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首页> 外文期刊>Plant Physiology and Biochemistry >Vascular-specific expression of GUS and GFP reporter genes in transgenic grapevine (Vitis vinifera L. cv. Albari?o) conferred by the EgCCR promoter of Eucalyptus gunnii
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Vascular-specific expression of GUS and GFP reporter genes in transgenic grapevine (Vitis vinifera L. cv. Albari?o) conferred by the EgCCR promoter of Eucalyptus gunnii

机译:冈比亚桉树EgCCR启动子赋予转基因葡萄(Vitis vinifera L. cv。Albari?o)中GUS和GFP报告基因的血管特异性表达

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摘要

In the view of the economic importance of grapevine and the increasing threaten represented by vascular diseases, transgenic grapevine with enhanced tolerance could represent an attractive opportunity. Hitherto, constitutive promoters have been used generally to study the effects of transgene expression in grapevine. Given the fact that constitutive gene expression may be harmful to the host plant, affecting plant growth and development, the use of tissue -specific promoters restricting gene expression to tissues of interest and at given developmental stages could be more appropriate. For this purpose, we decided to study in grapevine the activity of the Eucalyptus gunnii CCR promoter that was previously reported to be vascular-preferential. We transformed grapevine with the "Sonication assisted Agrobacterium-mediated transformation" (SAAT) method and a construct where both GUS and GFP (green fluorescent protein) marker genes were under control of the EgCCR promoter. High GUS and GFP activities were found to be associated with the newly formed vascular tissues in stems, leaves and petioles of transformed grapevine, suggesting a preferential activity of the EgCCR promoter in the vascular tissues of grapevine. These results suggest the tissue-specificity of this promoter from eucalyptus is conserved in grapevine and that it could be used to drive expression of defense genes in order to enhance resistance against vascular pathogens.
机译:鉴于葡萄的经济重要性以及以血管疾病为代表的日益增加的威胁,具有增强的耐受性的转基因葡萄可能是一个有吸引力的机会。迄今为止,组成型启动子已普遍用于研究转基因在葡萄中表达的作用。鉴于组成型基因表达可能对宿主植物有害,从而影响植物的生长和发育,使用组织特异性启动子将基因表达限制在目标组织和给定的发育阶段可能更为合适。为此,我们决定在葡萄树中研究冈比亚桉树CCR启动子的活性,该活性先前据报道是血管优先的。我们用“声波辅助农杆菌介导的转化”(SAAT)方法和GUS和GFP(绿色荧光蛋白)标记基因均受EgCCR启动子控制的构建体转化了葡萄。发现高的GUS和GFP活性与转化的葡萄的茎,叶和叶柄中新形成的血管组织有关,这表明EgCCR启动子在葡萄的血管组织中具有优先活性。这些结果表明,来自桉树的该启动子的组织特异性在葡萄中是保守的,并且其可用于驱动防御基因的表达以增强对血管病原体的抗性。

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