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Low-energy N-ion beam biotechnology application in the induction of Thai jasmine rice mutant with improved seed storability

机译:低能N-离子束生物技术在提高种子耐贮性的泰国茉莉花水稻突变体诱导中的应用

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摘要

Low-energy heavy-ion beam is a novel biotechnology used for mutation induction in plants. We used a low-energy N-ion beam to induce mutations in Thai jasmine rice (Oryza sativaL. cv. KDML 105) to improve the yield and seed quality. Seeds of BKOS6, a Thai jasmine rice mutant previously induced by ion beams, were re-bombarded with 60-kV-accelerated N-ions (N++N2+) to fluences of 1–2 × 1016 ions/cm2. The resulting mutant, named HyKOS21, exhibited photoperiod insensitivity, semi-dwarfness, and high yield potential. Seed storability of the mutant was studied in natural and accelerated ageing conditions and compared to that of KDML 105 and six other Thai rice varieties. In both testing conditions, HyKOS21 mutant had the highest seed storability among the tested varieties. After storage in the natural condition for 18 months, HyKOS21 had a seed germination percentage nearly two times as that of the original KDML 105. Biochemical analysis showed that the lipid peroxidation level of the mutant seeds was the lowest among those of the tested varieties. Furthermore, an expression analysis of genes encoding lipoxygenase isoenzyme (lox1,lox2, andlox3) revealed that the mutant lacked expression oflox1andlox2and expressed onlylox3in seeds. These results may explain the improved seed longevity of the mutant after storage. This work provides further evidence of the modification of biological materials using a low-energy ion beam to produce rice mutants with improved yield and seed storability. The benefits of this technology, to create new varieties with improved values, could serve for local economic development.
机译:低能量重离子束是一种用于植物诱变的新型生物技术。我们使用低能N离子束在泰国茉莉花水稻(Oryza sativaL。cv。KDML 105)中诱导突变,以提高产量和种子质量。将先前由离子束诱导的泰国茉莉花水稻突变体BKOS6的种子用60 kV加速的N离子(N ++ N2 +)重新轰击,通量为1-2××1016离子/ cm2。所得的突变体名为HyKOS21,表现出光周期不敏感,半矮化和高产量潜力。在自然和加速老化条件下研究了该突变体的种子可贮藏性,并将其与KDML 105和其他六个泰国水稻品种进行了比较。在两种测试条件下,HyKOS21突变体在测试品种中均具有最高的种子可贮藏性。在自然条件下保存18个月后,HyKOS21的种子发芽率是原始KDML 105的近两倍。生化分析表明,突变种子的脂质过氧化水平在测试品种中最低。此外,对编码脂氧合酶同工酶的基因(lox1,lox2和lox3)的表达分析表明,该突变体缺乏lox1和lox2表达,仅在种子中表达lox3。这些结果可以解释突变体在储存后提高的种子寿命。这项工作提供了进一步的证据,证明了使用低能离子束对生物材料进行改性,以生产具有提高的产量和种子可贮藏性的水稻突变体。这项技术的好处是创造具有更高价值的新品种,可以为当地的经济发展服务。

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  • 作者单位

    Department of Biology, Faculty of Science and Technology, Chiang Mai Rajabhat University,Center of Rice and Economic Crops Developments Using Ion Beam and Electron Beam Technologies, Chiang Mai University;

    Center of Rice and Economic Crops Developments Using Ion Beam and Electron Beam Technologies, Chiang Mai University,Thailand Center of Excellence in Physics, Commission on Higher Education;

    Center of Rice and Economic Crops Developments Using Ion Beam and Electron Beam Technologies, Chiang Mai University,Thailand Center of Excellence in Physics, Commission on Higher Education,Plasma and Beam Physics Research Facility, Department of Physics and Materials Science, Faculty of Science, Chiang Mai University;

    Center of Rice and Economic Crops Developments Using Ion Beam and Electron Beam Technologies, Chiang Mai University,Science and Technology Research Institute, Chiang Mai University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Low-energy ion beam; N-ion; Rice; Mutant; High yield; Seed storability;

    机译:低能离子束;N-离子;水稻;突变体;高产;种子耐贮性;

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