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1.
主要从Red系统组成元件、作用机理、重组策略以及先进性和发展前景四个方面综述了利用Red 重组系统敲除或替换细菌染色体目的基因的方法。首先简要介绍了传统的细菌染色体重组技术,指出了其中的缺陷。然后提出了Red重组技术的定义:利用噬菌体Red系统介导来实现外源线性DNA片断与细菌染色体的靶基因进行同源重组的方法,外源线性DNA通常是PCR产物、寡核苷酸片断等,在它们的两翼各含有与染色体靶基因两翼同源的序列40~60bp。这种Red重组技术省去了体外DNA酶切和连接等步骤,使细菌染色体靶基因的敲除与替换操作相对简单,逐渐成为基因功能探索以及新菌株构建的有力手段。  相似文献   

2.
利用Red重组系统敲除大肠杆菌 O157:H7的waaL 基因   总被引:1,自引:0,他引:1  
目的:利用λ噬菌体Red重组系统敲除大肠杆菌O157:H7的waaL基因。方法:以pKD4为模板扩增出与waaL基因上下游同源的、含有卡那霉素抗性基因的PCR产物。然后电击转化到大肠杆菌 O157:H7 中,利用Red重组系统,通过卡那霉素抗性基因两侧的waaL基因序列在体内与waaL基因发生同源重组,置换了 O157:H7 基因组中的waaL基因。并进一步利用卡那霉素抗性基因两侧的FRT位点,通过FLP位点专一性重组将卡那霉素抗性基因敲除。结果:成功构建了敲除waaL基因且不带卡那霉素抗性基因的菌株。  相似文献   

3.
本研究首先利用Red同源重组系统对肠毒性大肠杆菌H10407/Δhns进行stp A基因敲除并进行验证。随后在模拟肠内缺氧环境条件下,研究H10407/Δhns单基因敲除和H10407/Δhns/Δstp A双基因敲除对肠毒性大肠杆菌LT毒素表达的调控影响,并利用hns基因表达载体进行功能回补实验。结果发现,Red重组系统能够高效的完成肠毒性大肠杆菌hns和stp A基因敲除;在体外有氧条件下hns基因敲除有效促进了LT毒素的表达;而在缺氧条件下,hns和stp A双敲除有效促进了LT毒素的表达,但H-NS功能回补的hns单敲除株不能有效抑制LT毒素的表达。结果表明H-NS与Stp A对LT毒素表达调控具有重要作用,而且有氧与缺氧环境中发挥作用存在差异。  相似文献   

4.
本研究利用λRed重组系统构建了肠毒性大肠杆菌(ETEC)H10407菌的gsp D基因敲除株,并利用PCR和测序技术进行了验证。随后对gsp D基因敲除株和野生株生长曲线进行测定,并利用Western Blot技术对培养上清液和细胞沉淀中的LT毒素分别进行检测。发现gsp D基因敲除对ETEC H10407生长无显著影响,野生型大肠杆菌的LT毒素不仅存在于培养上清液中,还存在于细胞沉淀,而gsp D基因敲除株的LT毒素仅在细胞沉淀中被检测到。本研究的结果表明gsp D基因敲除的ETEC,其LT毒素在细菌细胞内积累并不释放至细胞外,说明Ⅱ型分泌系统(T2SS)中的gsp D基因对调控LT毒素分泌至细胞外起到了关键作用。  相似文献   

5.
Red重组系统用于大肠杆菌基因修饰的研究进展   总被引:2,自引:0,他引:2  
Red重组作为一种新的重组系统已经被广泛用于大肠杆菌的基因敲除、基因替换。与传统的Rec重组相比,Red重组具有同源臂短,重组效率高等优点。本文分别详细介绍了Red重组系统中Exo、Beta、Gam三种蛋白质的功能,Red重组系统运用在大肠杆菌基因敲除中的三种质粒及其功能,同时概括了Red重组的技术要点及技术难点,分析了文献报道的阿拉伯糖诱导浓度和诱导时间、转化后的复苏温度及时间、引物同源臂长度对于重组率的影响,总结出了Red重组的最佳条件。  相似文献   

6.
Red重组系统用于大肠杆菌基因修饰研究进展   总被引:8,自引:3,他引:5  
Red重组作为一种新的重组系统已经被广泛用于大肠杆菌的基因敲除、基因替换.与传统的Rec重组相比,Red重组具有同源臂短,重组效率高等优点.分别详细介绍了Red重组系统中Exo、Beta、Gam 3种蛋白质的功能,Red重组系统运用于大肠杆菌基因敲除的3种质粒及其功能,同时概括了Red重组的技术要点及技术难点,分析了文献报道的阿拉伯糖诱导浓度和诱导时间、转化后的复苏温度及时间、引物同源臂长度对于重组率的影响,总结出了Red重组的最佳条件.  相似文献   

7.
利用Red重组系统对野生大肠杆菌Escherichia coli磷酸烯醇式丙酮酸-糖磷酸转移酶系统(Phosphoenolpyruvate:carbohydrate phosphotransferase system,PTS)进行修饰改造,敲除PTS系统中关键组分EⅡCBGlc的编码基因(ptsG),磷酸组氨酸搬运蛋白HPr的编码基因(ptsI),同时敲入来源于运动发酵单胞菌Zymomonas mobilis的葡萄糖易化体(Glucose facilitator)编码基因(glf),构建重组大肠杆菌,比较测定并系统评价了基因敲除和敲入对细胞的生长、葡萄糖代谢和乙酸积累的影响。敲除基因ptsG和ptsI造成大肠杆菌PTS系统部分功能缺失,细胞生长受到一定限制,敲入glf基因后,重组大肠杆菌能够利用Glf-Glk(葡萄糖易化体-葡萄糖激酶)途径,消耗ATP将葡萄糖进行磷酸化并转运进入细胞。通过该途径转运葡萄糖能够提高葡萄糖利用效率,降低副产物乙酸生成,同时能够使更多的碳代谢流进入后续相关合成途径,预期能够提高相关产物产量。  相似文献   

8.
现阶段,适用于大肠杆菌的无痕敲除方法普遍存在周期较长、操作步骤复杂等问题。为了进一步改进和优化无痕敲除技术,采用单链寡核苷酸介导的Red同源重组系统(single strand oligonucleotide-mediated recombineering,SSOR),通过两步连续的同源重组,敲除了一种编码类似微管蛋白的GTP酶的ftsZ基因。该方法可快速高效无痕的敲除目的基因,为大肠杆菌基因组改造提供了有效方法,另外,ftsZ基因缺失株的获得也为研究ftsZ基因功能创造了条件。  相似文献   

9.
目的:用缺口修复等技术构建Myostatin(肌肉生长抑制素,MSTN)基因打靶载体,并对大白猪胎儿成纤维体细胞进行转染,获得基因敲除细胞。方法与结果:首先构建用于MSTN基因同源长臂(LA)的抓捕载体,然后在大肠杆菌内利用Red同源重组系统介导的缺口修复,从含大白猪MSTN基因座的细菌人工染色体上亚克隆9.9 kb的LA到抓捕载体上,经过部分序列测定,同源性为100%;通过PCR获得1.4 kb的同源短臂(SA);将LA和SA连入载体pLOXP,构建含有neo和tk正负筛选标记基因的MSTN基因打靶载体pLOXP-MSTN-KO;将线性化的pLOXP-MSTN-KO通过电转染整合到大白猪胎儿成纤维细胞基因组中,利用G418和丙氧鸟苷进行药物筛选,获得抗性细胞克隆890个,通过PCR和DNA测序鉴定获得基因敲除的细胞克隆4个。结论:构建了有效的MSTN基因打靶载体,通过转染获得基因敲除细胞,为利用体细胞核移植制备MSTN基因敲除猪奠定了基础。  相似文献   

10.
目的:分别构建大肠杆菌astE、rph基因敲除突变株,并检测其异丁醇耐受性的变化。方法:利用Red重组系统分别敲除大肠杆菌的astE和rph基因,并对所获得的突变株进行异丁醇耐受性相关实验研究。结果:成功构建了astE基因缺失突变株△astE和rph基因缺失突变株Δrph,发现两种突变株的异丁醇耐受性均有所提高。结论:通过缺陷菌株的构建,为未来进一步代谢改造生产异丁醇和研究异丁醇耐受机制奠定了基础。  相似文献   

11.
目的:敲除大肠杆菌DH5α中与葡萄糖磷酸化转运相关的ptsG、ptsM基因,考察缺陷株生长特性及其可能的应用。方法:PCR扩增靶基因,构建两翼带有靶基因序列并嵌合抗药基因标记的线性片段,利用Red同源重组技术敲除靶基因。结果:成功敲除了大肠杆菌DH5α的ptsG和ptsM基因;在含有葡萄糖的LB培养基中,DH5αΔptsG最高菌密度是亲本的2.8倍,添加吡咯喹啉醌或导入其生物合成基因后能够产酸;DH5αΔptsM最高菌密度是亲本的4/10,有明显的产酸现象。结论:DH5αΔptsG可用于大肠杆菌高密度发酵和吡咯喹啉醌生物合成基因缺陷株筛选。  相似文献   

12.
Polymerase chain reaction (PCR) amplification and gene probe detection of regions of two genes, lacZ and lamB, were tested for their abilities to detect coliform bacteria. Amplification of a segment of the coding region of Escherichia coli lacZ by using a PCR primer annealing temperature of 50 degrees C detected E. coli and other coliform bacteria (including Shigella spp.) but not Salmonella spp. and noncoliform bacteria. Amplification of a region of E. coli lamB by using a primer annealing temperature of 50 degrees C selectively detected E. coli and Salmonella and Shigella spp. PCR amplification and radiolabeled gene probes detected as little as 1 to 10 fg of genomic E. coli DNA and as a few as 1 to 5 viable E. coli cells in 100 ml of water. PCR amplification of lacZ and lamB provides a basis for a method to detect indicators of fecal contamination of water, and amplification of lamB in particular permits detection of E. coli and enteric pathogens (Salmonella and Shigella spp.) with the necessary specificity and sensitivity for monitoring the bacteriological quality of water so as to ensure the safety of water supplies.  相似文献   

13.
Polymerase chain reaction (PCR) amplification and gene probe detection of regions of two genes, lacZ and lamB, were tested for their abilities to detect coliform bacteria. Amplification of a segment of the coding region of Escherichia coli lacZ by using a PCR primer annealing temperature of 50 degrees C detected E. coli and other coliform bacteria (including Shigella spp.) but not Salmonella spp. and noncoliform bacteria. Amplification of a region of E. coli lamB by using a primer annealing temperature of 50 degrees C selectively detected E. coli and Salmonella and Shigella spp. PCR amplification and radiolabeled gene probes detected as little as 1 to 10 fg of genomic E. coli DNA and as a few as 1 to 5 viable E. coli cells in 100 ml of water. PCR amplification of lacZ and lamB provides a basis for a method to detect indicators of fecal contamination of water, and amplification of lamB in particular permits detection of E. coli and enteric pathogens (Salmonella and Shigella spp.) with the necessary specificity and sensitivity for monitoring the bacteriological quality of water so as to ensure the safety of water supplies.  相似文献   

14.
A broad-host-range plasmid containing a fusion of the alkA and lacZ genes of Escherichia coli was introduced into various aerobic and facultative gram-negative bacteria--33 species belonging to 19 genera--to study the induction of expression of the alkA gene by alkylating agents. The bacteria included species of the families Enterobacteriaceae, Pseudomonadaceae, Rhizobiaceae, Vibrionaceae, Neisseriaceae, Rhodospirillaceae, and Azotobacteraceae. Results obtained show that all bacteria tested, except Aeromonas hydrophila, Agrobacterium tumefaciens, Hafnia alvei, Rhizobium meliloti, Salmonella enteritidis, Xanthomonas campestris, and those of the genus Rhodobacter, are able to induce the alkA gene of E. coli in the presence of N-methyl-N'-nitro-N-nitrosoguanidine. All these data indicate that the adaptive response to alkylating agents is present in bacterial species of several families and that the Ada box sequence must be widely conserved.  相似文献   

15.
目的:利用Red重组系统敲除肠出血性大肠杆菌O157∶H7的毒力基因espA、espB、espD,构建3株突变株。方法:以肠出血性大肠杆菌O157∶H7为模板,PCR扩增基因两翼的同源序列;将PCR产物插入pEASY-T1载体并测序,将测序正确的上、下游同源序列分步酶切,构建于pUC19-kan质粒上,经PCR获得两端同源序列中间嵌合卡那霉素抗性基因标记的线性片段,利用质粒pKD46介导的重组技术,敲除espA、espB、espD基因,之后转入pCP20质粒以去除抗性标记,最后测定突变株及野生菌株的生长曲线。结果:敲除了肠出血性大肠杆菌O157∶H7的毒力基因espA、es pB、espD,获得3株突变株,突变株与野生株的生长曲线相近。结论:为进一步研究espA、espB、espD基因在肠出血性大肠杆菌O157∶H7致病过程中的作用奠定了基础。  相似文献   

16.
A recombinant plasmid containing a Serratia marcescens DNA repair gene has been analyzed biochemically and genetically in Escherichia coli mutants deficient for repair of alkylated DNA. The cloned gene suppressed sensitivity to methyl methanesulfonate of an E. coli strain deficient in 3-methyladenine DNA glycosylases I and II (i.e., E. coli tag alkA) and two different E. coli recA mutants. Attempts to suppress the methyl methanesulfonate sensitivity of the E. coli recA mutant by using the cloned E. coli tag and alkA genes were not successful. Southern blot analysis did not reveal any homology between the S. marcescens gene and various known E. coli DNA repair genes. Biochemical analysis with the S. marcescens gene showed that the encoded DNA repair protein liberated 3-methyladenine from alkylated DNA, indicating that the DNA repair molecular is an S. marcescens 3-methyladenine DNA glycosylase. The ability to suppress both types of E. coli DNA repair mutations, however, suggests that the S. marcescens gene is a unique bacterial DNA repair gene.  相似文献   

17.
The role of nucleotide excision repair and 3-methyladenine DNA glycosylases in removing cytotoxic lesions induced by N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) in Salmonella typhimurium and Escherichia coli cells was examined. Compared to the E. coli wild-type strain, the S. typhimurium wild-type strain was more sensitive to the same dose of MNNG. Nucleotide excision repair in both bacterial species does not contribute significantly to the survival after MNNG treatment, indicating that the observed differences in survival between S. typhimurium and E. coli should be attributed to DNA-repair systems other than nucleotide excision repair. The survival of the E. coli alkA mutant strain is seriously affected by the lack of 3-methyladenine DNA glycosylase II, accentuating the importance of this DNA-repair enzyme in protecting E. coli cells against the lethal effects of methylating agents. Following indications from our experiments, the existence of an alkA gene analogue in S. typhimurium has been questioned. Dot-blot hybridisation, using the E. coli alkA gene as a probe, was performed, and such a nucleotide sequence was not detected on S. typhimurium genomic DNA. The existence of constitutive 3-methyladenine DNA glycosylase, analogous to the E. coli Tag gene product in S. typhimurium cells, suggested by the results is discussed.  相似文献   

18.
为了通过基因工程手段提高大肠杆菌色氨酸产量, 对色氨酸生物合成途径中的关键基因trpR、tnaA、aroG和trpED进行了改造。首先通过敲除trpR基因解除了基因组上色氨酸合成和转运关键酶受到的反馈阻遏调控, 进而又敲除了tnaA基因, 阻断了色氨酸的分解代谢。然后, 将色氨酸合成途径的关键酶aroGfbr和trpEDfbr基因串联表达, 以去除色氨酸生物合成途径的瓶颈。与对照MG1655相比, trpR基因单敲菌色氨酸浓度提高了10倍, 双敲菌色氨酸浓度提高了约20倍。pZE12-trpEDfbr转入双敲菌后色氨酸浓度提高到168 mg/L, 而将aroGfbr和trpEDfbr转入双敲菌后, 色氨酸浓度提高到820 mg/L。为构建色氨酸高产菌奠定了基础。  相似文献   

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