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1.
重金属特异诱导基因PvSR2(Phaseolus vulgaris stress-related)是从法国菜豆中克隆出来的, 为了研究该蛋白能否提高植物的抗重金属能力, 将PvSR2基因插入到植物转化中间载体pCAMBIA2301中CaMV 35S启动子的下游, 用根癌农杆菌介导的叶盘法将其导入烟草中, 在含有100 mg/L Kan的MS培养基上筛选, 获得了转基因植株. PCR和Southern杂交结果表明PvSR2已整合在烟草基因组中, GUS和Northern分析表明PvSR2在转基因烟草中获得表达. 重金属抗性实验表明: 与野生型烟草相比, PvSR2转基因烟草具有较高的抗重金属镉(Cd)的能力. 组织Cd含量分析显示: 在低浓度Cd (0.5~0.75 mmol/L)处理时, Cd在PvSR2转基因烟草与野生型烟草根中的累积量没有明显的差别, 而在高浓度Cd(0.1 mmol/L)胁迫下, 转基因烟草根中Cd的累积量低于野生型烟草, 说明PvSR2的表达能够提高植物的抗重金属能力, 同时表明PvSR2可能与重金属在植物中的运输和积累有一定关系.  相似文献   

2.
从拟南芥(Arabidopsis thaliana)中克隆到与侧根原基发生相关的转录因子基因NAC1上游调控区序列,构建由该序列驱动β-葡聚糖苷酶基因(GUS)的植物表达载体并转化烟草(Nicotiana Tabaccum),经筛选获得了在根组织高GUS活性而地上部痕量表达的转基因烟草植株。对转基因植株进行GUS活性和染色分析,结果表明NAC1上游调控区驱动的GUS基因表达具有根部组织特异性,在侧根顶端分生组织区、侧根原基基部和幼嫩侧根基部表达。用IBA,GA3,GA4+7处理转基因植株根部,NAC1上游调控区驱动的GUS表达均增强,表明生长素、赤霉素可显著诱导NAC1上游调控区的表达,并参与侧根发生的调控。  相似文献   

3.
来源于Pyrococcus furiosus的耐高温α-淀粉酶是一种重要的酒精工业用酶,在植物中表达耐高温α-淀粉酶可以大大降低用植物秸秆生产酒精的成本。选择衣藻叶绿体基因组同源片段clpP-trnL-petB-chlL-rpl23-rpl2和壮观霉素抗性基因,构建了来源于Pyrococcus furiosus的耐高温α-淀粉酶基因的衣藻叶绿体表达载体P64a。通过基因枪将其导入衣藻叶绿体中,经壮观霉素抗性(100mg/L)筛选,获得了9 个抗性衣藻转化子。转化子经过抗性继代筛选后,经PCR、Southern blot 检测分析及暗培养,证实耐高温α-淀粉酶基因已整合到衣藻叶绿体基因组中并得到表达。酶活性检测表明,转基因衣藻表达产物具有耐高温α-淀粉酶活性,每克鲜重衣藻最高达77.5u。 实验结果证明在植物叶绿体中表达工业酶制剂是可行的。  相似文献   

4.
对基因枪法获得的明恢81转修饰的cry1Ac基因当代植株进行花药培养,共接种花药2600枚,获得83份花培植株,其中双倍体植株43份,单倍体植株40份。 PCR结果表明含有cry1Ac基因的植株55份,花培植株群体中转基因与非转基因植株的比值为2∶1(55/28)。进一步结合Southern blot和ELISA分析,于花培植株当代筛选到转基因纯合株系36份。外源蛋白表达量上,花药来源于同一克隆的DH系的不同植株之间基本一致,最高的Cry1Ac含量达0.25%。田间抗虫性试验表明,经花药培养纯合获得的部分转基因纯合系植株对二化螟(Chilo suppressalis)表现出高抗,而且主要农艺性状保持不变。以上结果表明水稻花药培养可以加速转基因的纯合与育种利用。  相似文献   

5.
甲醇酵母表达系统高拷贝数整合型表达载体的构建   总被引:6,自引:0,他引:6  
以甲醇酵母(Hansenula polymorpha)表达系统的Yip型表达载体pJF5-1为基础,通过引入宿主来源的一个rDNA随机顺序和由SV40早期启动子控制的G418抗性基因(neo)及对野生型标记基因Hpleu2启动子大部分上游序列的缺失,构建了一个高拷贝整合型表达载体pMIRH。有关转化、筛选和拷贝分析等试验结果表明,由pMIRH可产生含高拷贝数载体的转化子,并可通过由leu2+筛选和G418抗性筛选所组成的二级筛选方法富集这些含高拷贝数载体的转化子。有关完整DNA和消化DNA Southern杂交分析结果进一步表明,上述高拷贝数的载体以串联重复排列的方式整合于宿主基因组。  相似文献   

6.
烟草DNA结合蛋白TGA1a可特异地作用于CaMV35S增强子的激活序列as-1(-83~-63), 并表现为转录激活功能. 为了研究tga1a基因的表达对外源基因在植物中表达的影响, 将它置于维管束特异性启动子rolC下游, 并与CaMV35S启动子控制的报道基因串联成一种反式调控系统, 构建了植物表达载体, 同时, 以CaMV35S和rolC分别控制的报道基因构建植物表达载体为阳性对照. 通过农杆菌介导方法转化烟草和分子鉴定, 证明报道基因存在于转化烟草基因组中, 分别测定了不同转基因单株的GUS活性, 结果表明: rolC控制下的tga1a的表达显著增强了CaMV35S控制下的报道基因表达, 其GUS活性明显高于CaMV35S或rolC单独调控报道基因的转化植株, 单株的最高GUS活性达到两个阳性对照的10倍以上. 组织化学定位证实该串联系统使GUS蛋白主要集中在维管束组织. 这一研究结果为提高外源基因在转基因植株中的表达水平和外源基因的组织特异性表达创立了一个新模式.  相似文献   

7.
小鼠金属硫蛋白在聚胞藻中的金属诱导表达与纯化   总被引:12,自引:0,他引:12  
应用蓝藻类金属硫蛋白基因启动子(smt O-P)的金属诱导性,在单细胞的聚胞藻PCC 6803中表达小鼠金属硫蛋白结构基因(mMT-1 cDNA)。在大肠杆菌HB 101中构建含有smt O-P和mMT1 cDNA的穿梭表达载体pKT-MRE,经质粒转移,链霉素筛选,Southern和Western杂交分析鉴定得稳定的转基因工程藻落。同时,做小批量锌诱导表达,并纯化了外源蛋白,5L培养液含鲜藻重5.0g,得到3.5mg mMT-1;转基因藻在高金属浓度下的耐受性测定表明,外源基因的表达提高了蓝藻对金属离子的抗性,约为野生藻的2倍。  相似文献   

8.
一个棉花生殖器官优势表达基因的启动子功能分析   总被引:3,自引:0,他引:3  
用棉花生殖器官优势表达启动子替代CaMV35S启动子是解决目前转基因抗虫棉存在“前期抗虫性强, 后期抗虫性弱”这一生产实践问题的关键. 运用反向PCR技术从陆地棉中分离到一个棉花生殖器官优势表达基因——腺苷酸核糖基化作用因子1 (Arf1)基因的启动子序列. 该启动子具有独特的结构特征, 不仅同时包含有转录起始子(initiator), TATA box, CAAT box和GC box这四种特异元件, 而且还包含有一个5′非翻译区的内含子. 通过构建四个启动子缺失突变体, 定向替换植物表达载体pBI121上的CaMV35S启动子, 并与GUS基因融合, 构建了4个植物表达载体. 用花粉管通道技术将它们导入到棉花中, 转基因棉花后代的GUS染色和荧光定量分析结果表明: Arf1启动子是一个典型的棉花生殖器官优势表达启动子, 它为棉花生殖器官性状的分子设计和抗虫棉的再创新提供了有用的工具.  相似文献   

9.
转双抗虫基因烟草的研究   总被引:22,自引:3,他引:19  
用改造的雪花莲凝集素基因GNAmm与合成的苏云金芽孢杆菌(Bt)毒蛋白cry1Ac基因构建了带有双价基因的植物表达载体,在该表达载体中这两个基因的转录分别受笋瓜PP2启动子(SPP2P)和CaMV 35S启动子的调控。通过根癌土壤杆菌介导转化法,获得了一批抗卡那霉素的转化再生烟草植株。PCR检测及基因组DNA Southern blot\,Slot blot杂交分析的结果表明Gna基因和Bt基因已整合到烟草总DNA中。用Bt毒蛋白抗血清进行Western blot分析,转基因植株均有Bt杀虫蛋白的不同程度的表达。对转化再生烟草的虫试结果表明,在所受试的19株烟草中60%的植株上的棉铃虫在5天内死亡率达到100%,而且存活幼虫的生长发育受到明显抑制;蚜虫抑制生长试验表明,多数转化再生植株具有较强的抗蚜活性,平均能够抑制桃蚜50%~60%的蚜口密度,有的高达80%以上。以上结果表明利用这两个改造过的抗虫基因可以获得既抗虫又耐蚜的转双抗虫转基因植物。  相似文献   

10.
绿色荧光蛋白(GFP)可直接进行活体观察,它的这个优点可被用于监测转基因植物中选择标记基因的消除。为此,构建了植物表达载体pGNG,将绿色荧光蛋白基因(gfp)和卡那霉素抗性基因表达盒(NosP-nptll-NosT)一起克隆在两个同向的lox位点间,在第一个lox位点上游置有CaMV 35S启动子以驱动GFP表达,第二个lox位点下游置有不含启动子的大肠杆菌β-葡萄糖醛酸酶(GUS)基因。首先在含卡那霉素(Kan)的培养基上筛选出转pGNG的烟草,借助绿色荧光可容易地检出表达GFP的转化体。然后用另一转化载体pCambia1300Cre二次转化表达GFP的转基因植物,利用另一选择标记基因潮霉素抗性基因(hpt)进行筛选,在获得的再生植株中,Cre重组酶的表达消除了转化体中两lox位点间的gfpnptll。实验结果表明可借助GFP荧光的消失,快速选出nptII被消除的二次转化体,同时GUS(作为目的蛋白) 在CaMV 35S启动子驱动下获得表达。最后利用后代的分离将hptcre除去。  相似文献   

11.
根癌农杆菌介导的转aroAM12基因棉花植株的草甘膦抗性   总被引:18,自引:0,他引:18  
以中棉35无菌苗下胚轴为外植体,采用农杆菌介导法将含有通过基因优化技术获得的草甘膦抗性突变基因aroAM12导入棉花中.以aroAM12为选择标记,利用草甘膦直接筛选获得65棵再生植株.PCR和Southerablot分析表明,经过草甘膦筛选出的To代植株均整合有aroAM12基因.Western blot分析表明整合进的aroAM12基因得到了有效表达,且不同植株之间的表达不尽相同.大棚喷洒的实验结果表明To代转化植株具有很高的草甘膦抗性.对T1代棉花的草甘膦抗性遗传分析表明,aroAM12基因以孟德尔方式遗传.  相似文献   

12.
Yan HQ  Chang SH  Tian ZX  Zhang L  Sun YC  Li Y  Wang J  Wang YP 《PloS one》2011,6(5):e19732
Glyphosate is a non-selective broad-spectrum herbicide that inhibits 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS, also designated as AroA), a key enzyme in the aromatic amino acid biosynthesis pathway in microorganisms and plants. Previously, we reported that a novel AroA (PpAroA1) from Pseudomonas putida had high tolerance to glyphosate, with little homology to class I or class II glyphosate-tolerant AroA. In this study, the coding sequence of PpAroA1 was optimized for tobacco. For maturation of the enzyme in chloroplast, a chloroplast transit peptide coding sequence was fused in frame with the optimized aroA gene (PparoA1(optimized)) at the 5' end. The PparoA1(optimized) gene was introduced into the tobacco (Nicotiana tabacum L. cv. W38) genome via Agrobacterium-mediated transformation. The transformed explants were first screened in shoot induction medium containing kanamycin. Then glyphosate tolerance was assayed in putative transgenic plants and its T(1) progeny. Our results show that the PpAroA1 from Pseudomonas putida can efficiently confer tobacco plants with high glyphosate tolerance. Transgenic tobacco overexpressing the PparoA1(optimized) gene exhibit high tolerance to glyphosate, which suggest that the novel PpAroA1 is a new and good candidate applied in transgenic crops with glyphosate tolerance in future.  相似文献   

13.
? Transgenic plants can offer agricultural benefits, but the escape of transgenes is an environmental concern. In this study we tested the hypothesis that glyphosate drift and herbivory selective pressures can change the rate of transgene flow between the crop Brassica napus (canola), and weedy species and contribute to the potential for increased transgene escape risk and persistence outside of cultivation. ? We constructed plant communities containing single transgenic B. napus genotypes expressing glyphosate herbicide resistance (CP4 EPSPS), lepidopteran insect resistance (Cry1Ac), or both traits ('stacked'), plus nontransgenic B. napus, Brassica rapa and Brassica nigra. Two different selective pressures, a sublethal glyphosate dose and lepidopteran herbivores (Plutella xylostella), were applied and rates of transgene flow and transgenic seed production were measured. ? Selective treatments differed in the degree in which they affected gene flow and production of transgenic hybrid seed. Most notably, glyphosate-drift increased the incidence of transgenic seeds on nontransgenic B. napus by altering flowering phenology and reproductive function. ? The findings of this study indicate that transgenic traits may be transmitted to wild populations and may increase in frequency in weedy populations through the direct and indirect effects of selection pressures on gene flow.  相似文献   

14.
This review focuses on the genes for the enzymes 5-enolpyruvyl-3-phosphoshikimlc acid synthase (EPSPS) and the glyphosate oxidoreductase (GOX). These genes have been used to genetically engineer plants that are resistant to the herbicide glyphosate. Overproduction of glyphosate-insensitive.EPSPS in transgenic crops has been used to overcome the deleterious effuts of this herbicide. The introduction into plants of GOX also confers glyphosate tolerance to plants and augments the tolerance of transgenic plants already expressing a glyphosate tolerant EPSPS. These genes also provide a method for selecting transformed plant tissue using the glyphosate tolerance as the selectable marker in the presence of inhibitory concentrations of glypllosate. Glyphosate tolerant transgenic plants of beet, corn, cotton, lettuce, poplar, potato, rapeseed. soybean, tobacco, tomato, and wheat have already been field tested and are entering agriculture.  相似文献   

15.
16.
Cao G  Liu Y  Zhang S  Yang X  Chen R  Zhang Y  Lu W  Liu Y  Wang J  Lin M  Wang G 《PloS one》2012,7(6):e38718
A key enzyme in the shikimate pathway, 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) is the primary target of the broad-spectrum herbicide glyphosate. Identification of new aroA genes coding for EPSPS with a high level of glyphosate tolerance is essential for the development of glyphosate-tolerant crops. In the present study, the glyphosate tolerance of five bacterial aroA genes was evaluated in the E. coli aroA-defective strain ER2799 and in transgenic tobacco plants. All five aroA genes could complement the aroA-defective strain ER2799, and AM79 aroA showed the highest glyphosate tolerance. Although glyphosate treatment inhibited the growth of both WT and transgenic tobacco plants, transgenic plants expressing AM79 aroA tolerated higher concentration of glyphosate and had a higher fresh weight and survival rate than plants expressing other aroA genes. When treated with high concentration of glyphosate, lower shikimate content was detected in the leaves of transgenic plants expressing AM79 aroA than transgenic plants expressing other aroA genes. These results suggest that AM79 aroA could be a good candidate for the development of transgenic glyphosate-tolerant crops.  相似文献   

17.
Glyphosate is a non-selective broad-spectrum herbicide that inhibits 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS), a key enzyme in the aromatic amino acid biosynthetic pathway in microorganisms and plants. We have previously reported a strategy for engineering glyphosate-resistant class I EPSPS based on staggered-PCR technology. Selected mutant enzymes exhibited high Ki[glyphosate] and low Km[PEP] values compared to the parental enzymes from Escherichia coli (EcaroA) and Salmonella typhimurium (StaroA). One mutant, aroA-M1, was further engineered with a tobacco chloroplast leader sequence, and then placed in the binary vector pCAMBIA1300 for Agrobacterium-mediated gene transfer to tobacco (Nicotiana tabacum cv. Xanthi). Transgenic plants with increased resistance to glyphosate were generated.  相似文献   

18.
Wang J  Li Y  Liang C 《Transgenic research》2008,17(3):417-424
The aroA-M1 encoding the mutant of 5-enolpyruvyl-shikimate-3-phosphate synthase (EPSPS) was introduced into the Brassica juncea genome by sonication-assisted, pollen-mediated transformation. The plasmid DNA and collected pollen grains were mixed in 0.3 mol/L sucrose solution and treated with mild ultrasonication. The treated pollen was then pollinated onto the oilseed stigmas after the stamens were removed artificially. Putative transgenic plants were obtained by screening germinating seeds on a medium containing glyphosate. Southern blot analysis of glyphosate-resistant plants indicated that the aroA-M1 gene had been integrated into the oilseed genome. Western blot analysis further confirmed that the EPSPS coded by aroA-M1 gene was expressed in transgenic plants. The transgenic plants exhibited increased resistance to glyphosate compared to untransformed plants. Some of those transgenic plants had considerably high resistance to glyphosate. The genetic analysis of T1 progeny further confirmed that the inheritance of the introduced genes followed the Mendelian rules. The results indicated that foreign genes can be transferred by pollen-mediated transformation combined with mild ultrasonication.  相似文献   

19.
Glyphosate is a non-selective broad-spectrum herbicide that inhibits 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS). This is a key enzyme in the aromatic amino acid biosynthesis pathway of microorganisms and plants. The manipulation of bacterial EPSPS gene in order to reduce its affinity for glyphosate, followed by its transfer to plants is one of the most effective approaches for the production of glyphosate-tolerant plants. In this study, we chose to focus on amino acid residues glycine96 and alanine183 of the E. coli (k12) EPSPS enzyme. These two amino acids are important residues for glyphosate binding. We used site directed mutagenesis (SDM) to induce point mutations in the E. coli EPSPS gene, in order to convert glycine96 to alanine (Gly96Ala) and alanine183 to threonine (Ala183Thr). After confirming the mutation by sequencing, the altered EPSPS gene was transferred to rapeseed (Brassica napus L.) via Agrobacterium-mediated transformation. The transformed explants were screened in shoot induction medium containing 25 mg L−1 kanamycin. Glyphosate tolerance was assayed in putative transgenic plants. Statistical analysis of data showed that there was a significant difference between the transgenic and control plants. It was observed that transgenic plants were resistant to glyphosate at a concentration of 10 mM whereas the non-transformed control plants were unable to survive 1 mM glyphosate. The presence and copy numbers of the transgene were confirmed with PCR and Southern blotting analysis, respectively.  相似文献   

20.
Two distinct cDNAs for 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) were obtained from a glyphosate-tolerant tobacco cell line. The cDNAs were 89% identical and the predicted sequences of the mature proteins were greater than 83% identical with EPSPS proteins from other plants. Tobacco EPSPS proteins were more similar to those from tomato and petunia than Arabidopsis. One cDNA clone, EPSPS-1, represented a gene that was amplified in glyphosate-tolerant cells, while the gene for EPSPS-2 was unaltered in these cells. Consequently, EPSPS-1 mRNA was more abundant in tolerant than unselected cells, whereas EPSPS-2 mRNA was at relatively constant levels in these cell lines. Exposure of unselected cells and tobacco leaves to glyphosate produced a transient increase in EPSPS mRNA. However, glyphosate-tolerant cells containing amplified copies of EPSPS genes did not show a similar response following exposure to glyphosate. A significant proportion of the EPSPS gene amplification was maintained when tolerant cells were grown in the absence of glyphosate for eight months. Plants regenerated from these cells also contained amplified EPSPS genes.  相似文献   

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