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香蕉果实特异性ACC合酶基因启动子区的克隆及其功能初探   总被引:9,自引:2,他引:9  
王新力  彭学贤 《生物工程学报》2001,17(3):293-296,T001
根据本实验室所获得的香蕉果实特异性ACC合酶cDNA序列,以改进的接头连接PCR方法通过两次步行从香蕉基因组中分别扩增并克隆了其基因5′旁侧区近端1.2kb和远端1.6kb的片段。通过拼接,构建出含有2505bp启动子区和转录起始位点下游86bp的共2591bp的基因5′旁侧区片段;其启发性动子区中34至28为推测的TATA盒序列,158至146为推测的CCAAT盒,与其它植物基因启动子结构相类似。将2.5kb启动子片段与β-葡糖苷酸酶(GUS)基因编码序列融合,用基因枪法将构建的嵌合基因转入香蕉叶、根和果实的细胞后,只在果实细胞中观察到报告基因的瞬时表达,从功能上证明了此25kb的启动子片段具有指导报告基因在香蕉果实中特异性表达的作用。同时构建5个含不同5′端缺失启动子与GUS融合基因的表达载体。瞬时表达结果表明可能负责果实特异性表达的调控区存在于转录起始位点至-1111的启动子区中,而在-1111至-608区间可能存在一个正控制区。  相似文献   

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Fruit-specific promoters have been used as genetic engineering tools for studies on molecular mechanism of fruit development and advance in fruit quality and additional value by increasing functional component. Especially fruit-ripening specific promoters have been well utilized and studied in tomato; however, few studies have reported the development of promoters that act at fruit developing stages such as immature green and mature green periods. In this study, we report novel promoters for gene expression during the green to ripening stages of tomato fruit development. Genes specifically expressed at tomato fruit were selected using microarray data. Subsequent to confirmation of the expression of the selected 12 genes, upstream DNA fragments of the genes LA22CD07, Les.3122.2.A1_a_at and LesAffx.6852.1.S1_at which specifically expressed at fruit were isolated from tomato genomic DNA as promoter regions. Isolated promoter regions were fused with the GUS gene and the resultant constructs were introduced into tomato by agrobacterium-mediated transformation for evaluation of promoter activity in tomato fruit. The two promoters of LA22CD07, and LesAffx.6852.1.S1_at showed strong activity in the fruit, weak activity in the flower and undetectable activity in other tissues. Unlike well-known fruit-ripening specific promoters, such as the E8 promoter, these promoters exhibited strong activity in green fruit in addition to red-ripening fruit, indicating that the promoters are suitable for transgene expression during green to ripening stages of tomato fruit development. KEY MESSAGE: Novel fruit-specific promoters have been identified and are suitable for transgene expression during green to ripening stages of tomato fruit development.  相似文献   

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香蕉果实成熟相关基因ACO1启动子区的克隆及其功能初探   总被引:9,自引:1,他引:9  
根据已报道的香蕉课实表达ACC氧化酶基因(ACO1)的序列,用改进的接头连接PCR法从香蕉基因组中扩增并克隆了此基因5′旁侧区1526bp的片段,其中包含一个推测的TATA盒序列;与已公布的两个香蕉ACC氧化酶基因启动子序列(分别为934bp和1451bp)的相似性各为97.3%(Lopez-Gomez等)和88.8%(May和Kipp)。将4个含有不同大小启动子区的克隆片段与GUS基因编码区连接构建成嵌合成基因,通过基因枪轰击转入香蕉叶、根和果实的细胞后,瞬时表达结果表明不同大小的ACO1启动子区段都只在果实细胞中指导GUS基因表达,证明该启动子具有指导基因在果实中表达的功能,并推测负责果实特异性的顺式元件可能位于启动子近端0.7kb区段之内,在468至822的355bp区段内可能在与正控制有关的顺式元件。  相似文献   

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西瓜果实特异启动子WSP功能区域的初步定位   总被引:3,自引:0,他引:3  
西瓜AGPase的大亚基基因wml1的 5′端上游 15 73bp序列 ,是一个果实特异性启动子 (命名为WSP)。根据WSP内部酶切位点 ,获得了 3个不同 5′端缺失的启动子片段 (长分别为 12 0 1bp、898bp、795bp) ,并构建成植物瞬间表达载体 ,与含WSP的瞬间表达载体一起用基因枪的方法转入西瓜叶、茎、花及不同发育期果实中。瞬时表达结果表明 ,15 73bp、12 0 1bp、898bp的片段均能指导GUS基因在西瓜果实和花中特异性表达 ,但是表达强度和表达时期有所不同 ,795bp的片段不能指导GUS基因表达。推测在 180bp 5 5 1bp之间可能存在促进外源基因在果实发育后期表达的顺式作用元件 ,而果实特异调控区域可能位于 85 4bp 95 7bp之间。  相似文献   

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根据wml1 5‘端启动子区域内部的限制性酶切位点,分离得到长度分别为1573bp、1197bp、896bp、795bp的片段,并与GUS基因融合构成转录融合体。用农杆菌介导法将这些片段转入番茄中,对转基因植株进行GUS活性分析,发现1573bp、1197bp、896bp的片段都能诱导GUS在授粉后15天、30天、45天的番茄果实中表达,且表达强度随果实发育而增强,而在叶片、茎、根中未检测到GUS基因表达。而795bp的片段转化的植株中则未检测到GUS基因表达。推定857bp至957bp之间的序列中包含了启动子行使正常功能必需的元件。  相似文献   

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根据wml1 5’端启动子区域内部的限制性酶切位点,分离得到长度分别为1573bp、1197bp、896bp、795bp的片段,并与GUS基因融合构成转录融合体。用农杆菌介导法将这些片段转入番茄中,对转基因植株进行GUS活性分析,发现1573bp、1197bp、896bp的片段都能诱导GUS在授粉后15天、30天、45天的番茄果实中表达,且表达强度随果实发育而增强,而在叶片、茎、根中未检测到GUS基因表达。而795bp的片段转化的植株中则未检测到GUS基因表达。推定857bp至957bp之间的序列中包含了启动子行使正常功能必需的元件。  相似文献   

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西瓜果实特异性基因wml1的5‘端上游调控序列的分离   总被引:2,自引:0,他引:2  
西瓜(Citrullus vulgris Schrad.)ADP-葡萄糖焦磷酸化酶大亚基基因wml1的表达具有果实特异性。本文利用Uneven PCR技术成功地从西瓜基因组DNA中分离出一段长1864bp、位于wml1基因5‘端上游的新序列。该序列含有TATA盒和CAAT盒,具典型的启动子特征。克隆序列中180bp-1752bp和958bp-1752bp两个片段分别与GUS基因融合进行瞬间表达试验,结果初步表明180bp-1752bp片段具有果实特异性启动子活性,转录调控元件位于序列的180bp-958bp。  相似文献   

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The genomic clone for BN115, a low-temperature-responsive gene, was isolated from winter Brassica napus and its sequence was determined. A 1.2-kb fragment of the 5' regulatory region (from bp -1107 to +100) was fused to the beta-glucuronidase (GUS) reporter gene and BN115-promoted GUS expression was observed in green tissues of transgenic B. napus plants only after incubation at 2 degrees C. No expression was observed after incubation at 22 degrees C, either in the presence or the absence of ABA. Microprojectile bombardment of winter B. napus leaves with a BN115 promoter/GUS construct yielded similar results and was used to analyze a series of deletions from the 5' end of the promoter. Results obtained from transient expression studies showed that the low-temperature regulation of BN115 expression involves a possible enhancer region between bp -1107 and -802 and a second positive regulatory region located between bp -302 and -274. Deletion analyses and results from replacement with a truncated cauliflower mosaic virus 35S promoter suggest that the minimal size required for any maintenance of low-temperature GUS expression is a -300-bp fragment. Within this fragment are two 8-bp elements with the sequence TGGCCGAC, which are identical to those present in the positive regulatory region of the promoter of the homologous Arabidopsis cor15a gene and to a 5-bp core sequence in the low-temperature- and dehydration-responsive elements identified in the promoter regions of several cold-responsive Arabidopsis thaliana genes.  相似文献   

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Mutations of PTEN, a tumor suppressor gene located on chromosome 10, which encodes a protein-tyrosine and lipid-phosphatase, are prevalent in various human cancers, including glioblastoma. Despite extensive characterization of PTEN mutations in human cancers and a relatively good understanding of the molecular roles of PTEN in the control of cellular processes, little is known about modes of PTEN regulation. To understand the regulation of expression of the tumor suppressor gene PTEN, we isolated a 2212 bp fragment from the human BAC clone 46B12 DNA. The 3' end of this fragment starts at the Not I site of -745 relative to the first translation codon ATG (+1) and ends at the Sal I site of -2957 at the 5' end. Using classical 5'RACE and primer extension techniques, nine start sites were observed between -817 and -984 upstream of the ATG start site. We located a 137 bp fragment (-958/-821) as the minimum promoter region using promoter deletion and luciferase assays. A 704 bp fragment (-33/-737) downstream of the 2212 bp fragment was also cloned. As indicated by luciferase assays, the data show that this region possesses no promoter function. Interestingly, a p53 binding sequence is located within the 599 bp fragment (-1344/-745), although p53 expression had a minimal effect on PTEN, demonstrating its insignificant role in PTEN gene expression.  相似文献   

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Chimeric gene fusions between 4.4 kb of rod opsin 5' flanking sequence fused to a diphtheria toxin gene and 4.4 kb or 500 bp of rod opsin 5' flanking sequence fused to the E. coli IacZ gene were used to generate transgenic mice for analysis of cell type-specific expression and temporal and spatial distribution of reporter gene product during retinal development. Opsin-diphtheria toxin transgene expression evoked photoreceptor-specific cell death. The 4.4 kb opsin-IacZ transgene followed temporal and spatial gradients of expression that approximate opsin expression. The 500 bp opsin fragment targeted expression to photoreceptors, but expression was weaker and nonuniform, suggesting that elements located upstream may be required for enhanced and uniform spatial expression.  相似文献   

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