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1.
根据已发表的金花茶查尔酮合成酶(chalcone synthase,CHS)基因(CnCHS)序列设计全长扩增引物,以金花茶花瓣总cDNA为模板进行PCR扩增,成功获得了该基因cDNA全长。将扩增所得全长产物连接PMD18-T载体后转化大肠杆菌E.coli DH5α,提取质粒后经酶切、测序鉴定后,将其与双元表达载体pCAMBIA1300连接,成功构建了CnCHS基因的正义表达载体pCAM-CnCHS。将该重组表达载体转化农杆菌EHA105后,利用农杆菌介导法将CnCHS基因转入烟草,获得转基因烟草18株。利用PCR法及Southern blotting对所获得的转基因植株进行鉴定,结果显示CnCHS基因成功整合到烟草基因组中,阳性率达67%,并获得了单拷贝转基因植株。这些结果表明本研究成功构建了金花茶CnCHS基因对烟草的遗传转化体系,为深入研究CnCHS基因的功能及其对花色的调控效应奠定了基础。  相似文献   

2.
转查尔酮合酶基因对烟草花色及花器官的影响   总被引:1,自引:0,他引:1  
花色是重要的园艺性状,一直是育种工作者苦苦追求的目标。利用植物基因工程技术可定向改良花色。根据已知的CHS序列(序列号M20308.),用PCR方法从拟南芥中克隆CHS基因,并分别将其以正向、反向插入到真核表达载体pBI121,在农杆菌介导下用叶盘转化法转化烟草。对转基因烟草进行检测,结果表明,转基因烟草的花色变淡、花青素含量降低;叶片颜色变浅、叶绿素含量降低。转基因烟草花的形态也发生了明显变异。  相似文献   

3.
苎麻CCoAOMT基因cDNA反义转化模式烟草'WS38'   总被引:1,自引:0,他引:1  
苎麻咖啡酰辅酶A氧甲基转移酶(CCoAOMT)是其木质素合成过程的一种关键酶,运用克隆的该酶基因cDNA及植物表达载体pBI121、pWM101,分别构建了35S启动子控制的苎麻CCoAOMT基因反义cDNA基因质粒(pBI121-antiBnCCoAOMT)和cDNA全长表达质粒(pWM101-BnCCoAOMT),并通过根癌农杆菌介导法将其转化至模式烟草WS38,获得了转基因烟草.对转基因植株进行分子分析和组织学初步研究表明,转反义RNA基因植株叶柄木质素含量较野生烟草或转正义基因烟草叶柄木质素含量降低.说明运用反义RNA技术对CCoAOMT基因的表达进行基因工程调控,一定程度上可以对木质素的合成产生干扰,为获得低木质素或木质素组分改良的苎麻基因工程奠定基础.  相似文献   

4.
类黄酮是植物中的一种重要的次级代谢产物,它与植物的花色形成有关。查尔酮合酶(Chalcone synthase,CHS)是类黄酮合成途径中的一个关键酶,在植物体内,CHS表达量的增加或减少都可能改变花的颜色。从矮牵牛(Petunia hybrida)花瓣的cDNA中克隆到了CHS—A基因,进行了全序列分析,并与国外已报道的CHS—A序列进行了同源性比较。结果表明,克隆的CHS-A基因长为1170bp,编码一个由389个氨基酸组成的多肽,与国外已报道的CHS—A同源率高达99%。此外,还在大肠杆菌中实现了CHS—A基因的高效表达。CHS—A基因的成功克隆与表达为研究CHS—A基因对植物花色的影响打下了一个良好的基础。  相似文献   

5.
为了揭示铁皮石斛(Dendrobium officinale)甾醇C-24甲基转移酶2基因(DoSMT2)在甾醇代谢过程的功能,该研究通过根癌农杆菌介导法将来源于铁皮石斛的DoSMT2基因转化烟草(Nicotiana tabacum),并采用qRT-PCR技术检测DoSMT2基因在转基因烟草叶片中的表达,采用气相色谱质谱法分析菜油甾醇和谷甾醇的含量。结果显示:(1)成功获得DoSMT2基因的开放阅读框(1 119 bp),并成功构建正义植物表达载体质粒pCXSN-DoSMT2,经农杆菌介导的烟草叶盘转化法转化烟草并鉴定,获得4株阳性转基因烟草植株。(2)Southern blot结果表明,4株转基因烟草植株都有1条杂交信号带,而非转基因烟草植株没有,说明外源DoSMT2基因都以单拷贝整合到4株转基因烟草基因组中。(3)qRT-PCR检测显示,非转基因烟草未检测到外源DoSMT2基因的表达,4株转基因烟草都能检测到DoSMT2基因的表达,且表达水平差异极显著,各株系表达量高低依次为P3P1P2(P4)。(4)气相色谱质谱分析显示,转DoSMT2基因烟草叶片的菜油甾醇含量均极显著低于非转基因烟草叶片,而谷甾醇含量均极显著高于非转基因烟草叶片。研究表明,DoSMT2具有催化24-亚甲基胆甾烯醇转化形成24-亚乙基胆甾烯醇活性。  相似文献   

6.
铁是植物生长发育的必需元素。由于土壤中的三价铁离子不能被植物直接利用, 使一些植物经常表现出缺铁症状。为探讨利用铁蛋白基因提高植物耐低铁胁迫的作用, 利用农杆菌介导法将大豆铁蛋白基因SoyFer1和内源反义铁蛋白基因NtFer2的cDNA分别导入烟草基因组, 采集转基因烟草种子。对T1转基因烟草的卡那霉素抗性分析表明, 整合到烟草基因组的外源基因多为单拷贝基因, 也有少数为多拷贝基因。对具有卡那霉素抗性的转基因植株进行PCR检测和Northern杂交分析表明, 外源基因已整合到烟草基因组中, 并且得到了正确表达。将转基因株系移栽到铁离子浓度不同的培养基中生长2个月后进行比较表明, 转大豆铁蛋白基因烟草株系的生长量明显高于非转基因烟草株系, 而转内源反义铁蛋白基因烟草株系的生长量则明显低于非转基因烟草株系。转大豆铁蛋白基因和转内源反义铁蛋白基因烟草株系的叶绿素含量、丙二醛(MDA)含量和过氧化物酶(POD)活性等生理性状也发生了明显变化, 表现为转大豆铁蛋白基因株系的叶绿素含量明显增加, POD活性明显增强, MDA含量明显降低; 而转内源反义铁蛋白基因株系的叶绿素含量、POD活性和MDA含量等则表现为与转大豆铁蛋白基因株系的相反。铁蛋白过量表达提高了烟草耐低铁能力, 而铁蛋白抑制表达则降低了烟草耐低铁能力。  相似文献   

7.
目的:利用烟草遗传转化体系,研究尾叶桉(Eucalyptus urophylla)咖啡酸氧甲基转移酶基因(Eu COMT)和咖啡酰Co A氧甲基转移酶基因(Eu CCo AOMT)对木质素单体合成的定向调控效果。方法:分别利用Eu COMT的正义片段、Eu CCo AOMT的全长RNAi片段进行单基因和二价基因的烟草转化研究,并对转基因烟草植株中目标基因表达水平、木质素和纤维素的含量、茎部解剖结构及木质素单体含量进行检测。结果:分别获得了转基因植株C-S(转Eu COMT正义片段)、CR(转Eu CCo AOMT全长RNAi片段)、C-CR(Eu COM和Eu CCo AOMT二价基因转化)。烟草中转入的正义Eu COMT的片段能够正常表达,而Eu CCo AOMT的全长RNAi片段对烟草CCo AOMT基因引发了强烈的抑制。转基因烟草的生长形态、木质素、纤维含量及解剖结构与野生型无显著差异。转基因植株C-S中G木质素含量升高17.72%,S/G值降低17.99%;CR中S/G值升高61.62%,CCR中G木质素降幅达到57.38%,S/G比值升幅达到114.94%。结论:抑制CCo AOMT对G木质素合成具有显著的抑制效果,Eu COMT和Eu CCo AOMT二价基因转化对S/G比值的定向调控效果最为理想。  相似文献   

8.
铁蛋白基因表达对烟草耐低铁能力的影响   总被引:1,自引:0,他引:1  
铁是植物生长发育的必需元素。由于土壤中的三价铁离子不能被植物直接利用。使一些植物经常表现出缺铁症状。为探讨利用铁蛋白基因提高植物耐低铁胁迫的作用,利用农杆菌介导法将大豆铁蛋白基因SoyFer1和内源反义铁蛋白基因NtFer2的cDNA分别导人烟草基因组,采集转基因烟草种子。对T1转基因烟草的卡那霉素抗性分析表明,整合到烟草基因组的外源基因多为单拷贝基因,也有少数为多拷贝基因。对具有卡那霉素抗性的转基因植株进行PCR检测和Northern杂交分析表明,外源基因已整合到烟草基因组中,并且得到了正确表达。将转基因株系移栽到铁离子浓度不同的培养基中生长2个月后进行比较表明,转大豆铁蛋白基因烟草株系的生长量明显高于非转基因烟草株系,而转内源反义铁蛋白基因烟草株系的生长量则明显低于非转基因烟草株系。转大豆铁蛋白基因和转内源反义铁蛋白基因烟草株系的叶绿素含量、丙二醛(MDA)含量和过氧化物酶(POD)活性等生理性状也发生了明显变化,表现为转大豆铁蛋白基因株系的叶绿素含量明显增加,POD活性明显增强,MDA含量明显降低:而转内源反义铁蛋白基因株系的叶绿素含量、POD活性和MDA含量等则表现为与转大豆铁蛋白基因株系的相反。铁蛋白过量表达提高了烟草耐低铁能力,而铁蛋白抑制表达则降低了烟草耐低铁能力。  相似文献   

9.
高等植物中黄酮醇合成酶催化二氢黄酮醇转化生成黄酮醇,是类黄酮代谢途径的关键酶之一。本研究在烟草基因组数据库中搜索获得两个类黄酮合成酶基因,即NtFLS1和NtFLS2,二者表达模式一致,均在叶片中高水平表达。在NtFLS2基因过表达载体的转化株中获得一个共抑制株系KD36,荧光定量PCR分析表明NtFLS1和NtFLS2基因表达水平均被显著抑制,类黄酮途径其它结构基因的表达水平未发生显著变化。KD36株系中二氢槲皮素含量显著上升,是对照的12倍,槲皮素、山奈酚、二氢山奈酚含量未发生显著变化。KD36株系花色更红,花青素含量是对照植株2.4倍。上述研究揭示了烟草黄酮醇合成酶基因的功能,为进一步研究烟草类黄酮代谢提供了一定的理论依据。  相似文献   

10.
蝴蝶兰花器官中基因功能的研究受遗传转化效率低和遗传转化周期长的制约,而花瓣瞬时表达体系是一种快速分析基因功能的有效手段。该研究以蝴蝶兰‘大辣椒’花瓣和萼片为实验材料,通过农杆菌介导的瞬时转化方法,分析了侵染的菌液浓度、侵染时间、乙酰丁香酮浓度和共培养时间等4个因素对β-葡糖醛酸酶(GUS)报告基因表达效率的影响,以探寻其瞬时表达的最佳条件;并将查尔酮合成酶(chalcone synthase,CHS)基因RNAi干扰载体瞬时转化蝴蝶兰花瓣,共培养3d后观察转化材料中花色表型以及色素的变化,并利用半定量RT-PCR来检测CHS基因转录水平的表达。结果表明:(1)农杆菌菌液OD600为0.6、侵染时间60s,在重悬液中添加150μmol/L乙酰丁香酮,共培养3d,GUS瞬时表达率最高(85.01%)。(2)转基因蝴蝶兰花瓣颜色明显变淡,色素含量降低。(3)半定量PCR检测表明,CHS基因的转录活性相比于对照组显著降低。该实验成功的在蝴蝶兰花器官中建立了一种快速基因功能验证方法,为后期蝴蝶兰基因功能研究和育种工作提供技术支持。  相似文献   

11.
12.
Sanmiya K  Suzuki K  Egawa Y  Shono M 《FEBS letters》2004,557(1-3):265-268
To clarify the role of mitochondrial small heat-shock protein (MT-sHSP) in the heat-shock response, we introduced the tomato (Lycopersicon esculentum) MT-sHSP gene under the control of the 35S promoter into tobacco (Nicotiana tabacum), and examined the thermotolerance of the transformed plants. Irrespective of the orientation, sense or antisense, of the gene, the transgenic plants exhibited a normal morphology and growth rate in the vegetative growth stage. When 4-week-old seedlings were exposed to sudden heat stress, the sense plants which overexpress the MT-sHSP gene exhibited thermotolerance, whereas the antisense plants in which the expression of the gene is suppressed exhibited susceptibility.  相似文献   

13.
The optimized expression of recombinant Potato virus A coat protein (ACP) carrying two different epitopes from Human papillomavirus type 16 (HPV16) was developed. Epitope derived from minor capsid protein L2 was expressed as N-terminal fusion with ACP while an epitope derived from E7 oncoprotein was fused to its C-terminus. The construct was cloned into Potato X potexvirus (PVX) based vector and transiently expressed in plants using Agrobacterium tumefaciens mediated inoculation. To increase the level of expressed protein the transgenic Nicotiana benthamiana plants expressing Potato virus A HC-Pro gene and transgenic Nicotiana tabacum, cv. Petit Havana SR1 carrying Potato virus A P3 protein gene were tested. Synergistic infection of host plants with PVX carrying the construct and Potato virus Y(O) (PVY(O)) increased the expression of L2ACPE7 in N. tabacum and in transgenic N. benthamiana carrying potyviral HC-Pro gene as compared to control plants infected with L2ACPE7 only.  相似文献   

14.
Plant disease resistance (R) gene products recognize pathogen avirulence (Avr) gene products and induce defense responses. It is not known if an R gene can function in different plant families, however. The Arabidopsis thaliana R genes RPW8.1 and RPW8.2 confer resistance to the powdery mildew pathogens Erysiphe orontii, E. cichoracearum, and Oidium lycopersici, which also infect plants from other families. We produced transgenic Nicotiana tabacum, N. benthamiana, and Lycopersicon esculentum plants containing RPW8.1 and RPW8.2. Transgenic N. tabacum plants had increased resistance to E. orontii and O. lycopersici, transgenic N. benthamiana plants had increased resistance to E. cichoracearum, but transgenic L. esculentum plants remained susceptible to these pathogens. The defense responses induced in transgenic N. tabacum and N. benthamiana were similar to those mediated by RPW8.1 and RPW8.2 in Arabidopsis. Apparently, RPW8.1 and RPW8.2 could be used to control powdery mildew diseases of plants from other families.  相似文献   

15.
Transient gene expression is being developed to provide a more rapid means of assessing plant tissues as a protein production platform without the labor-intensive and time-consuming process of generating stably transformed transgenic plants. Transient expression of the gus-intron reporter gene was facilitated in three different tobacco species. Two different approaches to T-DNA delivery were compared: (1) infiltration of a prototrophic strain of Agrobacterium into leaves and (2) coculture of plant cell suspension cultures with an Agrobacterium auxotroph. Wounding of plant tissues with a wire brush prior to infiltration had a large positive impact on Nicotianabenthamiana leaves but not for Nicotiana tabacum or Nicotiana glutinosa. The best expression level achieved by leaf infiltration was in N. benthamiana (0.025% total soluble protein). A cell suspension culture line of N. glutinosa achieved an expression level greater than 0.04% TSP. The tissue culture-based technique therefore provides improved levels of transient expression under aseptic conditions to facilitate improvements in expression by control of the plant cell culture and Agrobacterium coculture environments.  相似文献   

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17.
18.
Systemic symptoms induced on Nicotiana tabacum cv. Xanthi by Tobacco mosaic virus (TMV) are modulated by one or both amino-coterminal viral 126- and 183-kDa proteins: proteins involved in virus replication and cell-to-cell movement. Here we compare the systemic accumulation and gene silencing characteristics of TMV strains and mutants that express altered 126- and 183-kDa proteins and induce varying intensities of systemic symptoms on N. tabacum. Through grafting experiments, it was determined that M(IC)1,3, a mutant of the masked strain of TMV that accumulated locally and induced no systemic symptoms, moved through vascular tissue but failed to accumulate to high levels in systemic leaves. The lack of M(IC)1,3 accumulation in systemic leaves was correlated with RNA silencing activity in this tissue through the appearance of virus-specific, approximately 25-nucleotide RNAs and the loss of fluorescence from leaves of transgenic plants expressing the 126-kDa protein fused with green fluorescent protein (GFP). The ability of TMV strains and mutants altered in the 126-kDa protein open reading frame to cause systemic symptoms was positively correlated with their ability to transiently extend expression of the 126-kDa protein:GFP fusion and transiently suppress the silencing of free GFP in transgenic N. tabacum and transgenic N. benthamiana, respectively. Suppression of GFP silencing in N. benthamiana occurred only where virus accumulated to high levels. Using agroinfiltration assays, it was determined that the 126-kDa protein alone could delay GFP silencing. Based on these results and the known synergies between TMV and other viruses, the mechanism of suppression by the 126-kDa protein is compared with those utilized by other originally characterized suppressors of RNA silencing.  相似文献   

19.
雪花莲凝集素基因(gna)的改造及其抗蚜性   总被引:21,自引:1,他引:21  
用定点突变方法对编码雪花莲凝集素(Galanthus nivalis agglutinin,GNA)前体蛋白的DNA序列进行了改造和转基因烟草9Nicotana tabacum L.)抗蚜性的研究。结果表明,将GNA编码序列中含有的稀有密码子改造后,GNA的表达水平从占总可溶性蛋白的0.17%增加到0.25%,转基因烟草的抗蚜性也随之增强,从平均抑制桃蚜(Myzus per-sicae(Sulzer))虫口密度63.7%显地提高到71.0%。  相似文献   

20.
Chalcone isomerase (CHI; EC 5.5.1.6) is a key enzyme in the flavonoid biosynthesis pathway. We isolated a CHI gene (SmCHI) from a cDNA library derived from Saussurea medusa (Asteraceae) cell cultures. The cDNA and genomic sequences of SmCHI are the same; in other words, this gene is intronless. The coding region of the gene is 699 bp long, and its deduced protein consists of 232 amino acids with a predicted molecular mass of 24 kDa and a pI of 4.7. The deduced amino acid sequence of SmCHI shares 79.3% identity with CHI from Callistephus chinensis, a familial relative to S. medusa; this homology is higher than those with CHI's from any other plant species. A functional bioassay for SmCHI was performed by transforming Nicotiana tabacum plants in the sense or antisense orientation under the regulation of the cauliflower mosaic virus (CaMV) 35S promoter. Transgenic tobacco plants overexpressing sense SmCHI produced up to fivefold total flavonoids over wild-type tobacco plants, mainly due to an enhanced accumulation of rutin. Transgenic tobacco plants with antisense SmCHI accumulated smaller amounts of flavonoids; this is apparently brought about by suppressed expression of the endogenous CHI gene. CHI activities also positively correlated with the amounts of total flavonoids accumulated in the transgenic plants. It is concluded that overexpression of SmCHI can be used as a useful approach to increase flavonoid production in transgenic plants.  相似文献   

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