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1.
大肠杆菌-链霉菌高效接合载体的构建及其应用   总被引:2,自引:0,他引:2  
以链霉菌质粒SCP2 的衍生质粒pHJL400为基础 ,构建了能够在大肠杆菌到链霉菌之间进行高效接合转移的质粒pGH112。pGH112含有在大肠杆菌和链霉菌中复制起始位点 ,以及分别在大肠杆菌和链霉菌中进行筛选的抗性标记。用pGH112转化EscherichiacoliET12567(pUZ8002 )后 ,与天蓝链霉菌 (StreptomycescoelicolorA3(2 ) )、除虫链霉菌 (Streptomycesavermitilis)、变铅青链霉菌 (StreptomyceslividansTK54 )、毒三素链霉菌 (StreptomycestoxytriciniNRRL15443)、委内瑞拉链霉菌 (Streptomyces.venezuelaeISP5230 )和红色糖多孢菌 (Saccharopolyporaerythraea)进行接合 ,发现本文构建的pGH112与pKC1139相比 ,接合转移效率较高 ,稳定性好 ,而且宿主范围较广。把组成型启动子ermE 与绿色荧光蛋白基因 (gfp)克隆到本文构建的pGH112 ,通过接合转移到链霉菌中 ,gfp获得表达,证明其可以用作基因接合转移的有效工具载体,这为研究链霉菌的基因功能创造了有利条件上。  相似文献   

2.
【目的】建立并优化链霉菌Fostriecin产生菌Streptomyces pulveraceus的遗传转化系统。【方法】以整合型质粒pSET152为出发质粒,通过供体菌E.coli ET12567/pUZ8002与受体菌Streptomyces pulveraceus进行接合转移。【结果】确定了链霉菌Streptomyces pulveraceus的最佳接合转移条件:培养基为终浓度含15%甘氨酸的MS培养基;孢子热激条件为50°C 10 min;阿伯拉霉素覆盖的时间为18 h,终浓度为20 mg/L。同时,把组成型启动子ermE+与绿色荧光蛋白基因(gfp)克隆到pSET152载体上,通过接合转移整合到该链霉菌中,gfp获得表达。【结论】建立Fostriecin产生菌的遗传转化系统,并发现甘氨酸能显著提高链霉菌的接合转移效率。  相似文献   

3.
【目的】构建能定点整合到链霉菌(Streptomyces)染色体上的高效表达载体。【方法】以链霉菌自杀型表达载体pLSB2为基础,通过插入链霉菌噬菌体ΦC31整合酶基因int和attP位点(Phage attachment site),构建了能在大肠杆菌和链霉菌之间进行接合转移并定点整合到链霉菌染色体上的表达载体pMF。将pMF转化大肠杆菌ET12567(pUZ8002),并分别接合转移天蓝色链霉菌(Streptomyces coelicolorM145)、变铅青链霉菌(Streptomyces lividansTK24)和红色糖多孢菌(Saccharopolyspora erythraea2338),挑取接合子进行PCR和Southern杂交检测。将来自刺糖多孢菌S08-4的S-腺苷甲硫氨酸合成酶基因(SAM-s)克隆到载体pMF的启动子下游,接合转移到天蓝色链霉菌中。【结果】表明pMF成功整入链霉菌染色体,并且检测到目的蛋白的表达。【结论】构建的pMF载体可作为外源基因定点整合表达的有效工具,为后续的基因功能研究以及链霉菌的遗传改造奠定了基础。  相似文献   

4.
【目的】链霉菌(Streptomyces)X335是从西藏高原活拉山口分离到的,其中含有一个大小为4.3 kb的环型质粒pDYM4.3k。克隆、测序和分析pDYM4.3k,以及鉴定复制和接合转移的基因。【方法】通过克隆和引物延伸获得pDYM4.3k的全序列,利用比对分析推测基因的功能,通过Southern杂交检测复制中间体,利用平板杂交实验证明接合转移功能。【结果】克隆和测序获得了全长为4346 bp的pDYM4.3k序列,预测仅有3个基因,其中1个基因与链霉菌主要接合转移基因同源,另外2个为功能未知。鉴定新的基因orf1及其上游的约300 bp构成了质粒的基本复制区域。检测到质粒存在单链的复制中间体,表明它以滚环方式进行复制。实验证明pDYM4.3k在变铅青链霉菌(Streptomyces lividans)中具有接合转移功能。【结论】质粒pDYM4.3k可以滚环方式进行复制和在链霉菌之间进行接合转移。这是目前报道的最小的、具有游离复制和接合转移功能的链霉菌质粒。  相似文献   

5.
以pSET152和pHZ1358为出发质粒,通过供体大肠杆菌ET12567(pUZ8002)和S17-1接合转移斑贝链霉菌(Streptomycesbambergiensis),构建和优化了接合转移体系。采用OOE-PCR技术构建含ermEp*与vhb结构基因融合片段的整合型表达载体pBIB2005,转化ET12567(pUZ8002)后,属间接合转移至斑贝链霉菌。通过PCR、CO结合差光谱验证vhb基因在斑贝链霉菌中整合表达。摇瓶发酵显示VHb蛋白能改善菌体对氧的需求,一定程度上促进细胞生长,提高抗生素产量。  相似文献   

6.
本实验将PCR所得的1.8kb的lat基因片段插入到pUCm-T载体的多克隆位点,得到重组质粒pUCm-T-lat,经EcoRI-HindⅢ双酶切后得到lat基因片段,与经同样双酶切的穿梭质粒pGH112进行连接,得到重组质粒pGH112-lat。将其电转至大肠杆菌E.coli BW25113/pIJ790中得到E.coli BW25113/pIJ790/pGH112-lat。同时,根据棒状链霉菌lat基因的序列及质粒pIJ77(3 pIJ773为可提供阿泊拉抗性的模板质粒)中阿泊拉抗性基因(aac(3)iv)的序列设计一对长59nt及58nt的引物,两引物分别含有20nt及19nt的阿泊拉抗性基因的互补序列和39nt的lat基因两端的互补序列,以质粒pIJ773为模板,PCR扩增得到的产物为两端带有lat基因上下游同源序列的阿泊拉抗性基因,将此PCR产物称为阿泊拉抗性框,将此阿泊拉抗性框电转至E.coli BW25113/pIJ790/pGH112-lat转化子中。在质粒pIJ790的作用下,阿泊拉抗性框中两端的lat基因同源序列与pGH112-lat中的野生型lat基因发生同源双交换,使得阿泊拉抗性框插入lat基因中,得到lat基因中插入阿泊拉抗性基因(lat::apr)的重组质粒pELA。该质粒的构建为进一步构建棒状链霉菌lat基因插入阻断的突变株,从而实现克拉维酸产量的提高奠定了初步基础。  相似文献   

7.
【目的】构建委内瑞拉链霉菌秦岭变种属间接合转移系统及透明颤菌血红蛋白的表达。【方法】以链霉菌广泛使用的整合型质粒pSET152和复制型pHZ1358为出发质粒,通过供体大肠杆菌(Escherichia coli)ET12567(pUZ8002)进行属间接合转移委内瑞拉链霉菌秦岭变种。【结果】确定了该变种的最佳接合转移条件;通过SOE-PCR(Splicing by overlap extension PCR)技术构建含PermE和vhb结构基因融合片段的整合型表达载体pJD100,转化ET12567(pUZ8002)后属间接合转移委内瑞拉链霉菌秦岭变种。通过PCR和CO结合差光谱验证了vhb基因在委内瑞拉链霉菌秦岭变种中的整合表达。【结论】本文首次探索了委内瑞拉链霉菌秦岭变种接合转移系统,确定了委内瑞拉链霉菌秦岭变种的最佳接合转移条件,并采用基因工程手段使vhb基因在委内瑞拉链霉菌秦岭变种中获得表达。  相似文献   

8.
夏焕章  吴胜 《微生物学报》2002,42(2):181-185
研究了黑暗链霉菌的基因转移系统,探索了通过PEG介导的原生质体转化、接合转移向黑暗链霉菌中转入外源DNA的可能性。多次尝试用质粒pIJ702转化黑暗链霉菌9904原生质体均未成功。对原生质体进行“热处理”后转化、利用单链DNA转化等都不能将质粒导入黑暗链霉菌中,表明黑暗链霉菌对外源DNA有很强的限制修饰作用。利用接合转移将具有oriT的大肠杆菌链霉菌穿梭质粒pHZ132转入大肠杆菌ET12567(pUZ8002)中,获得供体菌ET12567(pUZ8002,pHZ132)。将供体菌与预萌发的黑暗链霉菌9904的孢子进行接合转移,成功地将pHZ132转入黑暗链霉菌9904中。质粒pHZ132经黑暗链霉菌自身修饰后也可转入黑暗链霉菌9904菌株的原生质体中,转化率约为103/μg DNA(pHZ132)。  相似文献   

9.
本实验将PCR所得的1.8kb的地基因片段插入到pUCm-T载体的多克隆位点,得到重组质粒pUCm-T-lat.经EcoRI—HindⅢ双酶切后得到妇基因片段,与经同样双酶切的穿梭质粒pGH112进行连接,得到重组质粒pGH112-lat。将其电转至大肠杆菌E.coli BW25113/pIJ790中得到E.coli BW25113/pIJ790/pGH112-lat。同时,根据棒状链霉菌纽基因的序列及质粒pIJ773(pIJ773为可提供阿泊拉抗性的模板质粒)中阿泊拉抗性基因(aac(3)iv)的序列设计一对长59nt及58nt的引物,两引物分别含有20nt及19nt的阿泊拉抗性基因的互补序列和39nt的纽基因两端的互补序列,以质粒pip73为模板,PCR扩增得到的产物为两端带有纽基因上下游同源序列的阿泊拉抗性基因,将此PCR产物称为阿泊拉抗性框,将此阿泊拉抗性框电转至E-coli BW25113/pIJ790/pGH112-lat转化子中。在质粒pIJ790的作用下,阿泊拉抗性框中两端的纽基因同源序列与pGH112-lat中的野生型勉基因发生同源双交换,使得阿泊拉抗性框插入地基因中,得到纽基因中插入阿泊拉抗性基因(lat::apr)的重组质粒pELA。该质粒的构建为进一步构建棒状链霉菌地基因插入阻断的突变株,从而实现克拉维酸产量的提高奠定了初步基础。  相似文献   

10.
衣霉素属于核苷类抗生素,具有抑制蛋白质N-糖基化的活性,是潜在的药物先导化合物.罗中链霉菌(Streptomyces luozzhongensis)TRM49605是一株产衣霉素的链霉菌属(Streptomyces)的新物种.本研究旨在探索TRM49605中衣霉素生物合成基因簇的生物学功能,为新型药物开发提供理论依据.通过antiSMASH预测发现TRM49605中衣霉素基因簇全长29.394 kb,由26个基因组成,采用Red/ET方法通过线线重组成功构建了含有衣霉素PartⅡ片段的质粒pTRM605-24-01以及含有完整衣霉素生物合成基因簇的质粒pTRM605-24-02.通过线环重组将接合转移元件插入pTRM605-24-02获得pTRM605-24-03质粒,通过属间接合转移将衣霉素生物合成基因簇整合至天蓝色链霉菌(S. coelicolor)M145中进行表达.成功克隆获得衣霉素生物合成基因簇并异源表达,为改造衣霉素生物合成基因簇提供理论依据.  相似文献   

11.
报告基因法比较两种放线菌启动子的活性   总被引:2,自引:0,他引:2  
李佳  向四海  杨秀山  杨克迁 《微生物学报》2009,49(11):1454-1458
摘要:【目的】比较启动子Psf与红霉素抗性基因启动子(PermE*)在链霉菌中的表达强度差异。【方法】本文利用卡那霉素抗性梯度以及邻苯二酚2,3-双加氧酶显色系统,比较了两个启动子的表达差异。【结果】两个启动子在棒状链霉菌(Streptomyces clavuligerus) NRRL3585、天蓝色链霉菌(Streptomyces coelicolor)M145,委内瑞拉链霉菌(Streptomyces venezuelae)ISP5230及变铅青链霉菌(Streptomyces lividans TK  相似文献   

12.
A functional map of Streptomyces coelicolor plasmid SCP2* was deduced from derivatives constructed by in vitro deletions. Functions were analyzed on bifunctional shuttle plasmids that contained pBR322 for selection and replication in Escherichia coli and fragments of SCP2* for replication in Streptomyces griseofuscus C581 and strains of Streptomyces lividans. The aph gene for neomycin resistance from Streptomyces fradiae and the tsr gene for thiostrepton resistance from Streptomyces azureus were incorporated as selectable antibiotic resistance markers in streptomycetes. An 11.8-kb sequence bounded by EcoRI and KpnI restriction sites contains the information for self-transfer and normal replication of the plasmid. A 5.9-kb EcoRI-SalI fragment contains all of the information for normal replication. Partial digestion generated a 2.2-kb Sau3A fragment that is sufficient for replication but it produces ten times higher plasmid copy number than the basic replicon. pHJL400 and PHJL401 are useful shuttle vectors containing the moderate-copy-number streptomycete plasmid combined with the E. coli plasmid pUC19. A 1.4-kb BclI-Sau3A fragment with an additional internal BclI site contains the minimal replicon but it produces 1000 times higher plasmid copy number than the basic replicon. pHJL302 is a useful shuttle vector containing the ultrahigh-copy-number streptomycete plasmid combined with the E. coli plasmid pUC19.  相似文献   

13.
L V Wray  S H Fisher 《Gene》1988,71(2):247-256
The Streptomyces coelicolor glutamine synthetase (GS) structural gene (glnA) was cloned by complementing the glutamine growth requirement of an Escherichia coli strain containing a deletion of its glnALG operon. Expression of the cloned S. coelicolor glnA gene in E. coli cells was found to require an E. coli plasmid promoter. The nucleotide sequence of an S. coelicolor 2280-bp DNA segment containing the glnA gene was determined and the complete glnA amino acid sequence deduced. Comparison of the derived S. coelicolor GS protein sequence with the amino acid sequences of GS from other bacteria suggests that the S. coelicolor GS protein is more similar to the GS proteins from Gram-negative bacteria than it is with the GS proteins from two Gram-positive bacteria, Bacillus subtilis and Clostridium acetobutylicum.  相似文献   

14.
A plasmid, pGB112, has recently been developed to transfer DNA from Escherichia coli to Streptomyces spp via conjugation. This technique made use of (A) E. coli replicon, (B) ampicillin (amp) resistance gene for selection in E. coli and thiostrepton (tsr) resistance gene for selection in Streptomyces, (C) a fragment of SCP2* replicon, (D) a 2.6 kb fragment of tra-cassette which consists of pIJ101 transfer gene (tra) and two ermE promoters, (E) a 0.8 kb fragment of oriT of (IncP) RK2. The results showed that this plasmid was able to transfer plasmid DNA from E. coli to Streptomyces coelicolor via conjugation, and that it could also transfer DNA between Streptomyces strains. Since this plasmid has both pBR322 and SCP2* replicons, it may provide a novel and useful method for genetic operation in E. coli and Streptomyces.An erratum to this article can be found at  相似文献   

15.
Shuttle vectors capable of replication in both Escherichia coli and Bacteroides fragilis have been developed. Conjugal transfer of these plasmids from E. coli to B. fragilis is facilitated by inclusion of the origin of transfer of the IncP plasmid RK2. The vectors pDK1 and pDK2 provide unique sites for cloning selectable markers in Bacteroides. pOA10 is a cosmid vector containing the replication region of pCP1 necessary for maintenance in Bacteroides. pDK3, pDK4.1, and pDK4.2 contain the Bacteroides clindamycin resistance gene allowing selection and maintenance in B. fragilis of plasmids containing inserted DNA fragments. pDK3 was used to test the expression in B. fragilis of five foreign tetracycline resistance (TcR) genes. The tetA, -B, and -C markers from facultative gram-negative bacteria, as well as a TcR determinant from Clostridium perfringens, did not express TcR in B. fragilis. The tetM gene, originally described in streptococci, encoded a small but reproducible increase of TcR in Bacteroides. These studies demonstrate the utility of shuttle vectors for introducing cloned genes into Bacteroides and underscore the differences in gene expression in these anaerobes.  相似文献   

16.
Atypical psychrophilic Aeromonas salmonicida isolates were obtained from farmed and wild fish in Northeastern North America. These bacteria were isolated between 1992 and 2001 and carried tetracycline resistance (Tc(r)) plasmids of approximately 58 kb. The nine isolates had plasmids which could be divided into four groups based on the specific tetracycline resistance (tet) gene carried [tet(A) or tet(B)], incompatibility of the plasmid [IncU or other], whether the plasmid carried the IS6100 sequences, the sul1 gene, coding for sulfonamide resistance, the dfrA16 gene, coding for trimethoprim resistance, and/or carried a complete Tn1721, and their ability to transfer their Tc(r) plasmids to an Escherichia coli recipient at 15 degrees C. Five of the isolates, with genetically related Tc(r) plasmids, were able to transfer their plasmids to an E. coli recipient at frequencies ranging from 5.7x10(-4) to 2.8x10(-6) per recipient. The 1992 isolate carried a genetically distinct plasmid, which transferred at a slightly higher rate. The three remaining isolates carried one of two genetically different plasmids, which were unable to transfer to an E. coli recipient. Conjugal transfer at 15 degrees C is the lowest temperature that has been documented in bacteria.  相似文献   

17.
Biochemical and genetic data indicate that in Streptomyces coelicolor A3(2) the majority of the genes involved in the biosynthesis of histidine are clustered in a small region of the chromosome [Carere et al., Mol. Gen. Genet. 123 (1973) 219-224; Russi et al., Mol. Gen. Genet. 123 (1973) 225-232]. To investigate the structural organization and the regulation of these genes, we have constructed genomic libraries from S. coelicolor A3(2) in pUC vectors. Recombinant clones were isolated by complementation of an Escherichia coli hisBd auxotroph. A recombinant plasmid containing a 3.4-kb fragment of genomic DNA was further characterized. When cloned in the plasmid vector, pIJ699, this fragment was able to complement S. coelicolor A3(2) hisB mutants. Overlapping clones spanning a 15-kb genomic region were isolated by screening other libraries with labeled DNA fragments obtained from the first clone. Derivative clones were able to complement mutations in four different cistrons of the his cluster of S. coelicolor A3(2). Nucleotide sequence analysis of a 4-kb region allowed the identification of five ORFs which showed significant homology with the his gene products of E. coli. The order of the genes in S. coelicolor A3(2) (5'--hisD-hisC-hisBd-hisH-hisA-3') is the same as in the his operon of E. coli.  相似文献   

18.
Previous work has detected an RNase E-like endoribonucleolytic activity in cell extracts obtained from Streptomyces. Here, we identify a Streptomyces coelicolor gene, rns, encoding a 140 kDa protein (RNase ES) that shows endoribonucleolytic cleavage specificity characteristic of RNase E, confers viability on and allows propagation of Escherichia coli cells lacking RNase E and accomplishes RNase E-like regulation of plasmid copy number in E. coli. However, notwithstanding its complementation of rne-deleted E. coli, RNase ES did not accurately process 9S rRNA from E. coli. Additionally, whereas RNase E is normally required for E. coli survival, rns is not an essential gene in S. coelicolor. Deletion analysis mapped the catalytic domain of RNase ES near its centre and showed that regions located near the RNase ES termini interact with an S. coelicolor homologue of polynucleotide phosphorylase (PNPase) - a major component of E. coli RNase E-based degradosomes. The interacting arginine- and proline-rich segments resemble the C-terminally located degradosome scaffold region of E. coli RNase E. Our results indicate that RNase ES is a structurally shuffled RNase E homologue showing evolutionary conservation of functional RNase E-like enzymatic activity, and suggest the existence of degradosome-like complexes in Gram-positive bacteria.  相似文献   

19.
The shuttle Escherichia coli - Streptomyces plasmids were used to transform S. lividans 66. Plasmid DNAs isolated from this strain transform it 10-1000-fold more efficiently than DNAs from E. coli. Rare transformant cured from most restricted plasmid is more efficient recipient of plasmid DNA from E. coli and has the property of R +/- M+ mutant. Restriction in S. lividans 66 correlates with the appearance in DNA from E. coli of the sites susceptible to Scg2I restriction endonuclease. The latter was isolated earlier from recombinant strain Rcg2, a hybrid between S. griseus Kr. 15 and S. coelicolor A3(2). Scg2I possesses the recognition sequence CCTAGG, like EcoRII, MvaI and Eco dcm methylase. The DNA resistant to Scg2I cleavage retained this ability after in vitro modification by EcoRII methylase. So, the resistance of DNA to Scg2I cleavage is not connected with methylation at 4th and 5th position of second cytosine in the recognition sequence. Neither restriction of plasmid DNA in S. lividans 66 is dependent on dcm modification in E. coli, though its dependence on dam modification is not excluded. It is assumed that the restriction in S. lividans 66 is specified by endonuclease analogous to Scg2I.  相似文献   

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