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Application of the broccoli wound-inducible promoter of GLUCOSE INHIBITION of ROOT ELONGATION 1 gene in transgenic plants

机译:西兰花伤口诱导型葡萄糖启动子启动子的启动子在转基因植物中的应用

摘要

In this study, we used a wound-inducible promoter of the broccoli (Brassica oleracea var. italica) GLUCOSE INHIBITION of ROOT ELONGATION1 (GIR1) gene fused to β-glucuronidase (GUS, pBoGIR1::GUS) as a selectable marker. Transgenic broccoli plants expressing pBoGIR1::GUS appear blue in planta at wounded regions after GUS staining for 30 min. Similarly, the blue color is visible in transgenic Arabidopsis and rice plants expressing pBoGIR1::GUS at wounded areas after GUS staining for 2 h, indicating that this promoter is wound-inducible in both dicots and monocots. GUS staining is very rapid and the partial wounding in this study is a nondestructive method that does not affect further plant growth and development. Thus, pBoGIR1::GUS could serve as an effective substitute for antibiotic- and herbicide-resistance genes in the generation of genetically modified crops.
机译:在这项研究中,我们使用了与β-葡萄糖醛酸苷酸酶(芸苔 var。 italica )的ROOT ELONGATION1(GIR1)基因葡萄糖诱导的创面诱导启动子。 GUS,pBoGIR1 :: GUS)作为选择标记。 GUS染色30分钟后,表达pBoGIR1 :: GUS的转基因西兰花植物在受伤部位的植物体内呈蓝色。类似地,在转基因拟南芥和水稻中,pUSG染色2 h后在受伤区域表达pBoGIR1 :: GUS的水稻中可见蓝色,表明该启动子在双子叶植物和单子叶植物中均可被伤口诱导。 GUS染色非常迅速,本研究中的部分受伤是一种非破坏性方法,不会影响植物的进一步生长和发育。因此,在转基因作物的生产中,pBoGIR1 :: GUS可以有效替代抗生素和除草剂抗性基因。

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