首页> 外文期刊>Online journal of biological sciences >A NAPIN PROMOTER ACTIVATES GENE EXPRESSION IN DEVELOPING SEEDS OF LESQUERELLA FENDLERI
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A NAPIN PROMOTER ACTIVATES GENE EXPRESSION IN DEVELOPING SEEDS OF LESQUERELLA FENDLERI

机译:NAPIN启动子可促进枫叶菌种中种子的基因表达

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Lesquerella fendleri produces industrial useful Hydroxy Fatty Acids (HFA) in seed oil. To improve oil and HFA of L. fendleri, it is desirable to use of seed-specific promoters to control the expression of target genes by genetic engineering. A seed-specific promoter fragment, -397 to -1 of a napin gene (PnapA) from Brassic napus was isolated by PCR and constructed to a small promoter-testing vector named pGPro4. A nopaline synthase (nos) promoter was used to control the expression of the selectable marker of pGPro4. pGPro4 also contains a bifunctional /3-glucuronidase-enhanced Green Fluorescent Protein (gusA-eGFP) reporter gene that provides visual detection of reporter gene expression using either fluorescence in live cells or histochemical detection of P-glucuronidase activity. To demonstrate the usefulness of PnapA, L. fendleri was transformed with the pGPro4-PnapA vector. Primary transgenic shoots were generated from explants at an expected frequency of 13 to 23%, indicating that the nos promoter drove sufficient hptll expression to generate hygromycin resistant plants. Five independent transgenic L. fendleri lines were grown to maturity and generated Ti seeds. Segregation analysis of Tj seeds indicated that the transgenic L. fendleri lines contain one, two or more integration sites. The gusA-eGFP reporter gene activity was examined in various organs of all these transgenic lines by standard GUS assay. Only seeds showed positive GUS stain, confirming that PnapA confers seed-specific expression in transgenic L. fendleri.
机译:茴香酒(Lesquerella fendleri)在种子油中生产工业上有用的羟基脂肪酸(HFA)。为了改善芬德利乳杆菌的油和HFA,期望使用种子特异性启动子来通过基因工程控制靶基因的表达。通过PCR分离来自油菜的种子特异性启动子片段,napin基因(PnapA)的-397至-1,并构建到名为pGPro4的小的启动子测试载体中。使用胭脂碱合酶(nos)启动子来控制pGPro4的选择标记的表达。 pGPro4还包含双功能的/ 3-葡萄糖醛酸苷酶增强的绿色荧光蛋白(gusA-eGFP)报告基因,使用活细胞中的荧光或P-葡萄糖醛酸苷酶活性的组织化学检测,可以直观地检测报告基因的表达。为了证明PnapA的有用性,用pGPro4-PnapA载体转化了费氏乳杆菌。从外植体产生的初级转基因芽的预期频率为13%到23%,这表明nos启动子驱动了足够的hptII表达来产生潮霉素抗性植物。将五个独立的转基因伦氏乳杆菌系生长至成熟并产生Ti种子。 Tj种子的分离分析表明,转基因芬德氏乳杆菌系包含一个,两个或多个整合位点。通过标准GUS测定法检查了所有这些转基因品系的各个器官中的gusA-eGFP报告基因活性。只有种子显示出阳性的GUS染色,证实PnapA在转基因芬德利乳杆菌中具有种子特异性表达。

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