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1.
乙烯参与植物生长发育等许多生理过程,在许多植物细胞中,AcD基因通过促进乙烯合成调控着植物器官的形成发育。研究通过PCR方法从棉花基因组中克隆得到l-氨基环丙烷-1-羧酸氧化酶1(GhACO1)基因,并将该基因构建到植物表达载体PBI121中,其中GhACO1基因位于CaMV35S启动子和GUS报告基因之间。通过花滴法将GhACO1基因转化拟南芥,利用卡那霉素对转化植株进行初步筛选,对卡那霉素阳性植株进行进一步的PCR检测和GUS组织化学分析。结果表明:GhACO1基因已经整合到拟南芥基因组中;GUS组织化学分析显示,在转基因拟南芥叶、茎和根中都表现出GUS活性。研究结果为进一步探讨GhACO1的生物学功能和基因工程改良棉花纤维品质奠定了基础。  相似文献   

2.
花是被子植物主要的繁殖器官,在繁育后代的过程中,发挥着极其重要的作用,PISTILLATA(PI)基因作为控制花器官发育的B类功能基因中的一员,在花器官发育中起到重要的作用。为探究PI基因在花瓣和雄蕊发育中的功能,本文以拟南芥(Arabidopsis thaliana)中的PI基因作为研究对象,利用PCR技术从拟南芥花序c DNA扩增出At PI基因,构建植物表达载体(p ROKⅡ-At PI)并进行烟草(Nicotiana tobacum)转化。转基因植株的PCR检测结果表明,At PI基因已经整合到了烟草基因组中。在T2代植株中,通过实时定量荧光PCR检测显示,At PI在m RNA水平也均有表达。过量表达PI的转基因烟草在花器官中存在明显表型,与野生型相比主要表现为转基因植株花冠变小,雄蕊缩短,果实畸形且子房基部比野生型长5~10 mm,上述结果表明At PI基因是特异性参与雄蕊和花瓣的发育并起着至关重要的作用。  相似文献   

3.
以拟南芥(Arabidopsis thaliana)为材料,运用RT-PCR技术扩增得到了富含亮氨酸的类受体蛋白激酶(LRR-RLKs)亚家族基因RLK6,构建了RLK6与绿色荧光蛋白基因(GFP)融合表达载体并转化拟南芥,用激光共聚焦扫描显微镜观察转基因植物细胞表明:RLK6蛋白定位于细胞膜上;将RLK6-GFP在原生质体中进行瞬时表达,进一步证实了RLK6蛋白定位于细胞膜上。构建了RLK6启动子(2 063bp)融合GUS报告基因的载体并转化拟南芥,对转基因植株进行组织化学染色分析表明:RLK6在拟南芥的幼苗、根、花、角果等组织中都有表达,花中表达量较高,尤其是在雄蕊中特异高表达,而在茎、莲座叶和干种子中几乎没有表达。RT-PCR分析结果与GUS组织化学染色的结果一致。研究推测,RLK6可能在花器官生长发育或相关生理过程的信号转导中发挥作用。  相似文献   

4.
TaNHX2基因植物表达载体的构建及在拟南芥中的功能分析   总被引:1,自引:0,他引:1  
将TaNHX2基因重组于质粒pBIN438的CaMV 35S启动子下游,构建含TaNHX2基因的植物双元表达载体pBIN438-TaNHX2。采用根癌农杆菌介导的真空渗透法转化拟南芥,得到T0代转基因拟南芥种子。经含Kan的平板筛选及PCR鉴定,获得54株阳性植株,选取生长一致的转基因阳性植株进行耐盐、耐旱分析,结果表明TaNHX2能够提高转基因植株的耐盐性和耐旱性。  相似文献   

5.
采用来源于产碱杆菌(Alcaligenes eutrophus)的PHB合成酶基因phbA,经PCR扩增后,将验证正确的phbA插入到烟草质体表达载体pBio3-GFP中,取代载体中的gfp,形成prrn-phbA-aadA-TpsbA-ter表达盒,得到质体表达载体pCTHBA,通过基因枪介导,用包裹有质粒pCTHBA的金粉子弹轰击拟南芥无菌苗叶片,经壮观霉素筛选后获得拟南芥抗性植株12株;PCR验证初步表明,phbA已整合进拟南芥的质体基因组中;对转基因拟南芥植株的花器官表型和花粉显微观察表明,phbA基因在拟南芥中得到表达,显现出雄性不育的性状.  相似文献   

6.
以拟南芥为材料介绍一种不需组培的原位植物转化方法—真空渗透法。将含有T—DNA载体的农杆菌细胞悬液,用真空渗透的方式转化愈伤的完整植株,从而直接获得转化的种子。该法快速简便、重复性好,不需经过组培阶段即可获得转化植株,其转化效率完全可以满足基因转移及表达检测研究的需要  相似文献   

7.
拟南芥磷酸酶基因亚细胞定位与组织表达   总被引:2,自引:1,他引:1  
通过克隆拟南芥磷酸酶PP2C家族基因At3g51370,构建了绿色荧光蛋白融合表达载体,用基因枪将构建好的载体轰击洋葱表皮细胞进行瞬时表达分析,发现该At3g51370基因表达蛋白定位在细胞核中;用实时定量PCR方法分析At3g51370基因的组织表达特性,发现该基因在花器官中的表达量明显高于其它组织.进一步构建了含At3g51370基因的启动子和GUS报告基因的植物表达载体,经农杆菌介导转化拟南芥,对转基因拟南芥进行GUS组织化学染色,分析该启动子在不同生长时期与不同组织中的转录活性,结果发现,在幼苗期At3g51370基因主要集中在根尖分生组织和顶端分生组织表达,在成年植株中则集中在生殖器官如花和果荚柄等部位表达,在光照和黑暗条件下,At3g51370基因的表达特性没有明显差异.研究表明,At3g51370可能与其它核定位的PP2C磷酸酶一样参与了基因表达的调控,可能在拟南芥早期发育阶段的细胞增值分裂相关信号转导途径中发挥功能,并在花器官的发育过程中行使功能,且不参与光信号转导.  相似文献   

8.
细胞分裂素对拟南芥(Arabidopsis thaliana)花分生组织细胞的分裂和分化具有重要作用。本研究利用APETALA1(AP1)特异启动子在花分生组织和第1、2轮花器官中表达细胞分裂素合成酶(isopentyl transferase,IPT)基因IPT4,研究细胞分裂素对花和花器官发育的影响。在pAP1∷IPT4转基因植株中出现了花密集和花器官数目增多等现象。原位杂交和GUS组织染色结果发现,在pAP1∷IPT4转基因植株中,花分生组织特征决定基因LEAFY(LFY)与花器官特征决定基因AP1、PISTILLATA(PI)和AGAMOUS(AG)的表达量均有不同程度的提高。研究结果表明在拟南芥中表达pAP1∷IPT4影响其花和花器官的正常发育。  相似文献   

9.
细胞分裂素对拟南芥(Arabidopsis thaliana)花分生组织细胞的分裂和分化具有重要作用。本研究利用APETALA1(AP1)特异启动子在花分生组织和第1、2轮花器官中表达细胞分裂素合成酶(isopentyl transferase,IPT)基因IPT4,研究细胞分裂素对花和花器官发育的影响。在pAP1∷IPT4转基因植株中出现了花密集和花器官数目增多等现象。原位杂交和GUS组织染色结果发现,在pAP1∷IPT4转基因植株中,花分生组织特征决定基因LEAFY(LFY)与花器官特征决定基因AP1、PISTILLATA(PI)和AGAMOUS(AG)的表达量均有不同程度的提高。研究结果表明在拟南芥中表达pAP1∷IPT4影响其花和花器官的正常发育。  相似文献   

10.
拟南芥CYCD3;1基因的克隆及功能研究   总被引:2,自引:0,他引:2  
从拟南芥基因组中克隆出CYCD3;1基因,将其插入植物双元载体pER8中,使其受一个嵌合转录启动子的控制;利用农杆菌介导通过真空渗透法将外源基因导入拟南芥中,经潮霉素抗性筛选出转化植株后,用PCR鉴定出阳性转化植株,对阳性转化植株进行连续光照培养并观察其表型变化,发现转基因株系与野生型之间在抽苔和开花时间上有较大差别。结果表明,CYCD3;1低水平误表达会影响植物的生长发育。  相似文献   

11.
The Agrobacterium vacuum infiltration method has made it possible to transform Arabidopsis thaliana without plant tissue culture or regeneration. In the present study, this method was evaluated and a substantially modified transformation method was developed. The labor-intensive vacuum infiltration process was eliminated in favor of simple dipping of developing floral tissues into a solution containing Agrobacterium tumefaciens, 5% sucrose and 500 microliters per litre of surfactant Silwet L-77. Sucrose and surfactant were critical to the success of the floral dip method. Plants inoculated when numerous immature floral buds and few siliques were present produced transformed progeny at the highest rate. Plant tissue culture media, the hormone benzylamino purine and pH adjustment were unnecessary, and Agrobacterium could be applied to plants at a range of cell densities. Repeated application of Agrobacterium improved transformation rates and overall yield of transformants approximately twofold. Covering plants for 1 day to retain humidity after inoculation also raised transformation rates twofold. Multiple ecotypes were transformable by this method. The modified method should facilitate high-throughput transformation of Arabidopsis for efforts such as T-DNA gene tagging, positional cloning, or attempts at targeted gene replacement.  相似文献   

12.
In this study, floral spray and floral dip were used to replace the vacuum step in the Agrobacterium-mediated transformation of a superoxide dismutase (SOD) gene into Arabidopsis. The transgene was constructed by using a CaMV 35S promoter to drive a rice cytosolic CuZnSOD coding sequence in Arabidopsis. The transgene construct was developed in binary vectors and mobilized into Agrobacterium. When Arabidopsis plants started to initiate flower buds, the primary inflorescence shoots were removed and then transformed by floral spray or floral dip. More than 300 transgenic plants were generated to assess the feasibility of floral spray used in the in planta transformation. The result indicates that the floral spray method of Agrobacterium can achieve rates of in planta transformation comparable to the vacuum-infiltration and floral dip methods. The floral spray method opens up the possibility of in planta transformation of plant species which are too large for dipping or vacuum infiltration.  相似文献   

13.
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   

14.
The plant MADS-box regulatory gene family includes several loci that control different aspects of inflorescence and floral development. Orthologs to the Arabidopsis thaliana MADS-box floral meristem genes APETALA1 and CAULIFLOWER and the floral organ identity genes APETALA3 and PISTILLATA were isolated from the congeneric species Arabidopsis lyrata. Analysis of these loci between these two Arabidopsis species, as well as three other more distantly related taxa, reveal contrasting dynamics of molecular evolution between these paralogous floral regulatory genes. Among the four loci, the CAL locus evolves at a significantly faster rate, which may be associated with the evolution of genetic redundancy between CAL and AP1. Moreover, there are significant differences in the distribution of replacement and synonymous substitutions between the functional gene domains of different floral homeotic loci. These results indicate that divergence in developmental function among paralogous members of regulatory gene families is accompanied by changes in rate and pattern of sequence evolution among loci.  相似文献   

15.
Collective efforts of several laboratories in the past two decades have resulted in the development of various methods for Agrobacterium tumefaciens-mediated transformation of Arabidopsis thaliana. Among these, the floral dip method is the most facile protocol and widely used for producing transgenic Arabidopsis plants. In this method, transformation of female gametes is accomplished by simply dipping developing Arabidopsis inflorescences for a few seconds into a 5% sucrose solution containing 0.01-0.05% (vol/vol) Silwet L-77 and resuspended Agrobacterium cells carrying the genes to be transferred. Treated plants are allowed to set seed which are then plated on a selective medium to screen for transformants. A transformation frequency of at least 1% can be routinely obtained and a minimum of several hundred independent transgenic lines generated from just two pots of infiltrated plants (20-30 plants per pot) within 2-3 months. Here, we describe the protocol routinely used in our laboratory for the floral dip method for Arabidopsis transformation. Transgenic Arabidopsis plants can be obtained in approximately 3 months.  相似文献   

16.
G N Drews  J L Bowman  E M Meyerowitz 《Cell》1991,65(6):991-1002
We characterized the distribution of AGAMOUS (AG) RNA during early flower development in Arabidopsis. Mutations in this homeotic gene cause the transformation of stamens to petals in floral whorl 3 and of carpels to another ag flower in floral whorl 4. We found that AG RNA is present in the stamen and carpel primordia but is undetectable in sepal and petal primordia throughout early wild-type flower development, consistent with the mutant phenotype. We also analyzed the distribution of AG RNA in apetela2 (ap2) mutant flowers. AP2 is a floral homeotic gene that is necessary for the normal development of sepals and petals in floral whorls 1 and 2. In ap2 mutant flowers, AG RNA is present in the organ primordia of all floral whorls. These observations show that the expression patterns of the Arabidopsis floral homeotic genes are in part established by regulatory interactions between these genes.  相似文献   

17.
18.
A number of in planta transformation protocols that avoid long culture under sterile conditions were developed for Arabidopsis thaliana. The most widely used methods are based on vacuum infiltration and floral dip. These methods were adapted for transformation of other species as well. Successful in planta transformations of alfalfa, radish, pakchoi and petunia were reported recently. In this short review we present several modified procedures originally developed for Arabidopsis thaliana and in some cases adapted to other species. We emphasize the crucial parameters involved in in planta transformation. We also describe here the studies attempting to shed light on the mechanisms and estimating the cellular target of transformation, which may help in transforming new plant species.  相似文献   

19.
桃蚜MpAChE基因RNAi表达载体构建及转化   总被引:1,自引:0,他引:1  
通过害虫取食植物表达害虫发育关键基因dsRNA的转基因植株,分析能否通过抑制害虫特定基因的表达来防控害虫。本研究利用RT-PCR技术从桃蚜中克隆乙酰胆碱酯酶基因383 bp cDNA片段,命名为MpAChE。进一步利用该MpAChE基因片段构建植物RNAi表达载体RNAi-MpAChE,并通过浸花法转化野生型拟南芥,通过卡那霉素抗性筛选转化植株,PCR及Southern杂交进一步鉴定转基因植株。结果表明:克隆的cDNA片段与桃蚜中已克隆的乙酰胆碱酯酶(GenBank登录号AY147797)cDNA序列核苷酸一致性为99%。卡那霉素抗性初步筛选和PCR进一步鉴定,获得25株阳性转基因植株。从25株中随机选择的5株阳性植株,Southern杂交均为阳性。经接种桃蚜初步鉴定,转基因植株对蚜虫的抗性效果不显著。  相似文献   

20.
从地衣芽孢杆菌(Bacillus licheniformis)中克隆到耐高温α-淀粉酶基因全长, 构建了原核表达载体, 转入大肠杆菌(Escherichia coli)中, 使用IPTG于28°C诱导6小时后, 通过SDS-PAGE检测到目的蛋白, 分子量约为55 kDa, 并通过酶活力检测实验证明该蛋白具有耐高温α-淀粉酶活性。同时构建了该基因融合GFP的植物表达载体, 通过农杆菌(Agro- bacterium tumefaciens)介导瞬时转化烟草(Nicotiana tabacum)下表皮细胞并在荧光显微镜下观察, 发现在烟草下表皮细胞的细胞质和液泡中均有绿色荧光。使用I2-KI溶液对乙醇脱色后的烟草叶片进行染色, 显色反应表明在烟草中表达的耐高温α-淀粉酶具有酶活性。最后, 采用农杆菌介导的花蕾浸泡法将重组载体转化到拟南芥(Arabidopsis thaliana)中, 筛选到稳定遗传的耐高温α-淀粉酶基因的拟南芥纯合子。研究结果为后期开展表达耐高温α-淀粉酶的转基因植物的相关研究奠定了实验基础。  相似文献   

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