研究报告

镉胁迫下籼稻和粳稻对镉的吸收、转移和分配研究

展开
  • 西南科技大学 植物分子遗传育种实验室, 四川 绵阳 621010;

收稿日期: 2013-04-20

  修回日期: 2013-09-07

  网络出版日期: 2014-03-10

基金资助

四川省生物质资源利用与改性工程技术研究中心开放基金项目(12ZXSK08); 四川省教育厅重点项目(13ZA0272);西南科技大学研究生创新基金资助项目(13ycjj45)。

Absorption, Transfer and Distribution of Cd in indica and japonica Rice under Cd Stress

Expand
  • Laboratory of Plant Molecular Genetics and Breeding, Southwest University of Science and Technology, Mianyang 621010, China;

Received date: 2013-04-20

  Revised date: 2013-09-07

  Online published: 2014-03-10

摘要

采用盆栽试验研究了镉胁迫下,籼稻(CG132R)和粳稻(粳925)在不同生育期对重金属镉的吸收和积累及其镉的分布和转移规律。结果表明,镉由水稻根部向地上部转移能力表现为分蘖期>成熟期。镉胁迫下,CG132R和粳925各器官镉含量都随外源镉含量升高而上升,低镉条件下水稻各器官更容易富集镉。镉在CG132R和粳925植株内分配表现为根>茎>叶>糙米>谷壳,根是水稻吸收和积累镉的主要器官。CG132R糙米镉含量与积累量都高于粳925,其中CG132R籽粒镉积累量为粳925的5倍左右。在对镉的吸收、积累、转移和分配方面,CG132R与粳925存在显著差异。CG132R吸收和积累镉的量较粳925多,且镉转移能力也强于粳925。CG132R糙米镉含量高于粳925是由于CG132R对土壤中镉吸收能力更强,且镉向糙米转移能力也更强。

本文引用格式

龙小林,向珣朝*,徐艳芳,苏文丽,康翠芳 . 镉胁迫下籼稻和粳稻对镉的吸收、转移和分配研究[J]. 中国水稻科学, 2014 , 28(2) : 177 -184 . DOI: 10.3969/j.issn.1001-7216.2014.02.009

Abstract

A pot experiment was conducted to study the absorption, accumulation, distribution and transfer of cadmium (Cd) during various growth stages of indica (CG132R) and japonica rice(Jing 925) under Cd stress. Results showed that the transfer ability of Cd from   root to aboveground parts during the tillering stage was stronger than that during the maturity stage. With the increasing concentration of exogenous Cd, the Cd content in different organs of CG132R and Jing 925 increased. Under low soil Cd content, rice plant organs enriched Cd more easily. The proportion of  Cd distribution in CG132R and Jing 925 was as follows: root > stem > leaf > brown rice > rice husk. The root was the primary organs of the rice in Cd absorption and accumulation. The Cd content and accumulation in brown rice was 500% as higher in CG132R than that in Jing 925. Further investigation showed that there was a significant difference between CG132R and Jing 925 in Cd absorption,accumulation,transfer and distribution. CG132R had stronger capabilities of absorption, accumulation  and transfer of Cd than  Jing 925.  Higher concentration of Cd in brown rice of CG132R  contributed to  more stronger capability in absorption and transfer of Cd than that of Jing 925.

参考文献

\[1\]Das P, Sam A S, Rout G R. Studies on cadmium toxicity in plants: A review. Environ Poll,  1997, 89: 2936.

\[2\]Grant C A, Buckley W T, Bailey L D, Selles F. Cadmium accumulation in crops. Can J Plant Sci,  1998, 78: 117.

\[3\]Shao G, Chen M, Wang D, et al. Using iron fertilizer to control Cd accumulation in rice plants: A new promising technology. Sci China Series C: Life Sci,  2008, 51(3): 245253.

\[4\]吴启堂, 陈卢, 王广寿. 水稻不同品种对Cd吸收积累的差异和机理研究. 生态学报, 1999, 19(1): 104107.

\[5\]仲维功, 杨杰, 陈志德, 等. 水稻品种及其器官对土壤重金属元素Pb、Cd、Hg、As积累的差异. 江苏农业学报, 2006, 22(4):331338.

\[6\]曾翔, 张玉烛, 王凯荣, 等. 不同品种水稻糙米含镉量差异. 生态与农村环境学报, 2006, 22(1):6769,83.

\[7\]Hart J J, Welch R M,Norvell W A. Characterization of cadmium binding, uptake, and translocation in intact seedlings of bread and durum wheat cultivars. Plant Physiol, 1998, 116: 14131420.

\[8\]顾继光, 周启星. 镉污染土壤的治理及植物修复. 生态科学,2002, 21(4): 352356.

\[9\]肖美秀, 林文雄, 陈祥旭, 等. 镉在水稻体内的分配规律与水稻镉耐性的关系. 中国农学通报,2006,22(2):379381.

\[10\]赵秀兰, 刘晓. 不同品种烟草生长和镉及营养元素吸收对镉胁迫响应的差异. 水土保持学报, 2009, 23(1): 117121,131.

\[11\]Kurz H, Schulz R, Romheld V. Phytoremediation of thallium and cadmium from contaminated soils: possibilities and limitations. Tokyo: Council for Promotion of Ueilization of Organic Materials, 1997: 120132.

\[12\]Li Y M, Chaney R L, Schneiter A A, et al. Genotypic variation in kernel cadmium concentration in sunflower germplasm under varying soil conditions. Crop Sci,  1995, 35: 137141.

\[13\]Dunbar K R, Mclaughlin M J. The uptake and partitioning of cadmium in two cultivars of potato (Solanum Tuberosum L.). J Exp Bot,  2003, 54: 349354.

\[14\]邵国胜, Muhammad J H, 章秀福, 等. 镉胁迫对不同水稻基因型植株生长和抗氧化酶系统的影响. 中国水稻科学, 2004, 18(3):239244.

\[15\]王凯荣, 龚惠群. 不同生育期镉胁迫对两种水稻的生长、镉吸收及糙米镉含量的影响. 生态环境, 2006, 15(6): 11971203.

\[16\]刘昭兵, 纪雄辉, 彭华, 等. 不同生育期水稻对Cd、Pb的吸收积累特征及品种差异. 土壤通报, 2011, 42(5): 11251130.

\[17\]范中亮,季辉,杨菲,等. 不同土壤类型下杂交籼稻地上部器官对重金属镉和铅的富集特征. 中国水稻科学, 2010, 24(2):183188.

\[18\]Liu J G, Qian M, Cai G L, et al. Uptake and translocation of Cd in different rice cultivars and the relation with Cd accumulation in rice grain. J Haz Mat,  2007, 143: 443447.

\[19\]李坤全, 刘建国, 陆小龙, 等. 水稻不同品种对镉吸收及分配的差异. 农业环境科学学报, 2003, 22(5):529532.

\[20\]徐燕玲, 陈能场, 徐胜光, 等. 低镉累积水稻品种的筛选方法研究——品种与类型. 农业环境科学学报, 2009, 28(7):13461352.

\[21\]李鹏, 葛滢, 吴龙华, 等. 两种籽粒镉含量不同水稻的镉吸收转运及其生理效应差异初探. 中国水稻科学, 2011, 25(3):  291296.
文章导航

/

浙ICP备05004719号-5
公安备案号:33010302003356
地址:浙江省杭州市富阳区水稻所路28号 邮编:311400 电话:0571-63370278 E-mail:cjrs@263.net
本系统由北京玛格泰克科技发展有限公司设计开发
总访问量: 今日访问: 在线人数: