高级检索

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

12C6+离子束诱变水稻籽粒Cd低积累突变体的研究

林园园 陈慧茹 刘斌美 叶亚峰 刘瓒 吴跃进

林园园, 陈慧茹, 刘斌美, 叶亚峰, 刘瓒, 吴跃进. 12C6+离子束诱变水稻籽粒Cd低积累突变体的研究[J]. 原子核物理评论, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
引用本文: 林园园, 陈慧茹, 刘斌美, 叶亚峰, 刘瓒, 吴跃进. 12C6+离子束诱变水稻籽粒Cd低积累突变体的研究[J]. 原子核物理评论, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
LIN Yuanyuan, CHEN Huiru, LIU Binmei, YE Yafeng, WU Yuejin, . Study on Low-cadmium Rice Mutants Induced by 12C6+ Ion Beam[J]. Nuclear Physics Review, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
Citation: LIN Yuanyuan, CHEN Huiru, LIU Binmei, YE Yafeng, WU Yuejin, . Study on Low-cadmium Rice Mutants Induced by 12C6+ Ion Beam[J]. Nuclear Physics Review, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488

12C6+离子束诱变水稻籽粒Cd低积累突变体的研究

doi: 10.11804/NuclPhysRev.33.04.488
基金项目: 中国科学院战略性先导科技专项A(XDA08040107);国家自然科学基金资助项目(31301297)
详细信息
    作者简介:

    林园园(1990-),女,在读研究生,从事生物物理研究,E-mail:wtlinyy@163.com

    通讯作者: 吴跃进,E-mail:yjwu@ipp.ac.cn
  • 中图分类号: Q691.8

Study on Low-cadmium Rice Mutants Induced by 12C6+ Ion Beam

Funds: Strategic Priority Research Program of the Chinese Academy of Sciences A(XDA08040107);Natural Science Foundation of china(31301297)
  • 摘要: 筛选低Cd积累水稻品种是控制稻米Cd含量的最直接有效的办法之一。本研究对重离子辐照的中籼9311(Oryza sativa L)后代,利用石墨炉原子吸收光谱法检测,对曝露在不同Cd含量(含Cd量为19.8 mg·kg-1镉池和含Cd量为2.721 mg·kg-1的污染农田)中进行M2代Cd低吸收突变单株筛选,研究重离子辐照水稻籽粒Cd吸收的突变率以及比较不同Cd含量曝露下的筛选效率。结果显示:重离子辐照可以诱发水稻籽粒Cd积累量的变异,其突变频率为3:398%±0:009(P<0:05);初筛获得78株籽粒较WT Cd吸收差异显著的突变体,进一步对其种植,分析M3代籽粒Cd含量。结果表明,重离子辐照诱变水稻突变体突变率高,遗传稳定,高Cd含量曝露下筛选效率更高,突变体水稻籽粒中Cd的积累存在着明显的差异,产生Cd积累差异的基因型丰富;相关性分析表明,M2代和M3代糙米中Cd含量存在显著相关性r=0:8210(P<0:01),M3代获得23株遗传性良好且Cd含量差异显著的突变体水稻,其中Cd含量低于国家标准0.2 mg·kg-1突变体3株。表明筛选出的水稻突变体,在吸收转运Cd的过程中,存在差异且能稳定遗传,可供进一步研究培育籽粒Cd低积累的水稻品种。


    Screening low-cadmium rice cultivar is the most directly and effective way to control cadmium content in rice grain. We screened low-cadmium rice mutant of M2 generation exposed in different Cd concentration (the pool contaminated with 19.8 mg Cd·kg-1 and the paddy field contaminated with 2.721 mg Cd·kg-1) from rice mutants(9311, Oryza sativa L) induced by 12C6+ ion beam, and explored the mutation rate of 12C6+ ion beam irradiation and the screening efficiency of different Cd concentration exposed, all of the detections were carried out by Graphite Furnace Atomic Absorption Spectrum(GFAAS). The results showed that the mutation rate is 3:398%±0:009(P<0:05) and high Cd concentration exposed has more efficiency in screening low-Cd rice mutant. Correlation analysis show significant correlation of Cd in rice grain between M2 and M3 generations, r=0:8210(P<0:01); We obtained 23 mutant strains with significant Cd concentration difference and they had a great genetic stability. Among them, three strains' Cd concentrations were lower than the national standard (0.2 mg·kg-1). They can used for further study on cultivating new rice varieties of low Cd accumulation in rice gain.
  • [1] ZHOU Libin, LI Wenjian, QU Ying, et al. Nuclear PhysicsReview, 2008, 25(3):335. (in Chinese) (周利斌, 李文建, 曲颖, 等. 原子能物理评论, 2008, 25(3):335.)
    [2] WEI Zengquan, XIE Hongmei, LIANG Jianping, et al. Nuclear Physics Review, 2003, 20(1):39. (in Chinese) (卫增泉, 颉红梅, 梁剑平, 等. 原子核物理评论, 2003, 20(1):39.)
    [3] European Food Safety Authority Scientic Opinion on Tolerable Weekly Intake for Cadmium. EFSAJ, 2011, 9(2):1975.
    [4] ZHOU Zhong, QIAN Xiaoyu, LUO Ancheng, et al. 1996, 18(6):19. (in Chinese) (周众钱, 肖余, 罗安程, 等. 环境污染与防治, 1996, 18(6):19.)
    [5] WANG Kairong. Rural Eco-Environment, 1996, 12(3):18. (in Chinese) (王凯荣. 农村生态环境, 1996, 12(3):18.)
    [6] TAN Zhouci. Hunan Agricultural Sciences, 1999, (5):26. (in Chinese) (谭周磁. 湖南农业科学, 1999, (5):26.)
    [7] BESSON A, GRAVOT A, RICHAUD P, et al. Plant Physiol, 2009, 149(15):1302.
    [8] WU Huilan, CHEN Chunlin, DUJuan, et al. Plant Physiology, 2012, 158(2):790.
    [9] AKIMASA Sasaki, NAOKI Yamaji, KENGO Yokosho, et al. Plant Cell, 2012, 24(5):2155.
    [10] SATORU I, YASHHIRO I, MASATO I, et al. PNAS, 2012, 109(47):19166.
    [11] UENO D, YAMAJI N, KONO I, et al. PNAS, 2010, 107(38):16500.
    [12] KARBLANE H. Proceedings of the Estonian Academy of Sciences Ecology, 1994, 6:52.
    [13] SATORU I, YASUHIRO I, MASATO I, et al. PNAS, 2012, 109(49):19166.
    [14] SIEDLECKA A, BASZYNSKY T. Physiologia Plantarum, 1993, 87(2):199.
    [15] GB/T 5009. 15-2003, 食品中Cd的测定[S]2003.
    [16] BAO Shidan. Soil Agrochemistry Analysis[M]. (Third Edition). Beijing:China Agriculture Press, 2000:30. (in Chinese) (鲍士. 旦土壤农化分析(第三版)[M]3版. 北京:中国农业出版社, 2000:30.)
    [17] CHEN Qiufang, WANG Cailian, TONG Weiyu. Journal of Zhejiang Agricultural Sciences, 1988, 2:59. (in Chinese) (陈秋方, 王彩莲, 童渭渔. 不同辐射因子对水稻诱变效应的比较[J]. 浙江农业科学, 1988, 2:59.)
    [18] GB2762-2012, 食品中污染物限量[S].
    [19] YU Zengliang. An Int roduction of Ion Beam Biotechnology[M]. Hefei:Anhui Science and Technology Press, 1998, 216. (in Chinese) (余增亮. 离子束生物技术引论[M]. 合肥:安徽科学技术出版社, 1998, 216.)
    [20] QU Ying, LI Wenjian, ZHOU Libin, et al. Nuclear Physics Review, 200724(4):294. (in Chinese) (曲颖, 李文建, 周利斌, 等. 2007, 24(4):294.)
  • 加载中
计量
  • 文章访问数:  1286
  • HTML全文浏览量:  128
  • PDF下载量:  142
  • 被引次数: 0
出版历程
  • 收稿日期:  2015-10-27
  • 修回日期:  2015-11-20
  • 刊出日期:  2016-12-20

12C6+离子束诱变水稻籽粒Cd低积累突变体的研究

doi: 10.11804/NuclPhysRev.33.04.488
    基金项目:  中国科学院战略性先导科技专项A(XDA08040107);国家自然科学基金资助项目(31301297)
    作者简介:

    林园园(1990-),女,在读研究生,从事生物物理研究,E-mail:wtlinyy@163.com

    通讯作者: 吴跃进,E-mail:yjwu@ipp.ac.cn
  • 中图分类号: Q691.8

摘要: 筛选低Cd积累水稻品种是控制稻米Cd含量的最直接有效的办法之一。本研究对重离子辐照的中籼9311(Oryza sativa L)后代,利用石墨炉原子吸收光谱法检测,对曝露在不同Cd含量(含Cd量为19.8 mg·kg-1镉池和含Cd量为2.721 mg·kg-1的污染农田)中进行M2代Cd低吸收突变单株筛选,研究重离子辐照水稻籽粒Cd吸收的突变率以及比较不同Cd含量曝露下的筛选效率。结果显示:重离子辐照可以诱发水稻籽粒Cd积累量的变异,其突变频率为3:398%±0:009(P<0:05);初筛获得78株籽粒较WT Cd吸收差异显著的突变体,进一步对其种植,分析M3代籽粒Cd含量。结果表明,重离子辐照诱变水稻突变体突变率高,遗传稳定,高Cd含量曝露下筛选效率更高,突变体水稻籽粒中Cd的积累存在着明显的差异,产生Cd积累差异的基因型丰富;相关性分析表明,M2代和M3代糙米中Cd含量存在显著相关性r=0:8210(P<0:01),M3代获得23株遗传性良好且Cd含量差异显著的突变体水稻,其中Cd含量低于国家标准0.2 mg·kg-1突变体3株。表明筛选出的水稻突变体,在吸收转运Cd的过程中,存在差异且能稳定遗传,可供进一步研究培育籽粒Cd低积累的水稻品种。


Screening low-cadmium rice cultivar is the most directly and effective way to control cadmium content in rice grain. We screened low-cadmium rice mutant of M2 generation exposed in different Cd concentration (the pool contaminated with 19.8 mg Cd·kg-1 and the paddy field contaminated with 2.721 mg Cd·kg-1) from rice mutants(9311, Oryza sativa L) induced by 12C6+ ion beam, and explored the mutation rate of 12C6+ ion beam irradiation and the screening efficiency of different Cd concentration exposed, all of the detections were carried out by Graphite Furnace Atomic Absorption Spectrum(GFAAS). The results showed that the mutation rate is 3:398%±0:009(P<0:05) and high Cd concentration exposed has more efficiency in screening low-Cd rice mutant. Correlation analysis show significant correlation of Cd in rice grain between M2 and M3 generations, r=0:8210(P<0:01); We obtained 23 mutant strains with significant Cd concentration difference and they had a great genetic stability. Among them, three strains' Cd concentrations were lower than the national standard (0.2 mg·kg-1). They can used for further study on cultivating new rice varieties of low Cd accumulation in rice gain.

English Abstract

林园园, 陈慧茹, 刘斌美, 叶亚峰, 刘瓒, 吴跃进. 12C6+离子束诱变水稻籽粒Cd低积累突变体的研究[J]. 原子核物理评论, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
引用本文: 林园园, 陈慧茹, 刘斌美, 叶亚峰, 刘瓒, 吴跃进. 12C6+离子束诱变水稻籽粒Cd低积累突变体的研究[J]. 原子核物理评论, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
LIN Yuanyuan, CHEN Huiru, LIU Binmei, YE Yafeng, WU Yuejin, . Study on Low-cadmium Rice Mutants Induced by 12C6+ Ion Beam[J]. Nuclear Physics Review, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
Citation: LIN Yuanyuan, CHEN Huiru, LIU Binmei, YE Yafeng, WU Yuejin, . Study on Low-cadmium Rice Mutants Induced by 12C6+ Ion Beam[J]. Nuclear Physics Review, 2016, 33(4): 488-493. doi: 10.11804/NuclPhysRev.33.04.488
参考文献 (20)

目录

    /

    返回文章
    返回