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首页> 外文期刊>Planta: An International Journal of Plant Biology >Isolation and characterization of a 295-bp strong promoter of maize high-affinity phosphate transporter gene ZmPht1; 5 in transgenic Nicotiana benthamiana and Zea mays
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Isolation and characterization of a 295-bp strong promoter of maize high-affinity phosphate transporter gene ZmPht1; 5 in transgenic Nicotiana benthamiana and Zea mays

机译:玉米高亲和力磷酸转运蛋白ZMPHT1 295-BP强启动子的分离与表征; 5在转基因尼古利亚娜·斯特南亚和Zea Mays

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Main conclusion The small 295-bp ZmPht1; 5 promoter is sufficient to drive high-intensity expression of target genes, especially under phosphate deprivation conditions, and is therefore useful for crop improvement via transgenic techniques. Phosphate (Pi) deficiency has become a major challenge and limiting factor in world agricultural production. Manipulating the gene expression using appropriate promoters to improve the Pi absorption and utilization efficiency of crops could reduce the requirement for Pi fertilizers. In the study, a 295-bp strong promoter (M2P-7) of maize high-affinity phosphate transporter ZmPht1; 5 was isolated and functionally validated in transgenic Nicotiana benthamiana and maize by analyzing the ZmPht1; 5 promoter (M2P-1) and its 5 ' truncated variants (M2P-2 similar to M2P-8) in different sizes under normal and Pi-deprivation conditions. The M2P-7 displayed the highest promoter activities among 5 ' truncated fragments in all tested tissues of transgenic Nicotiana benthamiana at different development stages, which was 1.5 and 3 times higher than the well-used CaMV35S promoter under normal and Pi-deprivation conditions, respectively. In maize, the M2P-7 promoter activity was comparable to the maize ubiquitin1 promoter widely used in monocots under normal condition, which was about 1.3 times that of the ubiquitin1 promoter under Pi-deprivation environments. Moreover, the M2P-7 fragment is only 295 bp in length, thus reducing the construct size, and is therefore beneficial for genetic transformation. Thus, the small promoter M2P-7 of plant origin could be of great use for monocotyledonous and dicotyledonous crop improvement via transgenic techniques based on its promoter activities, expression patterns and small size.
机译:主要结论小295-BP ZMPHT1; 5启动子足以推动靶基因的高强度表达,特别是在磷酸盐剥夺条件下,因此可用于通过转基因技术进行作物。磷酸盐(PI)缺乏已成为世界农业生产中的主要挑战和限制因素。使用适当的启动子操纵基因表达以改善作物的PI吸收和利用效率可以降低PI肥料的要求。在该研究中,玉米高亲和力磷酸转运蛋白Zmpht1的295-BP强启动子(M2P-7); 5被分离,在转基因尼古特氏植物Benthamiana和玉米中验证,通过分析ZMPHT1;在正常和PI-剥夺条件下,5个启动子(M2P-1)及其5'截短的变体(类似于M2P-8的M2P-8)。 M2P-7在不同发育阶段的转基因Nicotiana Benthamiana的所有测试组织中展示了5'截短的碎片中的最高促进剂活性,其分别在正常和PI-剥夺条件下比使用良好的CAMV35S启动子高1.5和3倍。在玉米中,M2P-7启动子活性与正常条件下的单胶质中广泛使用的玉米Ubiquitin1启动子相当,其在PI-剥夺环境下的ubiquitin1启动子的约1.3倍。此外,M2P-7片段的长度仅为295bp,从而降低构建尺寸,因此有利于遗传转化。因此,植物来源的小型启动子M2P-7可能是通过基于其启动子活性,表达模式和小尺寸的转基因技术而广泛使用单圈和二坐突作物的巨大用途。

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