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矮牵牛编码F3′5′H的蓝色基因表达载体构建及转化   总被引:1,自引:0,他引:1  
类黄酮3',5'羟基化酶(Flavonoid-3',5'hydroxylase,F3'5'H)是花色苷代谢途径中的一个关键酶,能使花色素合成趋向于形成蓝色的飞燕草色素,从而使花色向蓝紫色偏移.本研究从蓝紫色矮牵牛(Petunia hybrida)花瓣中克隆了编码F3'5,H的蓝色基因Hf1,并通过PCR技术获得百合花特异表达启动子(PchsA),将百合PchsA与Hf1基因融合,构建了百合花特异表达启动子调控的Hf1基因植物表达载体,通过农杆菌介导的叶盘法转化粉红色矮牵牛.抗性筛选和PCR检测鉴定转基因植株,结果表明,成功地获得了转基因阳性植株.  相似文献   

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利用Genome walker法获得了荔枝营养贮藏蛋白质LcVSP1基因的5'调控序列,构建了含有该序列的植物表达载体并转化烟草,通过PCR和GUS染色对转化植株进行了鉴定.序列分析表明,LcVSP1基因的5'调控序列中除含有真核生物典型的核心启动子区域和保守的TATA box序列外,还发现了一些与真核生物启动子中相似的顺式调控元件.对获得的转基因植株的GUS染色发现,在转基因植株的茎、叶柄和主叶脉呈现蓝色,表明LeVSP1的5'调控序列可以启动GUS基因的表达,具有启动子的活性,并具有组织特异性.  相似文献   

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本研究主要探讨ipt基因对矮牵牛遗传转化不定芽诱导影响及拟南芥热激启动子hsp18.2驱动重组酶基因flp的热诱导外源基因删除表达载体在矮牵牛中的基因删除效果.本研究中将植物表达载体pBin-hsp18.2:flp-35S:ipt及对照载体pBin-hsp18.2:flp遗传转化矮牵牛,以获得转基因植株,分析比较不定芽的诱导和转基因植株进行的热激基因删除.研究结果表明,ipt基因可促进矮牵牛遗传转化过程中不定芽的诱导,其不定芽诱导率为21.5%,显著高于对照的8.7%.在44℃,6 h,热激6次的条件下,转基因矮牵牛植株表型恢复正常,经 GUS蛋白表达分析及PCR、RT-PCR检测,证明外源基因已经被删除.转基因矮牵牛基因删除效率最高可达43.8%.本研究为ipt基因在一些遗传转化困难植物转基因中的应用奠定了基础.  相似文献   

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利用高保真PCR法,分别扩增了牛乳腺酪蛋白基因的1.8kb和1.1kb的5'和3'调控 序列,克隆入TA载体.经测序鉴定后,利用DNA重组技术依次亚克隆入改造过的真核表达载体 pcDNA3(切除CMV启动子),并插入人溶菌酶基因(hLYZ)的cDNA, 构建成牛乳腺特异表达 载体.获得的重组载体经限制性内切酶酶切鉴定、PCR验证等表明,成功克隆了酪蛋白基因5 '和3'的调控区,并成功构建了表达人溶菌酶基因的牛乳腺特异表达载体.  相似文献   

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将ZmCI-1B全长启动子及其7个5'端缺失的启动子片段的表达载体分别转化农杆菌GV3101,经PCR鉴定正确之后,以拟南芥为遗传转化受体,利用花序侵染法将各个表达载体转化拟南芥。用PCR法检测转化后的拟南芥植株,取阳性植株的幼苗或花、角果进行GUS组织化学染色。结果表明,ZmCI-1B启动子在拟南芥中的调控特性与玉米中的不同;ZmCI-1B启动子及其7个5'端缺失启动子转基因拟南芥植株中GUS的染色部位各异,说明了不同长度的启动子功能特性不同,推测其可能与启动子上的顺式作用元件有关。  相似文献   

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组织特异性表达Cre重组酶的转基因小鼠是进行组织特异性条件敲除研究的关键。采用PCR扩增大鼠胰岛素基因705bp启动子指导发胰岛细胞中特异表达;同时采用改构的Cre重组酶基因,在其5'端添加有真核核糖体结合序列和核定位序列使Cre重组酶能穿越核膜在细胞核能发挥功能;同时,为了保证原核基因Cre能在真核系统顺利表达,在其3'端添加含内含子的人生长激素基因。构建的表达载体在去除原核序列后用显微注射方法转基因小鼠,在出生的27只仔鼠中,PCR检测共获得7只Cre整合阳性的转基因小鼠,整合率26%。这种Cre转基因小鼠与基因组小携带LoxP位点的条件基因打靶小鼠交配,在胰腺组织中可以检测到Cre介导的重组,表明Cre在转基因小鼠胰腺中有表达。  相似文献   

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喜盐鸢尾(Iris halophila Pall.)及其变种蓝花喜盐鸢尾(I.halophila Pall.var.sogdiana(Bung)Grubov)因耐盐碱及其多种花色而具有盐碱地园艺开发价值。本文根据喜盐鸢尾内轮花被转录组测序结果,利用基因特异性引物从这2种植物中分别克隆了编码查尔酮合成酶(CHS)、查尔酮异构酶(CHI)、类黄酮-3',5'-羟基化酶类(F3'5'H-like)等基因的部分片段,并对它们在内轮花被中的表达水平进行实时定量PCR分析。序列分析结果确认在喜盐鸢尾中所克隆的CHS(311 bp)、CHI(457 bp)、F3'5'H-like(496 bp)3个基因(部分)未见文献报道与NCBI等数据库记录。其中F3'5'H-like基因与经典的属于细胞色素P450CYP75A亚家族的F3'5'H不同,而与万带兰的F3'5'H-like同属于CYP76AB亚家族,为一类新的蓝花相关基因。实时定量PCR表达分析结果表明,与黄花的喜盐鸢尾相比,蓝花喜盐鸢尾中CHS与F3'5'H-like显著上调表达,可能是其花色不同于喜盐鸢尾的主要原因。  相似文献   

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轮状病毒外壳蛋白VP7在转基因番茄果实中的特异表达   总被引:2,自引:1,他引:2  
将轮状病毒外壳蛋白VP7基因克隆到含有番茄果实特异性启动子TFP的植物表达载体pTF ,并转化到根癌农杆菌 (Agrobacteriumtumefaciens)菌株EHA10 5中 ,采用叶盘转化法转化番茄 (LycopersiconesculentumMill.)栽培品种TX0 0 14 ,获得了转基因植株。经PCR、PCR Southernblot和Southernblot分析表明VP7基因已整合到转基因番茄植株的核基因组中 ,RT PCR、Westernblot结果表明VP7蛋白在果实中获得了特异表达  相似文献   

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Rd29A启动子驱动AtCDPK1基因转化马铃薯的研究   总被引:1,自引:0,他引:1  
为获得抗旱性强、生长正常的转基因马铃薯植株,以野生拟南芥生态型(Col-0)为材料,利用PCR和DNA重组技术,克隆了拟南芥Rd29A(responsive to dehydration)基因ATG上游+83bp至-1 441bp共1 524bp的启动子区域,其DNA序列与已知拟南芥Rd29A 5'端启动子序列同源性为100%;构建了Rd29A启动子驱动AtCDPK1基因表达的植物表达载体pCHFRd-CDPK1。以马铃薯品种‘费乌瑞它’的试管微型薯为材料,利用农杆菌介导法,将构建成功的pCHFRd-CDPK1载体转入马铃薯中,经筛选与植株再生,获得抗性再生植株。通过PCR和Southern blot检测显示,Rd29A启动子驱动的AtCDPK1基因已整合在马铃薯的基因组中。利用PEG模拟干旱胁迫后,经RT-PCR分析证实,当用20%的PEG胁迫转基因马铃薯植株时,Rd29A启动子驱动AtCDPK1基因表达的转基因马铃薯各个株系中AtCDPK1基因表达量明显增强,而在无胁迫的条件下,植株中AtCDPK1基因基本不表达;同时发现35S控制AtCDPK1转基因植株在PEG胁迫前后,基因转录未见明显差异。形态学观察还表明,在30%PEG胁迫下,转基因植株能正常生长,其长势优于未转基因的对照,且对照植株略有萎焉。该结果可为进一步利用逆境诱导型启动子驱动抗逆基因在农作物中的表达研究及其遗传改良提供依据。  相似文献   

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In experiments on Black Sea skates (Raja clavata), the potential of the receptor epithelium of the ampullae of Lorenzini and spike activity of single nerve fibers connected to them were investigated during electrical and temperature stimulation. Usually the potential within the canal was between 0 and –2 mV, and the input resistance of the ampulla 250–400 k. Heating of the region of the receptor epithelium was accompanied by a negative wave of potential, an increase in input resistance, and inhibition of spike activity. With worsening of the animal's condition the transepithelial potential became positive (up to +10 mV) but the input resistance of the ampulla during stimulation with a positive current was nonlinear in some cases: a regenerative spike of positive polarity appeared in the channel. During heating, the spike response was sometimes reversed in sign. It is suggested that fluctuations of the transepithelial potential and spike responses to temperature stimulation reflect changes in the potential difference on the basal membrane of the receptor cells, which is described by a relationship of the Nernst's or Goldman's equation type.I. P. Pavlov Institute of Physiology, Academy of Sciences of the USSR, Leningrad. I. M. Sechenov, Institute of Evolutionary Physiology and Biochemistry, Academy of Sciences of the USSR, Leningrad. Pacific Institute of Oceanology, Far Eastern Scientific Center, Academy of Sciences of the USSR, Vladivostok. Translated from Neirofiziologiya, Vol. 12, No. 1, pp. 67–74, January–February, 1980.  相似文献   

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Evolution of living organisms is closely connected with evolution of structure of the system of regulations and its mechanisms. The functional ground of regulations is chemical signalization. As early as in unicellular organisms there is a set of signal mechanisms providing their life activity and orientation in space and time. Subsequent evolution of ways of chemical signalization followed the way of development of delivery pathways of chemical signal and development of mechanisms of its regulation. The mechanism of chemical regulation of the signal interaction is discussed by the example of the specialized system of transduction of signal from neuron to neuron, of effect of hormone on the epithelial cell and modulation of this effect. These mechanisms are considered as the most important ways of the fine and precise adaptation of chemical signalization underlying functioning of physiological systems and organs of the living organism  相似文献   

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