
Transposable elements as tools for genomics and genetics in Drosophila.   总被引:3,自引:0,他引:3  
The P-element has been the workhorse of Drosophila genetics since it was developed as a tool for transgenesis in 1982; the subsequent development of a variety of systems based on the transposon have provided a range of powerful and flexible tools for genetics and genomics applications. P-element insertions are frequently used as starting-points for generating chromosomal deletions to remove flanking genes, either by screening for imprecise excision events or by selecting for male recombination events. Elements that utilise the yeast FLP/FLP recombination target (FRT) site-specific recombination system have been widely used to generate molecularly marked mitotic clones for mosaic analysis, extending the reach of this powerful genetic tool to virtually all areas of developmental biology. P-elements are still widely used as traditional mutagenesis reagents and form the backbone of projects aimed at generating insertions in every predicted gene in the fly genome. In addition, vectors based on the FLP/FRT system are being used for genome-wide applications, including the development of molecularly-mapped deletion and duplication kits. In addition to these 'traditional' genetic approaches, a variety of engineered elements have been developed for a wide range of transgenic applications, including enhancer trapping, gene-tagging, targeted misexpression, RNA interference (RNAi) delivery and homologous recombination/gene replacement. To complement the use of P-elements, alternative transposon vectors have been developed. The most widely used of these are the lepidopteran element piggyBac and a Drosophila hydei transposon, Minos. In total, a range of transposon vectors offers the Drosophila biologist considerable flexibility and sophistication in manipulating the genome of the fly and has allowed rapid advances in all areas of developmental biology and genome science.  相似文献   

13.
Vectors used for gene targeting experiments usually consist of a selectable marker flanked by two regions of homology to the targeted gene. In a homologous recombination event, the selectable marker replaces an essential element of the target gene rendering it inactive. Other applications of gene targeting technology include gene replacement (knockins) and conditional vectors which allow for the generation of inducible or tissue-specific gene-targeting events. The assembly of gene-targeting vectors is generally a laborious process requiring considerable technical skill. The procedures presented here report the application of transposons as tools for the construction of targeting vectors. Two mini-Mu transposons were sequentially inserted by in vitro transposition at each side of the region targeted for deletion. One such transposon carries an antibiotic resistance marker suitable for selection in mammalian cells. A deletion is then generated between the two transposons either by LoxP-induced recombination or by restriction digestion followed by ligation. This deletion removes part of both transposons plus the targeted region in between, leaving a transposon carrying the selectable marker flanked by two arms which are homologous to the targeted gene. Targeting vectors constructed using these transposons were electroporated into embryonic stem cells and shown to be effective in gene-targeting events.  相似文献   

14.
Tandem gene arrays: a challenge for functional genomics   总被引:1,自引:0,他引:1  
In sequenced plant genomes, 15% or more of the identified genes are members of tandem-arrayed gene families. Because mutating only one gene in a duplicated pair often produces no measurable phenotype, this poses a particular challenge for functional analysis. To generate phenotypic knockouts, it is necessary to create deletions that affect multiple genes, select for rare meiotic recombination between tightly linked loci, or perform sequential mutant screens in the same plant line. Successfully implemented strategies include PCR-based screening for fast neutron-induced deletions, selection for recombination between herbicide resistance markers, and localized transposon mutagenesis. Here, we review the relative merits of current genetic approaches and discuss the prospect of site-directed mutagenesis for generating elusive knockouts of tandem-arrayed gene families.  相似文献   

15.
Targeted mutagenesis is an extremely useful experimental approach in molecular medicine, allowing the generation of specialized animals that are mutant for any gene of interest. Currently the rate determining step in any gene targeting experiment is construction of the targeting vector (TV). In order to streamline gene targeting methods and avoid problems encountered with plasmid TVs, we describe the direct application of lambda phage in targeted mutagenesis. The recombination-proficient phage vector lambda2TK permits generation of TVs by conventional restriction-ligation or recombination-mediated methods. The resulting lambdaTV DNA can then be cleaved with restriction endonucleases to release the bacteriophage arms and can subsequently be electroporated directly into ES cells to yield gene targets. We demonstrate that in vivo phage-plasmid recombination can be used to introduce neo and lacZ - neo mutations into precise positions within a lambda2TK subclone via double crossover recombination. We describe two methods for eliminating single crossover recombinants, spi selection and size restriction, both of which result in phage TVs bearing double crossover insertions. Thus TVs can be easily and quickly generated in bacteriophage without plasmid subcloning and with little genomic sequence or restriction site information.  相似文献   

16.
Precise genome engineering via homologous recombination (HR)‐mediated gene targeting (GT) has become an essential tool in molecular breeding as well as in basic plant science. As HR‐mediated GT is an extremely rare event, positive–negative selection has been used extensively in flowering plants to isolate cells in which GT has occurred. In order to utilize GT as a methodology for precision mutagenesis, the positive selectable marker gene should be completely eliminated from the GT locus. Here, we introduce targeted point mutations conferring resistance to herbicide into the rice acetolactate synthase (ALS) gene via GT with subsequent marker excision by piggyBac transposition. Almost all regenerated plants expressing piggyBac transposase contained exclusively targeted point mutations without concomitant re‐integration of the transposon, resulting in these progeny showing a herbicide bispyribac sodium (BS)‐tolerant phenotype. This approach was also applied successfully to the editing of a microRNA targeting site in the rice cleistogamy 1 gene. Therefore, our approach provides a general strategy for the targeted modification of endogenous genes in plants.  相似文献   

17.
After the deciphering of the genome sequences of several Plasmodium species, efforts must turn to elucidating gene function and identifying essential gene products. However, random approaches are lacking and gene targeting is inefficient in Plasmodium. Here, we established shuttle transposon mutagenesis in Plasmodium berghei. We constructed a mini-Tn5 derivative that can transpose into parasite genes cloned in Escherichia coli, providing an efficient means of generating knockout fragments. A 104-fold increase in frequencies of double-crossover homologous recombination in the parasite using a new electroporation technology permits to reproducibly generate pools of distinct mutants after transfection with mini-Tn5-interrupted sequences. The procedure opens the way to the systematic identification of essential genes in Plasmodium.  相似文献   

18.
Targeted homologous recombination is a powerful approach for genome manipulation that is widely used for gene alteration and knockouts in mouse and yeast. In Caenorhabditis elegans, several methods of target-selected mutagenesis have been implemented but none of them provides the opportunity of introducing exact predefined changes into the genome. Although anecdotal cases of homologous gene targeting in C.elegans have been reported, no practical technique of gene targeting has been developed so far. In this work we demonstrate that transformation of C.elegans by microparticle bombardment (biolistic transformation) can result in homologous recombination between introduced DNA and the chromosomal locus. We describe a scaled up version of biolistic transformation that can be used as a method for homologous gene targeting in the worm.  相似文献   

19.
Genetic analysis of Bacteroides fragilis (BF) is hindered because of the lack of efficient transposon mutagenesis methods. Here, we describe a simple method for transposon mutagenesis using EZ::TN5, a commercially available system that we optimized for use in BF638R. The modified EZ::TN5 transposon contains an Escherichia coli conditional origin of replication, a kanamycin resistance gene for E. coli, an erythromycin resistance gene for BF , and 19 basepair transposase recognition sequences on either ends. Electroporation of the transposome (transposon-transposase complex) into BF638R yielded 3.2 ± 0.35 × 10(3) CFU μg(-1) of transposon DNA. Modification of the transposon by the BF638R restriction/modification system increased transposition efficiency sixfold. Electroporation of the EZ::TN5 transposome results in a single-copy insertion of the transposon evenly distributed across the genome of BF638R and can be used to construct a BF638R transposon library. The transposon was also effective in mutating a BF clinical isolate and a strain of the related species, Bacteroides thetaiotaomicron. The EZ::TN5-based mutagenesis described here is more efficient than other transposon mutagenesis approaches previously reported for BF.  相似文献   

20.
Whole-genome fitness analysis in microbes that uses saturating transposon mutagenesis combined with massively parallel sequencing (Tn-seq) is providing a measure of the contribution of each gene to a given growth condition. With this technique, gene fitness profiles and essential genes are discovered by simultaneous analyses of whether the absence of each gene product alters the growth kinetics of the bacterium. Here we modify the standard Tn-seq procedure to simplify and shorten the process by including delivery of the transposon through conjugation and liquid culture enrichment of the mutant pool, creating transposon liquid enrichment sequencing (TnLE-seq). To illustrate the success of these modifications and the robustness of the procedure, analyses of gene fitness of two cultures of the strictly anaerobic bacterium Desulfovibrio vulgaris Hildenborough were performed, with growth on lactate as the electron donor and sulfate as the electron acceptor. These data demonstrate reproducibility and provide a base condition for analysis of fitness changes in deletion mutants and in various growth conditions. The procedural modifications will facilitate the application of this powerful genetic analysis to microbes lacking a facile genetic system. Pilot studies produced 2.5 × 105 and 3.4 × 105 unique insertion mutants in the anaerobe Desulfovibrio vulgaris Hildenborough grown under typical laboratory conditions in rich medium. These analyses provided two similar high-resolution maps of gene fitness across the genome, and the method was also applied to growth in minimal medium. These results were also compared to the coverage obtained with a ca. 13,000-member cataloged transposon library constructed by sequencing transposon insertion sites in individual mutants.  相似文献   

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