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1.
生长素结合蛋白cDNA的克隆及其在烟草中的表达   总被引:1,自引:0,他引:1  
基于拟南芥内质网生长素结合蛋白基因的cDNA序列,设计合成了Ap5和Ap3两个引物,应用RT-PCR技术扩增了拟南芥的ABP基因。将该基因克隆在植物表达载体p35SSIN的35S启动子必Nos3‘端之间,得到植物表达载体p35SE。通过农杆菌介导的方法对烟草SR1进行了转化,由分子杂交等检测证明,生长素结合蛋白基因已在烟草中表达,同时转基因烟草后代对生长素的敏感性明显增加。  相似文献   

2.
棉花乙烯合成基因促进拟南芥和烟草不定根发生的研究   总被引:1,自引:0,他引:1  
从棉花纤维cDNA中克隆获得乙烯合成基因GhACO3,构建了植物过量表达载体p35S::GhACO3.通过花序侵染法和叶盘法分别转化拟南芥和烟草,利用卡那霉素筛选及分子检测获得转基因阳性拟南芥和烟草植株.结果表明,GhACO3基因已整合到拟南芥和烟草基因组中;经过纯合筛选后获得转基因T2代拟南芥植株;与野生型拟南芥相比,GhACO3基因对拟南芥不定根发生具有显著促进作用;与野生型烟草植株相比,转GhACO3基因烟草不定根发生得到了显著的促进.研究表明,GhACO3基因的过量表达能够促进拟南芥和烟草不定根的形成发育,为进一步探讨GhACO3的生物学功能和进行转基因育种奠定了基础.  相似文献   

3.
生长素的极性运输对调节植物生长发育起重要作用。生长素转运蛋白调控生长素的极性运输。本研究从‘嘎啦’(Malus×domestic‘Royal Gala’)苹果中克隆了生长素输入载体基因Md AUX1(基因序列号:MDP0000384437)。序列分析表明,该基因包含长为1 443 bp完整的开放阅读框,编码含有480个氨基酸的蛋白。氨基酸序列比对和系统进化树分析表明,AUX1在不同物种间具有高度的序列保守性,其中,苹果Md AUX1与欧洲甜樱桃Pa AUX1亲缘关系最近。半定量PCR分析显示,Md AUX1在苹果的茎中表达量较高。通过农杆菌介导的遗传转化获得转Md AUX1基因的拟南芥和烟草。转基因拟南芥根系表型观察结果显示,Md AUX1基因在拟南芥中异位表达后,会抑制主根伸长,促进侧根形成;在外源NAA处理下,转基因拟南芥对主根伸长的抑制作用得到部分恢复。在烟草中过量表达Md AUX1基因能够显著促进植株地上部分生长。以上结果说明苹果Md AUX1基因在调节植物生长发育中发挥重要作用。  相似文献   

4.
使用两种瞬时表达方法研究Profilin-1(PRF1)的亚细胞定位,并比较了2种瞬时表达体系在亚细胞定位研究中的优缺点。利用拟南芥幼叶作为材料,提取叶片的RNA,采用特异性引物RT-PCR的方法克隆PRF1基因,连接到p CAMBIA1300-GFP的改造载体上,成功的构建p CAMBIA1300-GFP-PRF1的表达载体。然后分别利用PEG转化拟南芥原生质体、农杆菌浸染烟草叶片两种技术进行了瞬时表达,并在激光共聚焦显微镜下观察绿色荧光蛋白(GFP)融合蛋白的表达。研究结果表明,将PRF1基因导入拟南芥的原生质体和烟草表皮细胞后,融合蛋白绿色荧光均能被观察到,PRF1基因与GFP融合蛋白的产物在烟草表皮细胞中主要定位在细胞质和外周细胞器中,在拟南芥的原生质体中的细胞核和细胞质中都有定位。两种不同的瞬时表达体系中PRF1蛋白的定位出现了不同,这可能与同源或异源表达的植物的特性相关。  相似文献   

5.
目的:建立植物microRNA(miRNA)功能的瞬时活体验证体系,并检验该体系的有效性。方法:选用双元表达载体pcAMBIA1200,并插入烟草花叶病毒双35s启动子,以驱动目标miRNA超表达;选用双元表达载体pFGC5941的绿色荧光蛋白(GFP)改造载体用于潜在的靶基因与GFP融合蛋白的超表达,以转入这2种载体的农杆菌侵染烟草叶片,观察GFP融合蛋白的荧光,作为验证miRNA对其潜在靶基因调控作用的瞬时验证体系。选取拟南芥已知功能的miR393及其靶基因A船3,分别构建pcAMBIA1200-35s-miR393和pFGc5941-GFP-AFB3载体,利用农杆菌注射烟草叶片进行2个载体共转化,并以pFGC5941-GFP-AFB3单转化作为对照,激光共聚焦显微镜下观察融合蛋白的表达。结果:只将A朋3导入烟草表皮细胞,可观察到绿色荧光;而将miR393与A期3同时导入烟草表皮细胞后,未能观察到绿色荧光。表明miR393抑制了A朋3的表达。结论:本瞬时表达体系可作为植物miRNA功能的活体瞬时验证体系,为miRNA调控靶基因表达功能提供简单、快速、有效的证据。  相似文献   

6.
目的:建立植物microRNA(miRNA)功能的瞬时活体验证体系,并检验该体系的有效性。方法:选用双元表达载体pCAMBIA1200,并插入烟草花叶病毒双35S启动子,以驱动目标miRNA超表达;选用双元表达载体pFGC5941的绿色荧光蛋白(GFP)改造载体用于潜在的靶基因与GFP融合蛋白的超表达,以转入这2种载体的农杆菌侵染烟草叶片,观察GFP融合蛋白的荧光,作为验证miRNA对其潜在靶基因调控作用的瞬时验证体系。选取拟南芥已知功能的miR393及其靶基因AFB3,分别构建pCAMBIA1200-35S-miR393和pFGC5941-GFP-AFB3载体,利用农杆菌注射烟草叶片进行2个载体共转化,并以pFGC5941-GFP-AFB3单转化作为对照,激光共聚焦显微镜下观察融合蛋白的表达。结果:只将AFB3导入烟草表皮细胞,可观察到绿色荧光;而将miR393与AFB3同时导入烟草表皮细胞后,未能观察到绿色荧光。表明miR393抑制了AFB3的表达。结论:本瞬时表达体系可作为植物miRNA功能的活体瞬时验证体系,为miRNA调控靶基因表达功能提供简单、快速、有效的证据。  相似文献   

7.
马铃薯块茎的形成涉及一系列基因的表达和关闭。以马铃薯普通栽培品种"大西洋"为试验材料,采用RT-PCR扩增获得马铃薯STI-LIKE基因全长片段。RT-PCR定量分析表明,该基因在马铃薯营养器官中均有表达。生物信息学分析表明STI-LIKE蛋白具有3个TPR结构域,在高等植物中具有高同源性,是一个普遍存在的蛋白质。为验证STI-LIKE蛋白在拟南芥植株发育中功能,分别构建该基因强启动子表达载体(p BI121)和干扰载体(p HANNIBAL和p ART27),转化拟南芥获得了两种载体的拟南芥转基因植株,同时制备STI-LIKE蛋白抗体验证转基因植株蛋白表达。研究结果表明STI-LIKE基因可能参与拟南芥株型发育过程。  相似文献   

8.
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   

9.
拟南芥生长素受体基因TIR1启动子的克隆及序列分析   总被引:1,自引:0,他引:1  
以野生型拟南芥 (Arabidopsis Columbia)基因组DNA为模板,通过PCR扩增得到拟南芥生长素受体基因TIR1启动子2008片段,将该片断克隆到PGM-T载体上.序列分析表明,该启动子大小为2008bp,RNA聚合酶识别序列TATA-box,TIR1特异表达和增强序列CAAT-box皆完整,与已报道的序列比较仅有3个核苷酸发生改变,同源性为99.85%.将该启动子与GUS基因融合,构建成表达载体后,在拟南芥和烟草叶片中做瞬时表达,结果分析显示:拟南芥和烟草叶片中均有GUS 酶活性存在.  相似文献   

10.
通过遗传转化技术研究了拟南芥脂转移蛋白AtDHyPRP1在细胞中的定位及其对真菌病原体的抗性。采用PCR方法从拟南芥Ws生态型克隆了AtDHyPRP1基因,构建产生pRI101-AN-AtDHyPRP1植物双元表达载体和pCAMBIA1302-AtDHyPRP1-GFP融合表达载体,经农杆菌介导的叶盘和浸花法得到烟草和拟南芥转基因植株。AtDHyPRP1基因能够明显增加烟草对灰霉菌的抗性,转AtDHyPRP1烟草叶片的被侵染部位有大量H2O2积累,激光共聚焦显微观察发现AtDHyPRP1蛋白定位于细胞表面。说明AtDHyPRP1蛋白在合成后被分泌到细胞外执行特殊的功能,与植物抗病防御机制有关。  相似文献   

11.
以转正义和反义abp基因[生长素结合蛋白(ABP)的基因]烟草及对照的叶外植体为材料,在附加2mg/L或1mg/L的6-BA和不同浓度的NAA的MS培养基上进行不定芽分化试验。在较低NAA浓度条件下,转正义abp基因烟草(SE2)的叶外植体分化的不定芽数高于对照(SR1)和转反abp基因烟草(AS3),说明SE2对生长素的敏感性比SR1和AS3高;而在较高NAA浓度条件下,AS3分化的不定芽数大于SE2和SR1,说明AS3对生长素的敏感性比SE2和SR1低。在培养基中加入生长素极性运输抑制剂HFCA后,不定芽分化受到抑制,分化不定芽中部分叶的形态由两侧对称性生长转变为形成不对称的喇叭状叶。在HFCA浓度为0-7.5mg/L条件下,SE2的喇叭叶发生频率明显高于SR1和AS3,其中SE2和SR1的喇叭叶发生频率分别在HFCA浓度为6.5和7.5mg/L时达到最高以后保持平稳,而AS3的喇叭叶发生频率在HFCA处理浓度直到15mg/L时仍保持上升趋势。这些结果说明ABP具有结合外源生长素,从而促进芽器官分化的功能,同时可能作为生长素受体参与了生长素的极性运输。  相似文献   

12.
Two genes encoding the auxin-binding protein (ABP1) of tobacco (Nicotiana tabacum L.), both of which possess the characteristics of a luminal protein of the endoplasmic reticulum (ER), were isolated and sequenced. These genes were composed of at least five exons and four introns. The two coding exons showed 95% sequence homology and coded for two precursor proteins of 187 amino acid residues with molecular masses of 21 256 and 21 453 Da. The deduced amino acid sequences were 93% identical and both possessed an amino-terminal signal peptide, a hydrophilic mature protein region with two potential N-glycosylation sites and a carboxyl-terminal sorting signal, KDEL, for the ER. Restriction mapping of the cDNAs encoding tobacco ABP1, previously purified by amplification of tobacco cDNA libraries by polymerase chain reaction (PCR) using specific primers common to both genes, indicated that both genes were expressed, although one was expressed at a higher level than the other. Genomic Southern blot hybridization showed no other homologous genes except for these two in the tobacco genome. The apparent molecular mass of the mature form of tobacco ABP1 was revealed to be 25 kDa by SDS polyacrylamide gel electrophoresis using affinity-purified anti (tobacco ABP1) antibodies raised against a fusion protein with maltose-binding protein. Expression of the recombinant ABP1 gene in transgenic tobacco resulted in accumulation of the 25 kDa protein. A single point mutation of an amino acid residue at either of the two potential N-glycosylation sites resulted in a decrease in the apparent molecular mass and produced a 22 kDa protein. Mutations at both sites resulted in the formation of a 19.3 kDa protein, suggesting that tobacco ABP1 is glycosylated at two asparagine residues.  相似文献   

13.
Molecular analysis of auxin-specific signal transduction   总被引:2,自引:0,他引:2  
The auxin-binding protein (ABP1) of maize has been purified, cloned and sequenced. Homologues have been found in a wide range of plants and at least seven ABP sequences from four different species are now known. We have developed a range of anti-ABP antibodies and these have been applied to analysis of the structure, localization and receptor function of ABP. ABP1 is a glycoprotein with two identical subunits of apparent M r =22 kDa. The regions recognised by our five monoclonal antibodies (MAC 256–260) and by polyclonal antisera from our own and other laboratories have been specified by epitope mapping and fragmentation studies. All polyclonal anti-ABP sera recognise two or three dominant epitopes around the single glycosylation site. Two monoclonals (MAC 256, 259) are directed at the endoplasmic reticulum (ER) retention sequence KDEL at the C-terminus. Early biochemical data pointed to six amino acids likely to be involved in the auxin binding site. Inspection of the deduced sequence of ABP1 showed a hexapeptide (HRHSCE) containing five of these residues. Antibodies were raised against a polypeptide embracing this region and recognised ABP homologs in many species, suggesting that the region is highly conserved. This is confirmed by more recent information showing that the selected polypeptide contains the longest stretch of wholly conserved sequence in ABP1. Most strikingly, the antibodies show auxin agonist activity against protoplasts in three different electrophysiological systems-hyperpolarization of tobacco transmembrane potential; stimulation of outward ATP-dependent H+ current in maize; modulation of anion channels in tobacco. The biological activity of these antibodies indicates that the selected peptide does form a functionally important part of the auxin binding site and strongly supports a role for ABP1 as an auxin receptor. Although ABP contains a KDEL sequence and is located mainly in the ER lumen, the electrophysiological evidence shows clearly that some ABP must reach the outer face of the plasma membrane. One possible mechanism is suggested by our earlier demonstration that the ABP C-terminus recognised by MAC 256 undergoes an auxin-induced conformational change, masking the KDEL epitope and it is of interest that this C-terminal region appears to be important in auxin signalling [22]. So far we have been unable to detect the secretion of ABP into the medium of maize cell (bms) cultures reported by Jones and Herman [7]. However, recent silver enhanced immunogold studies on maize protoplasts have succeeded in visualizing ABP at the cell surface, as well as auxin-specific clustering of the signal induced within 30 minutes. The function of ABP in the ER, as well as the mechanisms of auxin signal transduction both at plasma membrane and gene levels remain to be elucidated.  相似文献   

14.
E3 ubiquitin (Ub) ligases play diverse roles in cellular regulation in eukaryotes. Three homologous AtRmas (AtRma1, AtRma2, and AtRma3) were recently identified as ER-localized Arabidopsis homologs of human RING membrane-anchor E3 Ub ligase. Here, auxin binding protein 1 (ABP1), one of the auxin receptors in Arabidopsis, was identified as a potential substrate of AtRma2 through a yeast two-hybrid assay. An in vitro pull-down assay confirmed the interaction of full-length AtRma2 with ABP1. AtRma2 was transiently expressed in tobacco (Nicotiana benthamiana) plants through an Agrobacterium-mediated infiltration method and bound ABP1 in vivo. In vitro ubiquitination assays revealed that bacterially-expressed AtRma2 ubiquitinated ABP1. ABP1 was poly-ubiquitinated in tobacco cells and its stability was significantly increased in the presence of MG132, a 26S proteasome inhibitor. This suggests that ABP1 is controlled by the Ub/26S proteasome system. Therefore, AtRma2 is likely involved in the cellular regulation of ABP1 expression levels.  相似文献   

15.
There is evidence that auxin-binding protein 1 (ABP1) is an auxin receptor on the plasma membrane. Maize (Zea mays L.) possesses a high level of auxin-binding activity due to ABP1, but no other plant source has been shown to possess such an activity. We have analyzed the ABP1 content of tobacco (Nicotiana tabacum L.) to examine whether or not the ABP1 content of maize is exceptionally high among plants. The ABP1 content of tobacco leaves was shown by quantitative immunoblot analysis to be between 0.7 and 1.2 μg ABP1 per gram of fresh leaf. This value is comparable to the reported value in maize shoots, indicating that ABP1 is present at a similar level in both monocot and dicot plants. The ABP1 content of tobacco leaves was increased up to 20-fold by expression of a recombinant ABP1 gene, and decreased to half of the original value by expression of the antisense gene. Although ABP1 was found mainly in the endoplasmic reticulum fraction, a secreted protein showing a molecular size and epitopes similar to intracellular ABP1 was also detected in the culture medium of tobacco leaf disks. The secretion of this protein was dependent on the expression level of the ABP1 gene. Received: 24 February 1999 / Accepted: 25 March 1999  相似文献   

16.
以烟草(Nicotiana tabacum L.)盛花期花梗薄层为材料,研究营养芽分化的不同时期生长素结合蛋白(ABP1)在组织与细胞中的分布变化,免疫荧光标记结果表明,烟草花梗中ABP1主要分布于表皮及亚表皮1-2层细胞内。不同分化期ABP1在烟草花梗薄层原生质体中的表达不同,细胞分化旺盛期ABP1的表达最强,分化后期ABP1的表达有所减弱;Western blotting结果表明,ABP1多克隆抗血清与烟草花梗薄层细胞及分化过程中26kD蛋白有免疫交叉反应。  相似文献   

17.
Tobacco ( Nicotiana tabacum L.) pedicel in the blooming period was used to study the distribution of auxin binding protein 1 (ABP1) in the tobacco tissue and cell at different time in the culture of thin cell layers (TCL). Using the immunofluorescence marker it was indicated that the main ABP1 was distributed in the epidermis and the 1st and 2nd layers of the subepidermis cells. A little ABP1 was distributed in the cortex. Tobacco ABP1 was induced to express in the protoplast of tobacco pedicel TCL cultured in MS culture medium containing IAA and BA. Expression of ABP1 in the protoplast was stronger in the active period of vegetative bud differentiation. ABP1 expression became weaker in later period of differentiation. The result of SDS-PAGE and Western blotting showed the molecular weight of tobacco ABP1 in TCL was 26 kD.  相似文献   

18.
The gene encoding diadenosine 5',5'-P1,P4-tetraphosphate (Ap4A) phosphorylase from yeast was isolated from a lambda gt11 library. The DNA sequence of the coding region was determined, and more than 90% of the deduced amino acid sequence was confirmed by peptide sequencing. The Ap4A phosphorylase gene (APA1) is unique in the yeast genome. Disruption experiments with this gene, first, supported the conclusion that, in vivo, Ap4A phosphorylase catabolizes the Ap4N nucleotides (where N is A, C, G, or U) and second, revealed the occurrence of a second Ap4A phosphorylase activity in yeast cells. Finally, evidence is provided that the APA1 gene product is responsible for most of the ADP sulfurylase activity in yeast extracts.  相似文献   

19.
To explore the role of auxin-binding protein (ABP1) in planta, a number of transgenic tobacco (Nicotiana tabacum) lines were generated. The wild-type KDEL endoplasmic reticulum targeting signal was mutated to HDEL, another common retention sequence in plants, and to KEQL or KDELGL to compromise its activity. The auxin-binding kinetics of these forms of ABP1 were found to be similar to those of ABP1 purified from maize (Zea mays). To test for a physiological response mediated by auxin, intact guard cells of the transgenic plants were impaled with double-barreled microelectrodes, and auxin-dependent changes in K(+) currents were recorded under voltage clamp. Exogenous auxin affected inwardly and outwardly rectifying K(+) currents in a dose-dependent manner. Auxin sensitivity was markedly enhanced in all plants overexpressing ABP1, irrespective of the form present. Immunogold electron microscopy was used to investigate the localization of ABP1 in the transgenic plants. All forms were detected in the endoplasmic reticulum and the KEQL and KDELGL forms passed further across the Golgi stacks than KDEL and HDEL forms. However, neither electron microscopy nor silver-enhanced immunogold epipolarization microscopy revealed differences in cell surface ABP1 abundance for any of the plants, including control plants, which indicated that overexpression of ABP1 alone was sufficient to confer increased sensitivity to added auxin. Jones et al. ([1998] Science 282: 1114-1117) found increased cell expansion in transgenic plants overexpressing wild-type ABP1. Single cell recordings extend this observation, with the demonstration that the auxin sensitivity of guard cell K(+) currents is mediated, at least in part, by ABP1.  相似文献   

20.
应用RNAi技术培育抗2种病毒病的转基因烟草   总被引:2,自引:0,他引:2  
分别提取烟草普通花叶病(TMV)和烟草黄瓜花叶病(CMV)的病毒RNA。经反转录和外壳蛋白阅读框PCR扩增,获得TMV和CMV外壳蛋白基因cDNA, 分别进行两种病毒已知株系cDNA序列比对获得各自的保守序列,设计干涉序列,将干涉片段扩增产物连接到pMD18-T的相邻酶切位点,制备融合序列,并将其正向和反向序列插入pUCCRNAi载体,再转化到pCAMBIA2300-35S-OCS表达载体中。利用农杆菌LBA4404侵染烟草K326,获得3份含有TMV和CMV外壳蛋白基因干涉序列的转化材料,经分子鉴定证实干涉序列已导入烟草,并采用荧光定量PCR技术对其mRNA表达差异进行分析。抗病性调查表明转化烟株对TMV和CMV抗性都显著增强。  相似文献   

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