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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Classification of ion-beam-induced traits in Thai jasmine rice mutants using synchrotron radiation FTIR microspectroscopy
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Classification of ion-beam-induced traits in Thai jasmine rice mutants using synchrotron radiation FTIR microspectroscopy

机译:同步辐射FTIR显微技术对泰国茉莉花水稻突变体中离子束诱导性状的分类

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摘要

Thai jasmine rice is one of the prominent agricultural products of Thailand. Although it has made high export value for the country, the annual crop yield is limited by its photoperiod sensitivity and low disease resistance. Aiming to improve the rice traits, ion beam-induced genetic modification technique had been applied to the original jasmine rice, resulting in five selected agriculturally stable mutants. To overcome the complexity of conventional chemical test, we utilise the synchrotron-radiation-based FTIR microspectroscopy to investigate the main biochemical contents of rice samples. The infrared spectra were analysed to extract information on interesting components, including relative content quantification. Classification of rice traits based on spectroscopic data was performed by using principal component analysis (PCA). The PCA analysis results of the measured spectra in the carbohydrate region suggest that the mutant rice traits HyKOS3 and HyKOS3-1 are well separated from the original KDML105 rice. In contrast, the mutant rice traits HyKOS21 and HyKOS22 are seem to be inseparable from the original trait. The peak ratio of the crystallinity (1047 cm~(-1)/1022 cm~(-1)) for HyKOS21 shows significantly higher degree of order in the starch granule than the KDML105 rice. The results clearly demonstrate the differences and similarities between rice cultivars, showing the interest of using this technique as a preliminary examination for genetically modified biological samples.
机译:泰国茉莉香米是泰国著名的农产品之一。尽管它为该国带来了很高的出口价值,但其光周期敏感性和低抗病性限制了其年度作物产量。为了改善水稻的性状,将离子束诱导的基因修饰技术应用于原始的茉莉花水稻,产生了五个选定的农业稳定突变体。为了克服常规化学测试的复杂性,我们利用基于同步辐射的FTIR显微光谱技术研究了稻米样品的主要生化成分。分析红外光谱以提取有关有趣成分的信息,包括相对含量定量。使用主成分分析(PCA)对基于光谱数据的水稻性状进行分类。碳水化合物区域中测得光谱的PCA分析结果表明,突变稻的性状HyKOS3和HyKOS3-1与原始KDML105稻分离良好。相反,突变水稻性状HyKOS21和HyKOS22似乎与原始性状密不可分。 HyKOS21的结晶度峰值比(1047 cm〜(-1)/ 1022 cm〜(-1))比KDML105稻米显示出淀粉颗粒的有序度明显更高。结果清楚地表明了水稻品种之间的差异和相似性,表明使用这种技术作为转基因生物样品的初步检查的兴趣。

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    Plasma and Beam Physics Research Facility Department of Physics and Materials Science Faculty of Science Chiang Mai University Chiang Mai 50202 Thailand Thailand Center of Excellence in Physics Ministry of Higher Education Science Research and Innovation Bangkok 10400 Thailand Ph.D. Program in Applied Physics (International Program) Department of Physics and Materials Science Faculty of Science Chiang Mai University Chiang Mai 50202 Thailand;

    Plasma and Beam Physics Research Facility Department of Physics and Materials Science Faculty of Science Chiang Mai University Chiang Mai 50202 Thailand;

    Thailand Center of Excellence in Physics Ministry of Higher Education Science Research and Innovation Bangkok 10400 Thailand Research Cluster of Rice and Economic Crops Developments using Ion beam and Electron Beam Technologies Chiang Mai University Chiang Mai 50202 Thailand Science and Technology Research Institute Chiang Mai University Chiang Mai50202 Thailand;

    Synchrotron Light Research Institute (Public Organization) Nakhon Ratchasima 30000 Thailand;

    Plasma and Beam Physics Research Facility Department of Physics and Materials Science Faculty of Science Chiang Mai University Chiang Mai 50202 Thailand Thailand Center of Excellence in Physics Ministry of Higher Education Science Research and Innovation Bangkok 10400 Thailand Research Cluster of Rice and Economic Crops Developments using Ion beam and Electron Beam Technologies Chiang Mai University Chiang Mai 50202 Thailand;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    KDML105 rice; Thai jasmine rice; Mutant rice; FTIR microspectroscopy; Synchrotron radiation; Ion beam-induced genetic modification;

    机译:KDML105大米;泰国茉莉香米;突变水稻;FTIR显微光谱;同步辐射;离子束诱导的遗传修饰;

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