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1.
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   

2.
为研究拟南芥的血红蛋白1(AtGLB1)基因的亚细胞定位,该实验构建了拟南芥血红蛋白1基因与绿色荧光蛋白基因融合的植物表达载体pUCGFP/ AtGLB1.利用基因枪转化法将重组载体转入洋葱表皮细胞瞬时表达,通过检测融合蛋白在洋葱表皮细胞中的分布来确定拟南芥血红蛋白1在细胞中的定位.荧光显微镜检测结果表明,AtGLB1基因表达产物主要定位在细胞核中,少量定位在细胞质中.  相似文献   

3.
AtJ2是拟南芥中的一种分子伴侣,参与了许多重要的生命活动,但其具体的作用机制还不清楚。为进一步研究该蛋白的功能,我们构建了该基因的定位表达载体,拟对该基因在拟南芥中的定位进行研究。将该基因构建到带有绿色荧光蛋白(GFP)基因的质粒表达载体pB inGFP中,并将此重组质粒通过农杆菌介导转入拟南芥中,得到了转基因植株,为后续该基因的定位研究奠定基础。  相似文献   

4.
以质粒pMCB30为模板,扩增GFP基因,连接到载体pCMBIA2300-35S-OCS上,构建过量表达载体p35S:GFP,将其转入农杆菌GV3101.通过农杆菌介导法将p35S:GFP载体分别转入新疆特色植物小拟南芥和拟南芥中.T0代经含有卡那霉素的1/2MS培养基筛选,获得了T1代转基因小拟南芥2株,T1代转基因拟南芥9株.通过激光共聚焦显微镜观察,在转基因小拟南芥和拟南芥的根尖细胞中均可检测到GFP绿色荧光蛋白;对转基因植株进行PCR扩增,均可检测到GFP基因,表明GFP基因已成功转入小拟南芥和拟南芥中.该研究建立了小拟南芥的遗传转化体系,为进一步利用GFP基因和进一步研究小拟南芥的功能基因奠定基础.  相似文献   

5.
拟南芥的血红蛋白3(AtGLB 3)属于截短的血红蛋白。与拟南芥血红蛋白1相比,拟南芥血红蛋白3具有不同的起源、不同的生化特性和结构;但其功能还不清楚。蛋白质的定位与蛋白质的功能息息相关。为深入研究该基因功能,构建了拟南芥血红蛋白3基因与绿色荧光蛋白融合的植物表达载体pUCGFP/AtGLB3。利用基因枪转化法将重组载体转入洋葱表皮细胞瞬时表达,通过检测融合蛋白在洋葱表皮细胞中的分布来确定拟南芥血红蛋白3在细胞中的定位。荧光显微镜检测结果表明,AtGLB3基因表达产物主要定位在细胞膜上。  相似文献   

6.
以野生资源小拟南芥(Arabidopsis pumila)chitinase基因的cDNA为基础,采用基因重组技术,将该基因按正确的阋读框架定向克隆于原核表达载体pET-30a( )中,转化大肠杆菌BL21(DE3),用IPTG诱导表达,并对表达产物进行SDS-PAGE分析.结果表明:重组小拟南芥chitinase基因在大肠杆菌中获得高效表达,其分子量约为40 KD.小拟南芥chitinase基因原核表达载体的成功构建和重组小拟南芥chitinase蛋白在大肠杆菌中的高效表达,为进一步研究其生物学功能奠定了基础.  相似文献   

7.
利用反向遗传学研究方法对1个预测的拟南芥叶绿体未知功能基因At3g61870编码蛋白进行了亚细胞定位研究.通过克隆At3g61870基因5′端长229 bp的DNA片段,与绿色荧光蛋白(GFP)基因构建重组表达载体pMON530-CP-TP-GFP,经农杆菌介导转化拟南芥.转基因植株的叶肉细胞经激光共聚焦显微镜观察,叶绿素自发荧光与GFP荧光共定位于叶绿体中.结果表明,未知功能基因At3g61870编码的蛋白质为叶绿体蛋白质.  相似文献   

8.
拟南芥精氨酸甲基转移酶SKB1基因的分离与功能鉴定   总被引:1,自引:0,他引:1  
张娅  陈耀锋 《西北植物学报》2007,27(10):1943-1947
以哥伦比亚"生态型(Columbia ecotype)拟南芥(Arabidopsis thaliana)叶片为材料,采用RT-PCR技术,获得了拟南芥精氨酸甲基转移酶(SKB1)基因,该基因全长1 929 bp,将该基因克隆到原核表达载体pET28b上,并转化大肠杆菌BL21,经IPTG诱导表达大量目的蛋白,其表达量占菌体总蛋白的50%以上.通过切胶回收抗原的方法,制备了兔源AtSKB1多克隆抗体,同时构建了SKB1基因的正义表达载体pBI121-35S∷SKB1并转化拟南芥.Western检测结果显示,转基因植株的SKB1表达量显著增加,同时SKB1表达量增加的植株开花时间也明显提前,说明植株的开花时间与SKB1的表达量呈正相关.结果表明,拟南芥SKB1基因的过量表达可引起植株的早花,SKB1参与了植物的开花发育信号通路.  相似文献   

9.
根据已报道的拟南芥(Arabidopsis thaliana L.)病程相关蛋白基因(PR-1)序列设计引物,通过PCR技术从拟南芥中扩增得到水杨酸诱导表达的PR-1基因启动子片段,序列分析表明,该启动子含910bp核苷酸,与已报道的序列比较,核苷酸的同源性为99.7%:将该启动子构建到植物表达载体pB1121上,获得病程相关蛋白基因(PR-1)启动子驱动的GUS报告基因的植物表达载体pBI-prlp,将其转入根癌农杆菌GV3101,通过农杆菌介导转化拟南芥,获得转基因拟南芥植株,为深入研究寄主-病原物相互作用的分子机理奠定基础。  相似文献   

10.
蛋白质的亚细胞定位信息对于深入了解该蛋白质的功能具有重要意义。本文对一个预测的拟南芥叶绿体未知功能基因At4g22890 编码蛋白进行了叶绿体定位研究。我们克隆了该基因5′端长208 bp 的DNA 片段, 与绿色荧光蛋白(GFP) 基因构建重组表达载体pMON530-cTP-GFP, 经农杆菌介导转化拟南芥。转基因植株经激光共聚焦显微镜观察, GFP 荧光仅在叶绿体中观察到, 表明所克隆的DNA 序列编码的多肽能够将At4g22890 编码蛋白质引导进入叶绿体, 由此推测该蛋白质为叶绿体蛋白质。  相似文献   

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Bioinformatic approaches have allowed the identification in Arabidopsis thaliana of twenty genes encoding for homologues of animal ionotropic glutamate receptors (iGLRs). Some of these putative receptor proteins, grouped into three subfamilies, have been located to the plasmamembrane, but their possible location in organelles has not been investigated so far. In the present work we provide multiple evidence for the plastid localization of a glutamate receptor, AtGLR3.4, in Arabidopsis and tobacco. Biochemical analysis was performed using an antibody shown to specifically recognize both the native protein in Arabidopsis and the recombinant AtGLR3.4 fused to YFP expressed in tobacco. Western blots indicate the presence of AtGLR3.4 in both the plasmamembrane and in chloroplasts. In agreement, in transformed Arabidopsis cultured cells as well as in agroinfiltrated tobacco leaves, AtGLR3.4::YFP is detected both at the plasmamembrane and at the plastid level by confocal microscopy. The photosynthetic phenotype of mutant plants lacking AtGLR3.4 was also investigated. These results identify for the first time a dual localization of a glutamate receptor, revealing its presence in plastids and chloroplasts and opening the way to functional studies.  相似文献   

13.
A simple modification to standard binary vector design has been utilized to enrich an Agrobacterium-transformed population for plants containing only T-DNA sequences. A lethal gene was incorporated into the non-T-DNA portion of a binary vector, along with a screenable marker. The resulting class of vectors is designated as NTL T-DNA vectors (non-T-DNA lethal gene-containing T-DNA vectors). The lethal gene used here is a CaMV 35S-barnase gene with an intron in the coding sequence (barnase-INT); the screenable marker is a pMAS-luciferase gene with an intron in the coding sequence (LUC-int). To evaluate the utility of this vector design, tobacco plants were transformed with either the NTL T-DNA vector or a control vector from which most of the barnase-INT gene was deleted. Populations of 50 transgenic plants were scored for LUC expression. The results indicated a dramatic reduction in the presence of non-T-DNA sequences in the transgenic population using the NTL T-DNA vector. Only one transgenic plant was found to be LUC+ using the NTL vector, compared with 42 of 50 plants using the control vector. Importantly, the efficiency with which transformed tobacco plants was obtained was reduced by no more than 30%. The reduction in LUC+ transgenics was partially reversed when a barstar-expressing tobacco line was transformed, indicating that barnase expression was responsible for the reduced frequency of incorporating non-T-DNA sequences. Similar transformation results were obtained with tomato and grape. The incorporation of a barnase-INT gene outside the left border appears to provide a generally applicable tool for enriching an Agrobacterium-transformed population for plants containing only T-DNA sequences.  相似文献   

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15.
Cytosolic Ca2+ ([Ca2+]cyt) mediates diverse cellular responses in both animal and plant cells in response to various stimuli. Calcium oscillation amplitude and frequency control gene expression. In stomatal guard cells, [Ca2+]cyt has been shown to regulate stomatal movements, and a defined window of Ca2+ oscillation kinetic parameters encodes necessary information for long‐term stomatal movements. However, it remains unknown how the encrypted information in the cytosolic Ca2+ signature is decoded to maintain stomatal closure. Here we report that the Arabidopsis glutamate receptor homolog AtGLR3.1 is preferentially expressed in guard cells compared to mesophyll cells. Furthermore, over‐expression of AtGLR3.1 using a viral promoter resulted in impaired external Ca2+‐induced stomatal closure. Cytosolic Ca2+ activation of S‐type anion channels, which play a central role in Ca2+‐reactive stomatal closure, was normal in the AtGLR3.1 over‐expressing plants. Interestingly, AtGLR3.1 over‐expression did not affect Ca2+‐induced Ca2+ oscillation kinetics, but resulted in a failure to maintain long‐term ‘Ca2+‐programmed’ stomatal closure when Ca2+ oscillations containing information for maintaining stomatal closure were imposed. By contrast, prompt short‐term Ca2+‐reactive closure was not affected in AtGLR3.1 over‐expressing plants. In wild‐type plants, the translational inhibitor cyclohexamide partially inhibited Ca2+‐programmed stomatal closure induced by experimentally imposed Ca2+ oscillations without affecting short‐term Ca2+‐reactive closure, mimicking the guard cell behavior of the AtGLR3.1 over‐expressing plants. Our results suggest that over‐expression of AtGLR3.1 impairs Ca2+ oscillation‐regulated stomatal movements, and that de novo protein synthesis contributes to the maintenance of long‐term Ca2+‐programmed stomatal closure.  相似文献   

16.
The ionotropic glutamate receptor (iGluR) gene family has been widely studied in animals and is determined to be important in excitatory neurotransmission and other neuronal processes. We have previously identified ionotropic glutamate receptor-like genes (GLRs) in Arabidopsis thaliana, an organism that lacks a nervous system. Upon the completion of the Arabidopsis genome sequencing project, a large family of GLR genes has been uncovered. A preliminary phylogenetic analysis divides the AtGLR gene family into three clades and is used as the basis for the recently established nomenclature for the AtGLR gene family. We performed a phylogenetic analysis with extensive annotations of the iGluR gene family, which includes all 20 Arabidopsis GLR genes, the entire iGluR family from rat (except NR3), and two prokaryotic iGluRs, Synechocystis GluR0 and Anabaena GluR. Our analysis supports the division of the AtGLR gene family into three clades and identifies potential functionally important amino acid residues that are conserved in both prokaryotic and eukaryotic iGluRs as well as those that are only conserved in AtGLRs. To begin to investigate whether the three AtGLR clades represent different functional classes, we performed the first comprehensive mRNA expression analysis of the entire AtGLR gene family. On the basis of RT-PCR, all AtGLRs are expressed genes. The three AtGLR clades do not show distinct clade-specific organ expression patterns. All 20 AtGLR genes are expressed in the root. Among them, five of the nine clade-II genes are root-specific in 8-week-old Arabidopsis plants.  相似文献   

17.
A gene encoding the B subunit of the enterotoxigenic Escherichia coli heat-labile enterotoxin (LTB) was adapted to the optimized plant coding sequence, and fused to the endoplasmic reticulum retention signal SEKDEL in order to enhance its expression level and protein assembly in plants. The synthetic LTB (sLTB) gene was placed into a plant expression vector under the control of the CaMV 35S promoter, and subsequently introduced into the watercress (Nasturtium officinale L.) plant by the Agrobacterium-mediated transformation method. The integration of the sLTB gene into the genomic DNA of transgenic plants was confirmed by genomic DNA PCR amplification. The assembly of plant-produced LTB protein was detected by western blot analysis. The highest amount of LTB protein produced in transgenic watercress leaf tissue was approximately 1.3% of the total soluble plant protein. GM1-ganglioside enzyme-linked immunosorbent assay indicated that plant-synthesized LTB protein bound specifically to GM1-ganglioside, which is the receptor for biologically active LTB on the cell surface, suggesting that the plant-synthesized LTB subunits formed biologically active pentamers.  相似文献   

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通过农杆菌转化法得到了整合有拟南芥AZII基因的烟草植株,进一步利用转基因烟草分析了AZI1蛋白的亚细胞定位及其对真菌病原体的抗性特征。在上下游引物5’端分别引入NcoI和SpeI酶切位点,采用高保真耐热DNA聚合酶彤Pfu从拟南芥Co1-0生态型基因组DNA扩增AZII基因的编码序列,用NcoI和Spel对扩增片段和pCAMBIA1302质粒载体进行双酶切,通过T4DNA连接酶构建产生AZII-GFP融合表达载体。用包含融合表达载体的农杆菌细胞转化烟草叶片,经潮霉素选择获得了完整的再生植株,并收取了T。代种子。激光共聚焦显微观察发现,AZI1蛋白主要定位于细胞表面。病原体侵染结果显示,AZI1基因能够明显提高烟草对灰葡萄孢的抗性。说明AZI1蛋白通过分泌途径被定位到细胞表面后,能够抑制真菌病原体对植物组织的侵染过程。  相似文献   

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