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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Isolation and functional characterization of the promoter of SEPALLATA3 gene in London plane and its application in genetic engineering of sterility
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Isolation and functional characterization of the promoter of SEPALLATA3 gene in London plane and its application in genetic engineering of sterility

机译:伦敦平面萼片3基因启动子的分离与功能表征及其在无菌基因工程中的应用

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摘要

In Platanus acerifolia, the SEP3 homolog PlacSEP3 may possess multiple functions, including roles in floral organ identity, development, and vegetative development. This work aimed to characterize the function of PlacSEP3 promoter and analyzed whether PlacSEP3 promoter could be used for genetic engineering flowerless London plane cultivars. The PlacSEP3 promoter was isolated by TAIL-PCR and cis-acting regulatory elements were predicted using the PLACE database and PlantCARE database. Three 5-deletions of PlacSEP3 promoter were fused to the GUS gene and transformed into tobacco to analyze the functional by Histochemical staining and fluorometric determination. The pPlacSEP3-3::Barnase and pPlacSEP3-3::Barnase-mic35S-Barstar vectors were constructed and transformed into tobacco to test whether pPlacSEP3 could be used for genetic engineering flowerless London plane cultivars. A 1491-bp sequence was isolated, this sequence contained multiple putative cis-regulatory elements related to flower, pollen, and embryo/endosperm development, light responsive. Histochemical staining and fluorometric determination showed that GUS was strongly expressed in reproductive organs and apical buds, and was slightly expressed in vegetative tissues, except the roots of pPlacSEP3-1::GUS and pPlacSEP3-3::GUS transgenic tobacco. However, GUS was not expressed in floral organs and was just slightly expressed in fruits of pPlacSEP3-2::GUS transgenic tobacco. Interestingly, transgenic tobacco of all three constructs showed GUS staining at the bud side of semi-lignified and old stems. The pPlacSEP3-3::Barnase-mic35S-Barstar transgenic tobacco showed various degrees of sterility and vegetative developmental defects. The pPlacSEP3 involved in flower initiation, development and some aspects of vegetative development, such as lateral bud initiation and development. The pPlacSEP3 had the potential application for genetic engineering flowerless cultivars.
机译:在Platanus Acerifolia中,SEP3同性恋Placsep3可能具有多种功能,包括花式器官身份,发展和植物开发中的作用。这项工作旨在表征PlacSep3启动子的功能,并分析Placep3启动子是否可用于基因工程无花卉伦敦植物品种。通过尾PCR分离PARPSEP3启动子,并使用PLACE数据库和PlantCare数据库预测CIS作用调节元件。将PlacSep3启动子的三种5次缺失融合给GUS基因,并转化为烟草,以通过组织化学染色和荧光测定来分析功能。 PPLACSEP3-3 :: BARNASE和PPLACSEP3-3 ::氨基酶-MIC35S-BARSTAR载体被构建并转化为烟草,以测试PPLACSEP3是否可用于基因工程无花卉伦敦平面品种。分离了1491-BP序列,该序列包含与花,花粉和胚胎/胚乳开发有关的多个推定的顺式调节元件,响应光。组织化学染色和荧光测定表明,GUS在繁殖器官和顶端芽中强烈表达,并且在营养组织中略微表达,除了PPLACSEP3-1 :: GUS和PPLACSEP3-3 :: GUS转基因烟草的根源。然而,GUS没有用花动器表达,并且在PPLACSEP3-2 :: Gus转基因烟草的果实中略微表达。有趣的是,所有三种构建体的转基因烟草在半氧化和老茎的芽侧显示了GUS染色。 PPLACSEP3-3 :: Barnase-Mic35S-Barstar转基因烟草显示出各种无菌和营养发育缺陷。 PPLACSEP3参与花卉启动,发展和营养发展的某些方面,如横向发芽和发育。 PPLACSEP3具有遗传工程无花卉品种的潜在应用。

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