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首页> 外文期刊>International Journal of Genomics >Expression Analysis of Nitrogen Metabolism-Related Genes Reveals Differences in Adaptation to Low-Nitrogen Stress between Two Different Barley Cultivars at Seedling Stage
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Expression Analysis of Nitrogen Metabolism-Related Genes Reveals Differences in Adaptation to Low-Nitrogen Stress between Two Different Barley Cultivars at Seedling Stage

机译:氮代谢相关基因的表达分析揭示了在幼苗阶段两种不同大麦品种之间对低氮胁迫的差异

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摘要

The excess use of nitrogen fertilizers causes many problems, including higher costs of crop production, lower nitrogen use efficiency, and environmental damage. Crop breeding for low-nitrogen tolerance, especially molecular breeding, has become the major route to solving these issues. Therefore, in crops such as barley (Hordeum vulgare L.), it is crucial to understand the mechanisms of low-nitrogen tolerance at the molecule level. In the present study, two barley cultivars, BI-04 (tolerant to low nitrogen) and BI-45 (sensitive to low nitrogen), were used for gene expression analysis under low-nitrogen stress, including 10 genes related to primary nitrogen metabolism. The results showed that the expressions of HvNIA2 (nitrite reductase), HvGS2 (chloroplastic glutamine synthetase), and HvGLU2 (ferredoxin-dependent glutamate synthase) were only induced in shoots of BI-04 under low-nitrogen stress, HvGLU2 was also only induced in roots of BI-04, and HvGS2 showed a rapid response to low-nitrogen stressin the roots of BI-04. The expression of HvASNl (asparagine synthetase) was reduced in both cultivars, but it showed a lower reduction in the shoots of BI-04. In addition, gene expression and regulation differences in the shoots and roots were also compared between the barley cultivars. Taken together, the results indicated that the four above-mentioned genes might play important roles in low-nitrogen tolerance in barley.
机译:过量使用氮肥造成许多问题,包括作物生产成本更高,氮气利用效率降低和环境损害。作物育种用于低氮耐受性,特别是分子育种,已成为解决这些问题的主要途径。因此,在诸如大麦(Hordeum Vulgare L)之类的作物中,了解分子水平下的低氮耐受的机制至关重要。在本研究中,在低氮胁迫下,将两种大麦品种Bi-04(耐低氮)和Bi-45(对低氮)(对低氮气敏感)用于基因表达分析,包括与原发性氮代谢相关的10个基因。结果表明,HVNIA2(亚硝酸盐还原酶),HVGS2(叶片谷氨酰胺合成酶)和HVGLU2(福兰氏蛋白依赖性谷氨酸合酶)的表达仅在低氮胁迫下诱导HVGLU2,HVGLU2也仅诱导Bi-04的根,HVGS2显示出对低氮胁迫的快速响应Bi-04的根。在品种中,HVASN1(天冬酰胺合成酶)的表达减少,但在BI-04的芽中表现出较低的减少。此外,在大麦品种之间也比较了芽和根部的基因表达和调节差异。总之,结果表明,上述四种基因可能在大麦的低氮耐受性中发挥重要作用。

著录项

  • 来源
    《International Journal of Genomics》 |2018年第2期|共10页
  • 作者单位

    Biotechnology Research Institute of Shanghai Academy of Agricultural Sciences 2901 Beidi Road Minhang District Shanghai 201106 China;

    Biotechnology Research Institute of Shanghai Academy of Agricultural Sciences 2901 Beidi Road Minhang District Shanghai 201106 China;

    Biotechnology Research Institute of Shanghai Academy of Agricultural Sciences 2901 Beidi Road Minhang District Shanghai 201106 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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