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首页> 外文期刊>Acta Physiologiae Plantarum >Transformation of wheat Triticum aestivum with the HvBADH1 transgene from hulless barley improves salinity-stress tolerance
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Transformation of wheat Triticum aestivum with the HvBADH1 transgene from hulless barley improves salinity-stress tolerance

机译:小麦特氏菌与HVBADH1转基因的转化从Hulless Barley中改善了盐度应力耐受性

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摘要

Studies have shown that the stress tolerance of cereal plants to osmotic or salinity stresses can be improved to varying degrees by the overexpression of an introduced betaine aldehyde dehydrogenase (BADH) gene. In the present study, the HvBADH1 gene from Hordeum vulgare L. var. nudum Hook. f., encoding a cytosolic BADH, was transferred into Triticum aestivum via traditional Agrobacterium tumefaciens-mediated transformation. Molecular methods, such as PCR, Southern blot analysis, and real-time quantitative RT-PCR were used to identify the successful integration and expression of the HvBADH1 transgene in genetically transformed wheat lines. To detect the efficacy of the HvBADH1 transgene in the transformants, some pivotal physiological indicators that reflected abiotic stress tolerance were measured in individual transgenic plant lines. These indicators included intracellular K+ and Na+ contents or K+/Na+ ratio, relative conductivity, and malondialdehyde and glycine betaine (GB) concentrations in cells. The results revealed that all the tested transgenic lines could significantly increase the recruitments of K+ in their cytosol than the wild-type seedlings. Similarly, 11.59- to 21.82-fold greater accumulation of GB, 2.11-2.56 times higher calli relative growth rates, and 26.2-29.1% seedling survival rates were found in transgenic lines under 150 mM NaCl stressed conditions. Our results demonstrated that by overexpressing the HvBADH1 transgene in genetically transformed wheat, the overall salt tolerance of the target plants was significantly increased, and the damaging effects of high salinity were significantly reduced.
机译:研究表明,通过引入的甜菜碱醛脱氢酶(BADH)基因的过表达,可以改善谷物植物与渗透或盐度应力的应力耐受性。在本研究中,HVBADH1基因来自Hordeum Vulgare L. VAR。 Nudum Hook。 F.编码细胞溶质BADH,通过传统的土壤杆菌介导的转化转移到Triticum Aestivum。用于诸如PCR,Southern印迹分析和实时定量RT-PCR的分子方法来鉴定遗传转化的小麦线中HVBADH1转基因的成功整合和表达。为了检测转基因在转化体中的HVBADH1转基因的功效,在单个转基因植物系中测量反射非生物胁迫耐受性的一些枢转生理指标。这些指示剂包括细胞内细胞内K +和Na +含量或K + / Na +比,相对导电性和丙二醛(GB)浓度。结果表明,所有测试的转基因系可以显着增加其细胞溶质的k +的募集,而不是野生型幼苗。类似地,11.59-21.82倍的GB积累,愈伤症相对生长率高的2.11-2.56倍,在150mM NaCl胁迫条件下,在转基因系中发现了26.2-29.1%的幼苗存活率。我们的研究结果表明,通过过度表达遗传转化的小麦中的HVBADH1转基因,靶植物的总耐盐性显着增加,高盐度的破坏性效果显着降低。

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  • 来源
    《Acta Physiologiae Plantarum》 |2019年第9期|共14页
  • 作者单位

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

    Northwest Univ Prov Key Lab Biotechnol Shaanxi Prov Key Lab Resource Biol &

    Biotechnol Western China Minist Educ Life Sci Sch Xian 710069 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

    HvBADH1; Triticum aestivum; Genetic transformation; Salt stress resistance; Glycine betaine;

    机译:hvbadh1;triticum aestivum;遗传转化;盐胁迫抗性;甘氨酸甜菜碱;

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