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1.
为了研究杂交构树UDP-葡萄糖脱氢酶基因(DDBJ,BpUGDH基因登录号为LC457701)启动子不同区域的表达活性,利用5'端缺失及同源重组实验技术,将5个不同长度的BpUGDH启动子5'端缺失片段与GUS基因连接,并通过农杆菌介导法瞬时转化烟草;同时,为了定位BpUGDH基因编码的蛋白在细胞中表达的具体位置,利用GFP报告基因融合目的基因进行蛋白质的亚细胞定位。结果显示:BpUGDH基因启动子-244 bp以内的序列均能介导GUS基因的诱导表达,并且-973、-465、-355、-281和-244 bp之间的区域可能对BpUGDH基因启动子的活性发挥着至关重要的作用。另外,BpUGDH基因编码蛋白的亚细胞定位结果显示:BpUGDH位于叶绿体中。  相似文献   

2.
将拟南芥基因AtGLR1.4启动子驱动的AtGLR1.4基因与绿色荧光蛋白(GFP)基因融合后,利用根瘤农杆菌介导瞬时转化法(Fast Agro-mediated Seedling Transfomation,FAST)浸染拟南芥幼苗,对其进行亚细胞定位的研究。转基因植株通过激光共聚焦扫描显微镜的观察,发现GFP绿色荧光在叶片表皮细胞的细胞膜上特异表达,表明At-GLR 1.4蛋白定位于细胞质膜上,为其后续的功能研究提供了线索。  相似文献   

3.
【目的】分析致病疫霉效应蛋白Pi16275的超量表达对病原菌致病性的影响,明确Pi16275的亚细胞定位,筛选Pi16275在植物中的互作靶标蛋白及靶标蛋白在抵御病原菌侵染过程中的作用,初步揭示Pi16275在病原菌侵染植物过程中的作用机制。【方法】利用农杆菌介导的烟草瞬时表达系统在烟草叶片表皮细胞中瞬时表达Pi16275并观察其亚细胞定位,同时在瞬时表达部位接种致病疫霉游动孢子并统计病斑面积;通过酵母核系统cDNA文库及酵母双杂交技术筛选、验证,确定Pi16275在马铃薯中的靶标蛋白;运用病毒介导的基因沉默技术在植物中沉默靶标蛋白基因,探究基因沉默是否影响植物对病原菌的抗性。【结果】在烟草叶片中瞬时表达Pi16275显著促进致病疫霉的侵染;Pi16275定位在植物细胞核、细胞质及细胞膜中;初步筛选到3个与Pi16275互作的马铃薯蛋白:40S核糖体亚基蛋白S5 (StRPS5)、粘蛋白2 (StMUC2)、V型ATP酶E亚基类似蛋白(StVAEL);沉默StRPS5的同源基因后显著降低了烟草对致病疫霉的抗性。【结论】Pi16275在致病疫霉侵染植物过程中发挥重要作用。  相似文献   

4.
有关非洲木薯花叶病毒(ACMV)、番茄金色花叶病毒(TGMV)的研究表明,双生病毒编码的反式作用因子AC2反式激活病毒链基因启动子的瞬时表达。以棉花曲叶病毒(CLCuV)侵染的烟草叶片组织总的DNA为模板,通过聚合酶反应扩增CLCuV的AC2基因片段并插入克隆载体。将AC2置于CaMV35S启动子下构建了瞬时表达载体。通过基因他法将质粒载体导入烟草(Nicotiana tabacumL.)和棉花(Gossypium hirstumL.)叶片细胞中进行瞬时表达,结果表明,在反式作用因子AC2的激活下,病毒链基因启动子驱动的GUS活性明显增强,然而激活后的病毒链基因启动子的活性仍低于互补链基因方向启动子;其表达方式与互补链基因启动子相似,即在叶肉及叶脉维管组织均有较高的活性。还探讨了AC2在土壤杆菌介导的转基因植物中的表达行为。  相似文献   

5.
以水曲柳基因组DNA为模板,用Site Finding-PCR法扩增得到节律基因LHY(late elongated hypocotyl)启动子序列,长度为1 360 bp。PLACE启动子预测工具分析表明,序列中含有转录必备的TATA box、CAAT box以及一些非生物胁迫和激素响应元件等。构建植物GFP瞬时表达载体p PXGFP-P-LHY,农杆菌介导转化烟草叶片和白桦悬浮细胞,GFP检测结果表明,LHY启动子能够启动GFP基因在烟草和白桦细胞中表达,且对非生物胁迫(低温、高温、盐)产生响应;构建植物GUS报告基因整合表达载体p PCXGUS-P-LHY,农杆菌介导法瞬时转化烟草,GUS染色结果表明,LHY启动子的活性具有不同程度的时空特性。  相似文献   

6.
克隆地上部特异表达的启动子——cab2(chlorophyll a/b binding protein 2,cab2)基因的启动子,构建该启动子驱动下的番茄原系统素(Prosystemin;PS)与GFP融合的植物表达载体并获得转基因植株。利用农杆菌介导法转化拟南芥,通过RT-PCR的方法及激光共聚焦显微镜观察启动子驱动PS-GFP的表达及其亚细胞定位。以拟南芥基因组为模板,利用高保真聚合酶获得了cab2启动子的目的片段,并将其与接GFP的番茄原系统素载体(SlPS)融合,激光共聚焦显微镜观察表明,该启动子驱动的基因正常表达和并定位于细胞质中。克隆获得到了cab2基因的启动子,该启动子能够驱动番茄原系统素和GFP的融合蛋白正常表达和定位。  相似文献   

7.
本研究利用PCR技术从’赤霞珠’葡萄(Vitis vinifera L.cv Cabernet Sauvignon)基因组DNA中扩增得到与花色素3,5-O-双葡萄糖苷合成相关的Vv5GT3基因的启动子。对启动子序列的顺式作用元件进行预测分析发现,Vv5GT3基因的启动子序列除了含有植物启动子的基本结构元件外,还有多个与胁迫和激素诱导相关的顺势调控元件。以荧光素酶基因(Luc)作为为报告基因,构建了Vv5GT3基因启动子的植物表达载体p CAMBIA1300-Vv5GT3 promoter。以根癌农杆菌GV3101感受态细胞为受体,转化植物融合表达载体进行瞬时表达,并对启动子进行了功能活性分析,结果表明该启动子能够驱动Luc报告基因在烟草叶片组织中表达。用不同的光照条件处理被农杆菌侵染的烟草叶片,结果显示长时间光照有利于启动子的激活,而遮光减弱了Vv5GT3启动子的活性。  相似文献   

8.
以含有基因转化操作过程中常用的两种质粒载体pBI121和pCAMBIA2301的根癌农杆菌EHA105为材料,分别转化甜瓜子叶,应用组织化学方法检测了甜瓜子叶和子叶培养后的愈伤组织及根癌农杆菌菌液的瞬时转化效果,研究了两种不同的质粒载体上所含的gus基因在根癌农杆菌中和植物细胞中的表达特性.结果表明,不同质粒载体上所含的gus基因的表达特性不同,质粒载体pBI121上所含的gus基因既能在植物细胞中能表达,也能在根癌农杆菌细胞中表达,而质粒载体pCAMBIA2301上所含的gus基因能在植物细胞中表达,但是不能在根癌农杆菌细胞中表达.  相似文献   

9.
家蚕丝素重链启动子驱动DsRed的瞬时分泌表达   总被引:2,自引:0,他引:2  
根据家蚕丝蛋白基因的启动子活性高、丝蛋白具有高效分泌的特性,克隆了家蚕丝素重链基因(Fib-H)启动子及其下游的信号肽序列(FibHS),将DsRed基因与信号肽序列融合构建了分泌型瞬时表达载体;转染细胞实验显示,该载体能在家蚕BmN细胞中瞬时表达DsRed;家蚕注射载体后,可在丝腺腔中检测到红色荧光,表明瞬时表达的DsRed分泌到丝腺腔,推测所克隆的序列具有信号肽的功能。此外,本研究为家蚕丝腺生物反应器分泌表达外源基因的研究奠定了基础。  相似文献   

10.
β-半乳糖苷酶(β-galactosidase, EC 3.2.1.23)由植物中广泛分布的一类糖基水解酶组成, 被认为与细胞壁多糖的代谢相关. 棉花(Gossypium hirsutum) β-半乳糖苷酶基因已被成功分离, 被命名为GhGal1. RNA杂交实验显示该基因在棉花纤维发育的伸长期优势表达. 为了分析GhGal1基因的时空表达调控, 本研究构建了GhGal1启动子区域(1770 bp)与β-葡糖醛酸糖苷酶(glucuronidase, GUS)基因融合的双元载体, 通过农杆菌转化烟草植株. 对转基因植株分析的结果表明: 此转基因果实中的GUS活性比阴性和阳性对照的活性高. GUS组织定位分析表明: β-半乳糖苷酶基因能在根组织的分生区、子叶、维管束组织、果实和表皮毛中表达. 此外, 调控区域的序列分析揭示该序列含有一些果实/种子特异表达以及与表皮毛表达相关的保守元件. 这些结果显示了GhGal1启动子在转基因烟草植株中的时空表达特征, 并提供了GhGal1基因参与棉花纤维发育的一些重要线索.  相似文献   

11.
植物基因转化的成功依赖于一个良好的转化系统,能有效地将外源基因导入受体细胞,并得以表达。通过农杆菌介导的马铃薯遗传转化体系主要受基因型、预培养、菌液浓度及侵染时间、共培养等因素的影响,由于转化受体的异质性,有必要根据实际情况进行验证和改进,以获得最适转化条件。本研究以马铃薯无菌苗的叶片、茎段为外植体,通过农杆菌介导法,将抗马铃薯X病毒和Y病毒的RNA干扰型基因结构转入马铃薯。通过研究外植体预培养、菌液浓度及侵染时间、共培养等不同转化条件及影响因素对马铃薯遗传转化的影响,建立一种高效的马铃薯遗传转化体系,试验得出最佳转化条件为外植体预培养2 d,然后用OD600=0.5的农杆菌液侵染10 min,共培养2 d。本研究为下一步的对PVX和PVY双抗的马铃薯无标记转基因研究提供技术参考。  相似文献   

12.
Agrobacterium tumefaciens -mediated transformation of soybean [Glycine max (L.) Merrill. cv. Jack] using immature zygotic cotyledons was investigated to identify important factors that affected transformation efficiency and resulted in the production of transgenic soybean somatic embryos. The factors evaluated were initial immature zygotic cotyledon size, Agrobacterium concentration during inoculation and co-culture and the selection regime. Our results showed that 8- to 10-mm zygotic cotyledons exhibited a higher transformation rate, as indicated by transient GUS gene expression, whereas the smaller zygotic cotyledons, at less than 5 mm, died shortly after co-cultivation. However, the smaller zygotic cotyledon explants were found to have a higher embryogenic potential. Analysis of Agrobacterium and immature cotyledon explant interactions involved two Agrobacterium concentrations for the inoculation phase and three co-culture regimes. No differences in explant survival or somatic embyogenic potential were observed between the two Agrobacterium concentrations tested. Analysis of co-culture regimes revealed that the shorter co-culture times resulted in higher explant survival and higher somatic embryo production on the explants, whereas the co-culture time of 4 days severely reduced survival of the cotyledon explants and lowered their embryogenic potential. Analysis of selection regimes revealed that direct placement of cotyledon explants on hygromycin 25 mg/l was detrimental to explant survival, whereas 10 mg/l gave continued growth and subsequent somatic embryo development and plant regeneration. The overall transformation frequency in these experiments, from initial explant to whole plant, was 0.03 %. Three fertile soybean plants were obtained during the course of these experiments. Enzymatic GUS assays and Southern blot hybridizations confirmed the integration of T-DNA and expression of the GUS-intron gene in the three primary transformants. Analysis of 48 progeny revealed that three copies of the transgene were inherited as a single Mendelian locus. Received: 6 December 1999 / Revised: 11 February 2000 / Accepted: 14 March 2000  相似文献   

13.
以南瓜金辉一号(Cucurbita moschata' Jinhui1')为实验材料,利用根癌农杆菌(Agrobacterium tumefaciens)介导转化南瓜子叶节,研究了预培养时间、侵染时间、乙酰丁香酮(AS)浓度和共培养时间,抗生素羧苄青霉素(Carb)、头孢霉素(Cef)以及筛选剂卡那霉素(Kan)等因素对离体不定芽的影响,建立了南瓜最适遗传转化体系。结果表明:外植体预培养0天,侵染时间30分钟,AS浓度为100mg·L^-1,共培养5天可获得最高遗传转化效率;最适除菌剂为Cef,其最适浓度为500mg·L^-1;最适Kan筛选浓度为100mg·L^-1;在MS培养基上培养抗性芽生根,经PCR和Southern blot检测,证明为转基因植株。  相似文献   

14.
农杆菌介导南瓜遗传转化体系的建立   总被引:1,自引:0,他引:1  
付洪冰  崔崇士  赵曦  刘琦 《植物学报》2010,45(4):472-478
以南瓜金辉一号(Cucurbita moschata ‘Jinhui 1’)为实验材料, 利用根癌农杆菌(Agrobacterium tumefaciens)介导转化南瓜子叶节, 研究了预培养时间、侵染时间、乙酰丁香酮(AS)浓度和共培养时间, 抗生素羧苄青霉素(Carb)、头孢霉素(Cef)以及筛选剂卡那霉素(Kan)等因素对离体不定芽的影响, 建立了南瓜最适遗传转化体系。结果表明: 外植体预培养0天,侵染时间30分钟, AS浓度为100 mg·L–1, 共培养5天可获得最高遗传转化效率; 最适除菌剂为Cef, 其最适浓度为500mg·L–1; 最适Kan筛选浓度为100 mg·L–1; 在MS培养基上培养抗性芽生根, 经PCR和Southern blot检测, 证明为转基因植株。  相似文献   

15.
以本氏烟草(Nicotiana benthamiana)为植物材料,分析了不同农杆菌菌株(LBA4404菌株、EHA105菌株、GV3101菌株)、菌液浓度以及侵染时间在瞬时转化过程中对报告基因GFP荧光表达量的影响。结果显示,不同的农杆菌菌株瞬时表达外源基因的最适浓度和时间均有所不同:LBA4404菌株在菌悬液OD600值为0.8时所介导的瞬时表达效率最高;而EHA105和GV3101菌株在菌悬液OD600值为0.6时可达到最高瞬时表达效率。LBA4404菌株所介导的瞬时表达在农杆菌注射后第2天时表达量最高,而EHA105和GV3101菌株所介导的瞬时表达在农杆菌注射后第4天时表达量最高。不同菌株间比较分析表明,LBA4404菌株所介导的瞬时表达效率最高。上述结果表明,农杆菌菌株以及浓度和侵染时间等转化条件均是影响瞬时表达效率的重要因素。  相似文献   

16.
黄瓜是我国栽培面积最大的喜温蔬菜之一。在生产上,高温干旱等环境胁、迫因子严重危害黄瓜的产量和品质,甚至导致绝收。任安芝等综述了SOD与水分、盐分、低温和大气污染等逆境胁迫之间的关系,认为:各种逆境胁迫引起的活性氧代谢平衡失调、生物膜结构破坏是导致植物遭受逆境伤害的机理之一。通过基因工程提高植物体内抗氧化酶活性及增加抗氧化代谢的水平是增强植物抗逆性的有效  相似文献   

17.
The reporter gene beta-glucuronidase was transiently expressed in a 51-L bioreactor-grown plant cell suspension culture of Nicotiana glutinosa at a yield of approximately 1.1 mg through co-culture with an auxotrophic strain of Agrobacterium tumefaciens. The three order of magnitude scale-up involved the investigation of factors contributing to transient expression including the timing of Agrobacterium inoculation relative to the plant cell growth phase, plant tissue culture hormonal triggers and plant cell cycle synchronization. The co-culture process was simplified to facilitate implementation in a pilot-scale bioreactor. At the shake flask scale it was determined that elevated concentrations of oxygen in the headspace were detrimental to transient expression levels and the addition of acetosyringone to the co-culture had a negligible effect. The bacterial preparation process was also streamlined, permitting the direct transfer of the Agrobacterium culture from a bench-scale fermentor to the pilot-scale plant cell culture bioreactor. Increasing expression levels and overcoming batch-to-batch variability despite extensive procedure systemization remain the major technical hurdles.  相似文献   

18.
A viral vector based on the bean yellow dwarf virus was investigated for its potential to increase transient gene expression. An intron-containing GUS reporter gene and the cis-acting viral regulatory elements were incorporated in the viral vector and could be complemented by the viral replication-associated proteins provided on a secondary vector. All vectors were delivered to Nicotiana glutinosa plant cell suspension or hairy root cultures via auxotrophic Agrobacterium tumefaciens. Cell culture generated greater yield of reporter gene expression than did root culture, as a result of the limitation imposed on roots to express the protein only in surface tissue containing actively dividing cells. Reporter gene expression increased for cell culture when the reporter gene construct was co-delivered with the construct supplying both viral replication associated proteins (REP and REPA); gene expression decreased when the construct supplying only the viral REP protein was co-delivered. Reporter protein expression increased from 0.091% for the reporter construct alone to 0.22% total soluble protein (% TSP) when the viral Rep-supplying vector was co-delivered with the reporter gene construct. Reporter protein was generated 3 days after the initiation of bacterial co-culture, providing for rapid generation of heterologous protein in cell culture.  相似文献   

19.
Lacroix B  Citovsky V 《PloS one》2011,6(10):e25578
VirB5 is a type 4 secretion system protein of Agrobacterium located on the surface of the bacterial cell. This localization pattern suggests a function for VirB5 which is beyond its known role in biogenesis and/or stabilization of the T-pilus and which may involve early interactions between Agrobacterium and the host cell. Here, we identify VirB5 as the first Agrobacterium virulence protein that can enhance infectivity extracellularly. Specifically, we show that elevating the amounts of the extracellular VirB5--by exogenous addition of the purified protein, its overexpression in the bacterium, or transgenic expression in and secretion out of the host cell--enhances the efficiency the Agrobacterium-mediated T-DNA transfer, as measured by transient expression of genes contained on the transferred T-DNA molecule. Importantly, the exogenous VirB5 enhanced transient T-DNA expression in sugar beet, a major crop recalcitrant to genetic manipulation. Increasing the pool of the extracellular VirB5 did not complement an Agrobacterium virB5 mutant, suggesting a dual function for VirB5: in the bacterium and at the bacterium-host cell interface. Consistent with this idea, VirB5 expressed in the host cell, but not secreted, had no effect on the transformation efficiency. That the increase in T-DNA expression promoted by the exogenous VirB5 was not due to its effects on bacterial growth, virulence gene induction, bacterial attachment to plant tissue, or host cell defense response suggests that VirB5 participates in the early steps of the T-DNA transfer to the plant cell.  相似文献   

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