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首页> 外文期刊>Biotechnology & Biotechnological Equipment >OVEREXPRESSION OF NICOTIANAMINE SYNTHASE (NAS) GENE RESULTS IN ENHANCED DROUGHT TOLERANCE IN PERENNIAL RYEGRASS
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OVEREXPRESSION OF NICOTIANAMINE SYNTHASE (NAS) GENE RESULTS IN ENHANCED DROUGHT TOLERANCE IN PERENNIAL RYEGRASS

机译:烟碱黑麦草增强耐旱性的烟碱胺合酶(NAS)基因过表达

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摘要

As important forage crops, gramineous forage plants can also play role in improving natural environment, maintaining water and soil erosion with turfgrass plants together. Using the particle bombardment transformation system nicotianamine synthase gene was introduced into the callus of Lolium perenne. Twenty transgenic ryegrass lines were obtained from 105 pieces of G418-resistant calli, giving a 5.15% transformation frequency. PCR and Southern blotting analysis showed that target gene was integratedinto the genome of the transgenic plants. Transgenic plants displayed excellent drought resistant by expression of NASHOR gene in the field aridity experiment. The chlorophyll content of leaves in transgenic plant was higher than that of the controls innormal condition. The further observation infield experiment and identified resistance for these transgenic plants are underway.
机译:作为重要的草料作物,禾本科草料植物还可以与草皮草一起在改善自然环境,保持水土流失方面发挥作用。使用粒子轰击转化系统,将烟碱胺合酶基因引入黑麦草的愈伤组织中。从105个抗G418的愈伤组织中获得20个转基因黑麦草品系,转化频率为5.15%。 PCR和Southern印迹分析表明靶基因已整合到转基因植物的基因组中。在野外干旱试验中,通过表达NASHOR基因,转基因植物表现出优异的抗旱性。转基因植物叶片的叶绿素含量高于正常条件下的对照。这些转基因植物的进一步观察试验和鉴定抗性正在进行中。

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