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1.
将苏云金胞杆菌以色列亚种的杀蚊晶体蛋白基因cry11A亚克隆到大肠杆菌-蓝藻的穿梭质粒载体pERL25C然后用三亲本杂交的方法将重组质粒转移到一种具有固氮能力且可被蚊幼虫蚕食的鱼腥藻(Anabaena)PCC7120中,Southernblot及Westernblot分析表明cry11A基因在鱼腥藻PCC7120中得以克隆和表达,但生物测定未能检测到转基因鱼腥藻对库蚊(Culex)的毒性,可能是因  相似文献   

2.
重组人粒细胞集落刺激因子(rhG-CSF)基因在鱼腥藻中的克隆   总被引:3,自引:0,他引:3  
为了将rhG-CSF基因在鱼腥藻PCC 7120中克隆,用于制备口服制剂,利用DNA重组技术,在不改变阅读杠的前提下,将hG-CSF基因进行突变,并插入到pUC-19载体上,构建中间载体pUC=G-CSF;将pUC-G-CSF插入到pRL-489的启动子PpsbA的下游,构建穿梭表达载体pRL-G-CSF;通过三亲接合转移方法,将pRL-G-CSF转入丝状体蓝藻鱼腥藻PCC 7120内。本试验得到了有抗生素性的鱼腥藻,并用PCR技术检测到rhG-CSF基因在转基因鱼腥藻中存在。  相似文献   

3.
应用反义技术对鱼腥藻7120切的内源glnA基因的表达进行调控,首次获得了人工反义系统的蓝藻品系。先从编码谷酰胺合成酶(GS)的基因glnA中取得部分结构基因片段,与表达质粒载体pRL-439及穿梭质粒载体pDC-8相连接。通过酶切鉴定筛选出反向克隆的穿梭表达质粒pDC-AM,然后应用三亲接合转移法把它转入鱼腥藻对7120.通过新霉素筛选,酶谱鉴定,斑点杂交,质粒的交叉转化以及内源glnA基因表达的GS活性分析,GS相关的胞外泌氨分析及所获藻株的形态学变化,证明已在鱼腥藻7120中建立了人工反义glnA基因的品系。  相似文献   

4.
将cry1Ac10基因和苏云金芽胞杆菌的复制起始区连 接在一起,并在其两侧按相同方向各连接一个来自苏云金芽胞杆菌转座子Tn4430的解离位点,构成转移单位。再将革兰氏阳性细菌的抗性标记基因和大肠杆菌克隆载体pUC19与之连接,获得含cry1Ac10基因的解离载体pBMB801。将其转化苏云金芽胞杆菌无晶体突变体,再导入含解离酶基因的辅助质粒pBMB1200。在解离酶作用下,两个解离位点间发生重组,消除基在操作中的抗性标记基因等非必需基因片段,获得仅保留有完整cry1Ac10基因和来 自苏云金芽胞杆菌质粒复制起始区,在无抗生素选择压力下能稳定遗传的重组质粒pBMB801B 。  相似文献   

5.
苏云金芽胞杆菌幕虫亚种的伴胞晶体在预芽胞外壁内侧形成,呈现晶体芽胞粘连的现象。根据已发表的cry26Aa1和cry28Aa1基因序列设计引物,从苏云金芽胞杆菌幕虫亚种T02中扩增得到cry26Aa和cry28Aa基因,通过穿梭载体将这两个基因分别和同时转化到苏云金芽胞杆菌无晶体突变株BMB171后,透射电镜下可在芽胞外壁内侧和外侧同时观察到伴胞晶体,而单独表达时可在芽胞外壁外侧观察到伴胞晶体。结果表明,伴胞晶体在芽胞外壁内侧表达不单独依赖于启动子的时空调控,可能还受到晶体蛋白相互作用的影响。  相似文献   

6.
苏云金芽胞杆菌幕虫亚种的伴胞晶体在预芽胞外壁内侧形成,呈现晶体芽胞粘连的现象。根据已发表的cry26Aa1和cry28Aa1基因序列设计引物,从苏云金芽胞杆菌幕虫亚种T02中扩增得到cry26Aa和cry28Aa基因,通过穿梭载体将这两个基因分别和同时转化到苏云金芽胞杆菌无晶体突变株BMB171后,透射电镜下可在芽胞外壁内侧和外侧同时观察到伴胞晶体,而单独表达时可在芽胞外壁外侧观察到伴胞晶体。结果表明,伴胞晶体在芽胞外壁内侧表达不单独依赖于启动子的时空调控,可能还受到晶体蛋白相互作用的影响。  相似文献   

7.
正鱼腥藻PCC7120是一种固氮丝状蓝藻,当环境中化合态氮源充足时,其藻丝只有进行光合作用的营养细胞;在环境中缺乏可利用的氮源时,部分营养细胞会在藻丝上以一种半规律的格式分化成异形胞(异形胞间隔约10个营养细胞),从而进行固氮作用。早在1984年,Wolk实验室通过与大肠杆菌接合转移的方式,成功地将穿梭质粒转入鱼腥藻PCC7120,建立了遗传转移系统~([1])。在2001年,日本Kazusa研究中心完成了对鱼腥藻PCC7120全基因组测序~([2])。有规律的细胞分化格式,成熟的遗传转移系统以及完整可用的基因组序列使得鱼腥藻PCC7120  相似文献   

8.
利用绿色荧光蛋白基因gfp研究芽胞杆菌的启动子活性   总被引:6,自引:3,他引:3  
利用绿色荧光蛋白基因gfpmut3,分别标记苏云金芽胞杆菌(Bacillus thuringiensis)的cry3A启动子Pcry3A、BtI_BtII启动子PBtI_BtII和来自蜡状芽胞杆菌特异启动子P44-12以研究其表达差异。其中,Pcry3A和PBtI_BtII分别与gfpmut3构成融合基因,以调控gfpmut3在苏云金芽胞杆菌中的表达。将重组质粒pGFP_304(含P44-12)、pGFPExpA(含Pcry3A_ gfpmut3融合基因)和pGFPExpB(含PBtI_BtII_ gfpmut3融合基因)分别导入大肠杆菌(Escherichia coli)和苏云金芽胞杆菌后发现,P44-12和PBtI_BtII在大肠杆菌与苏云金芽胞杆菌中均可表达gfpmut3,其中PBtI_BtII在大肠杆菌中具有极强的启动基因表达的能力。而Pcry3A不能启动gfpmut3在大肠杆菌中表达,在苏云金芽胞杆菌中启动的gfpmut3表达的荧光强度也较弱。进一步通过荧光显微镜和生物活性检测器对含重组质粒pGFP_304、pGFPExpA和pGFPExpB的转化子分别进行荧光检测及微量热检测。结果表明,3种启动子驱动下的gfpmut3基因均可在苏云金芽胞杆菌无晶体突变株BMB171中表达并检测得到不同的发光类型。微量热法检测发现P44_12和PBtI_BtII启动gfpmut3表达的代谢热低于Pcry3A驱动gfpmut3表达的代谢热。  相似文献   

9.
用Bac-to-Bac系统,构建了包含极晚期基因ph启动子驱动的带有全长苏云金芽胞杆菌cry1Ac10基因和完整多角体基因的重组质粒pFCP,用该重组质粒感染昆虫Sf9细胞,得到了带有多角体和能够表达cry1Ac10基因的重组杆状病毒vFcph,并在昆虫细胞中表达了Cry1Ac10蛋白。同时构建了含cry1Ac10的穿梭载体.pHTC,并分别转化大肠杆菌、枯草杆菌和苏云金杆菌晶体缺陷型菌株,结果表明此三种工程菌均表达了分子量为133.3kDa的原毒素蛋白,其中在苏云金芽胞杆菌中的表达量最高。生物测定表明重组杆状病毒vFcph的表达产物具有杀虫活性,能增加杆状病毒力,加快杆状病毒杀虫速度,说明利用杆状病毒极晚期基因启动子驱动苏云金芽胞杆菌杀虫晶体蛋白表达,从而改善杆状病毒的杀虫特性是可行的。  相似文献   

10.
苏云金芽胞杆菌幕虫亚种T02菌株的伴胞晶体在芽胞外壁内侧形成,呈现晶胞粘连的现象。在此菌株中克隆了cry26 Aa和cry28 Aa两个基因,并对晶胞粘连现象与质粒的相关性做了系统研究。通过消除幕虫亚种T02菌株的质粒,得到了仅消除cry26 Aa所在质粒的菌株BMB1151和无质粒的菌株BMB1152。通过穿梭载体将cry26 Aa和cry28 Aa两个基因分别和同时转化无质粒突变株BMB1152并表达,形成的晶体与芽胞独立存在不能粘连,表明在幕虫亚种染色体背景下仅仅cry的表达不能形成晶胞粘连现象,从而推断晶胞粘连现象可能与幕虫亚种两个基因所在的质粒有关;进一步的研究发现将cry26 Aa在仅消除cry26 Aa所在质粒的突变株BMB1151中表达,形成的晶体与芽胞也分别独立存在不能粘连,从而进一步推断幕虫亚种晶胞粘连现象与cry26 Aa所在质粒有关。  相似文献   

11.
Mutants of Anabaena sp. strain PCC 7120 unable to grow aerobically on dinitrogen were isolated by mutagenesis with UV irradiation, followed by a period of incubation in yellow light and then by penicillin enrichment. A cosmid vector, pRL25C, containing replicons functional in Escherichia coli and in Anabaena species was constructed. DNA from wild-type Anabaena sp. strain PCC 7120 was partially digested with Sau3AI, and size-fractionated fragments about 40 kilobases (kb) in length were ligated into the phosphatase-treated unique BamHI site of pRL25C. A library of 1,054 cosmid clones was generated in E. coli DH1 bearing helper plasmid pDS4101. A derivative of conjugative plasmid RP-4 was transferred to this library by conjugation, and the library was replicated to lawns of mutant Anabaena strains with defects in the polysaccharide layer of the envelopes of the heterocysts. Mutant EF116 was complemented by five cosmids, three of which were subjected to detailed restriction mapping; a 2.8-kb fragment of DNA derived from one of the cosmids was found to complement EF116. Mutant EF113 was complemented by a single cosmid, which was also restriction mapped, and was shown to be complemented by a 4.8-kb fragment of DNA derived from this cosmid.  相似文献   

12.
解毒酶基因的克隆及其在大肠杆菌和蓝藻中的表达(英文)   总被引:1,自引:0,他引:1  
近几年来 ,在明确了杀虫药剂抗性机理的基础上 ,从杀虫药剂抗性的昆虫中分离出高抗性基因 (即解毒酶基因 ) ,将该基因克隆到表达载体 pRL 4 39上 ,得到表达载体 pRL B1,将其转化大肠杆菌HB10 1,获得了可以表达解毒酶基因的转基因工程菌株。同时构建了穿梭表达载体 pDC B1,并转化大肠杆菌HB10 1后 ,在抗生素氨卞霉素 (30 μg/mL)和卡那霉素 (30 μg/mL)平板上挑选阳性克隆 ,将阳性克隆的细胞、蓝藻和结合质粒以三亲结合转移的方式转入蓝藻。斑点杂交、Southern分析结果表明已经获得了Synechococcussp .PCC 794 2转基因工程藻。  相似文献   

13.
Plasmid and chromosomal DNA recovery by electroextraction of cyanobacteria   总被引:1,自引:0,他引:1  
Abstract High voltage electroporation has been investigated as a method for rapid recovery of plasmid and chromosomal DNA from the cyanobacteria Nostoc PCC 7121, Synechococcus PCC 7002, and Anabaena PCC 7120. Pulses of 18 kV/cm and higher applied to concentrated Nostoc cells carrying a shuttle plasmid (pRL25) resulted in copious release of nucleic acids and phycobiliproteins into the suspending medium. Small portions of these supernatants, when electroporated with Escherichia coli , gave rise to hundreds of E. coli transformants which contained pRL25. Electroporation of Synechococcus carrying plasmid pAQE19 did not cause detectable release of macromolecules but did reveal a low-level, voltage independent 'leakage' of pAQE19 into the medium. Electroextraction of Nostoc or Anabaena followed by addition of E. coli and delivery of a second high-voltage pulse permitted direct, one-cuvette transfer of shuttle plasmids from these cyanobacteria into E. coli . Electroextraction of single cyanobacterial colonies, as shown for Nostoc , also released sufficient chromosomal DNA for amplification of specific sequences by the polymerase chain reaction.  相似文献   

14.
Various combinations of the genes cryIVA (cry4A), cryIVD (cry11A), and p20 from Bacillus thuringiensis subsp. israelensis were introduced into the nitrogen-fixing cyanobacterium Anabaena sp. strain PCC 7120 by means of Escherichia coli-Anabaena shuttle vector pRL488p and were expressed under control of two tandem strong promoters, a cyanobacterial promoter (PpsbA) and an E. coli T7 promoter (PA1). Two of the clones carrying cryIVA plus cryIVD, one with p20 and one without p20, displayed toxicity against third-instar larvae of Aedes aegypti at levels greater than any level previously reported for transgenic cyanobacteria.  相似文献   

15.
An 11-kilobase-pair element interrupts the nifD gene in vegetative cells of Anabaena sp. strain PCC 7120. The nifD element normally excises only from the chromosomes of cells that differentiate into nitrogen-fixing heterocysts. The xisA gene contained within the element is required for the excision. Shuttle vectors containing the Escherichia coli tac consensus promoter fused to various 5' deletions of the xisA gene were constructed and conjugated into Anabaena sp. strain PCC 7120 cells. Some of the expression plasmids resulted in excision of the nifD element in a high proportion of vegetative cells. Excision of the element required deletion of an xisA 5' regulatory region which presumably blocks expression in Anabaena sp. strain PCC 7120 vegetative cells but not in E. coli. Strains lacking the nifD element grew normally in medium containing a source of combined nitrogen and showed normal growth and heterocyst development in medium lacking combined nitrogen. The xisA gene was shown to be the only Anabaena gene required for the proper rearrangement in E. coli of a plasmid containing the borders of the nifD element.  相似文献   

16.
17.
刘志伟  张晨  郭勇 《生物技术》2004,14(2):11-13
为了实现转基因鱼腥藻培养生产TMF的目的,讲究了转基因鱼腥藻的稳定性。影印法证实转TNF-α。基因鱼腥藻7120能保持质粒分配稳定性。比较无选择压力下连续传代的转丛因鱼醒藻7120在不同培养基中的生长和外源基因表达,证实没有发生质粒部分缺失,但转基因鱼腥藻在无选择压力下会降低重组质粒拷贝数。在培养过程中,种子培养越含有的新霉素可以保持生产过程质粒稳定,这可以大火减少新霉素用量。  相似文献   

18.
人肝金属硫蛋白-I_A基因在鱼腥藻中的克隆与表达   总被引:2,自引:0,他引:2  
将人工合成的人肝金属硫蛋白(metalothionein,简称MT)-IA基因插入至中间载体pRL-439上强启动子psbA后,再将其与穿梭载体pKT-210相连,得到大肠杆菌-蓝藻穿梭表达载体pKT-MT,用三亲接合转移法将pKT-MT转入丝状体蓝藻-鱼腥藻7120,经链霉素筛选,得到了稳定的转人肝MT-IA基因鱼腥藻.纯化单藻落,液体扩大培养.从鱼腥藻中提取的质粒经Southern印迹分析,确定人肝MT-IA基因已转入鱼腥藻7120中,Western印迹分析表明,金属硫蛋白在转人肝MT-IA基因鱼腥藻中得到了表达.经原子吸收光谱法测定表达量约为700μgMT/g鲜藻,重金属耐受性实验表明,得到了能耐受重金属-镉的转人肝MT-IA基因鱼腥藻,它将在清除水域中重金属污染和医药研究方面发挥重要作用.  相似文献   

19.
Structural studies of biomolecules using nuclear magnetic resonance (NMR) rely on the availability of samples enriched in (13)C and (15)N isotopes. While (13)C/(15)N-labeled proteins are generally obtained by overexpression in transformed Escherichia coli cells cultured in the presence of an expensive mixture of labeled precursors, those of the photoautotrophic cyanobacterium Anabaena sp. PCC 7120 can be uniformly labeled by growing them in medium containing Na(15)NO(3) and NaH(13)CO(3) as the sole nitrogen and carbon sources. We report here a novel vector-host system suitable for the efficient preparation of uniformly (13)C/(15)N-labeled proteins in Anabaena sp. PCC 7120. The 24-kDa N-terminal domain of the E. coli gyrase B subunit, used as a test protein, was cloned into the pRL25C shuttle vector under the control of the tac promoter. The transformed Anabaena cells were grown in the presence of the labeled mineral salts and culture conditions were optimized to obtain over 90% of (13)C and (15)N enrichment in the constitutively expressed 24-kDa polypeptide. The yield of purified 24-kDa protein after dual isotope labeling under anaerobic conditions was similar to that obtained with E. coli cells bearing a comparable expression vector and cultured in parallel in a commercially available labeling medium. Furthermore, as probed by NMR spectroscopy and mass spectrometry, the 24-kDa N-terminal domain expressed in Anabaena was identical to the E. coli sample, demonstrating that it was of sufficient quality for 3D-structure determination. Because the Anabaena system was far more advantageous taking into consideration the expense for the labels that were necessary, these results indicate that Anabaena sp. PCC 7120 is an economic alternative for the (13)C/(15)N-labeling of soluble recombinant proteins destined for structural studies.  相似文献   

20.
Two sequences with homology to a thioredoxin oligonucleotide probe were detected by Southern blot analysis of Anabaena sp. strain PCC 7120 genomic DNA. One of the sequences was shown to code for a protein with 37% amino acid identity to thioredoxins from Escherichia coli and Anabaena sp. strain PCC 7119. This is in contrast to the usual 50% homology observed among most procaryotic thioredoxins. One gene was identified in a library and was subcloned into a pUC vector and used to transform E. coli strains lacking functional thioredoxin. The Anabaena strain 7120 thioredoxin gene did not complement the trxA mutation in E. coli. Transformed cells were not able to use methionine sulfoxide as a methionine source or support replication of T7 bacteriophage or the filamentous viruses M13 and f1. Sequence analysis of a 720-base-pair TaqI fragment indicated an open reading frame of 115 amino acids. The Anabaena strain 7120 thioredoxin gene was expressed in E. coli, and the protein was purified by assaying for protein disulfide reductase activity, using insulin as a substrate. The Anabaena strain 7120 thioredoxin exhibited the properties of a conventional thioredoxin. It is a small heat-stable redox protein and an efficient protein disulfide reductase. It is not a substrate for E. coli thioredoxin reductase. Chemically reduced Anabaena strain 7120 thioredoxin was able to serve as reducing agent for both E. coli and Anabaena strain 7119 ribonucleotide reductases, although with less efficiency than the homologous counterparts. The Anabaena strain 7120 thioredoxin cross-reacted with polyclonal antibodies to Anabaena strain 7119 thioredoxin. However, this unusual thioredoxin was not detected in extracts of Anabaena strain 7120, and its physiological function is unknown.  相似文献   

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