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Journal of Zhejiang University (Agriculture and Life Sciences)  2017, Vol. 43 Issue (4): 441-450    DOI: 10.3785/j.issn.1008-9209.2017.01.151
Crop cultivation & physiology     
Effects of Na2SeO3 and Na2SiO3 on Cd uptake and accumulation in two different rice (Oryza Sativa L.) cultivars at jointing stage
DAI Zou1,2, YU Huaqing1,2, GUO Changchun1,2, MA Jun1,2*, LI Na1,2, YANG Zhiyuan1,2, XU Hui1, SUN Yongjian1,2
(1. Rice Research Institute, Sichuan Agricultural University, Chengdu 611130, China; 2. Key Laboratory of Crop Physiology, Ecology, and Cultivation in Southwest China, Ministry of Agriculture, Chengdu 611130, China)
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Abstract  

Cadmium (Cd) is one of the most important inorganic pollutants in the soil of China and can be readily assimilated into plants and transported to human bodies through food chain. Rice is the staple food in China and also the major source of dietary Cd intake by people. Therefore, it’s important to decrease the uptake and accumulation of Cd in rice for human health. The capacity of iron plaque to sequester heavy metals is well known, besides its possible role as a buffer and reservoir in heavy metal uptake. It is well documented that exogenous Na2SeO3 or Na2SiO3 can depress the Cd absorption in rice by changing its content in the iron plaque, but the comparative study of exogenous Na2SeO3 or Na2SiO3 on Cd uptake in different rice cultivars is limited. The aim of this study is to explore the effects of Na2SeO3 and Na2SiO3 on depressing Cd assimilation in different rice cultivars.
In this study, a pot experiment was conducted to explore the effects of Na2SeO3 or Na2SiO3 on Cd uptake in two rice cultivars with different grain Cd accumulation abilities. The seedlings were cultured in the soil with 5 mg/kg Cd (CdCl2·2.5H2O) coupled with or without 1 mg/kg selenium (supplied as Na2SeO3) or 150 mg/kg silicon (supplied as Na2SiO3·9H2O), and were sampled at 42 days after transplanting and at mature stage, respectively. The biomass of roots and shoots, soil pH, Cd contents in the iron plaque, roots, shoots and grains at mature stage were measured.
The results showed that exogenous Na2SiO3 significantly increased the pH of rhizosphere and depressed the root growth of the two rice cultivars. Exogenous Na2SeO3 improved the root biomass of Chuanguyou2348, but had no significant effect on the root biomass of Yixiangyou2115. The Cd content in the iron plaque of Chuanguyou2348 was significantly higher than that in Yixiangyou2115. The Cd content in the iron plaque was decreased by 8.5% and 14.1% in Yixiangyou2115, 12.9% and 39.4% in Chuanguyou2348 with the application of Na2SeO3 and Na2SiO3, respectively. Exogenous Na2SeO3 or Na2SiO3 also decreased the Cd content in the root and shoot of the two rice cultivars, and the Cd translocation coefficient from root to shoot decreased as well. Compared with the control, exogenous Na2SeO3 or Na2SiO3 also decreased the total Cd accumulation significantly, but their effects on the percentage distribution in different parts of rice were quite different. In Yixiangyou2115, Na2SeO3 and Na2SiO3 mainly increased the percentage of Cd in the iron plaque, but increased the Cd accumulation percentage in both the iron plaque and roots of Chuanguyou2348. Correlation analysis showed that Cd content in the iron plaque had positive correlation with Cd accumulation in rice roots and shoots, which indicated that iron plaque was a reservoir for Cd.
It is concluded that exogenous Na2SeO3 or Na2SiO3 significantly affects the root growth of rice, decreases the Cd content and accumulation in rice root and shoot, then decreases the Cd content of the grain at mature stage in both the cultivars. Chuanguyou2348 has a larger decline than Yixiangyou2115 under the two treatments, and Na2SiO3 treatment shows better effect than Na2SeO3.



Received: 15 January 2017      Published: 03 March 2017
CLC:  S 511  
  S 143.7  
Corresponding Authors: majunp2002@163.com     E-mail: majunp2002@163.com
Cite this article:

DAI Zou, YU Huaqing, GUO Changchun, MA Jun, LI Na, YANG Zhiyuan, XU Hui, SUN Yongjian. Effects of Na2SeO3 and Na2SiO3 on Cd uptake and accumulation in two different rice (Oryza Sativa L.) cultivars at jointing stage. Journal of Zhejiang University (Agriculture and Life Sciences), 2017, 43(4): 441-450.

URL:

http://www.zjujournals.com/agr/10.3785/j.issn.1008-9209.2017.01.151     OR     http://www.zjujournals.com/agr/Y2017/V43/I4/441


外源Na2SeO3和Na2SiO3对不同水稻拔节期镉吸收和积累的影响

以2个不同籽粒Cd积累特性的杂交籼稻品种“宜香优2115”和“川谷优2348”为材料,通过盆栽试验研究基施Na2SeO3和Na2SiO3对水稻拔节期Cd吸收和积累的影响。结果表明:Na2SiO3可显著提高2个水稻品种根际土壤pH,并对2个水稻品种根系生长产生抑制作用;Na2SeO3和Na2SiO3使宜香优2115根表铁膜中Cd含量分别比对照下降8.5%和14.1%,使川谷优2348根表铁膜中Cd含量下降12.9%和39.4%;2个处理均降低了Cd从根向地上部的转运系数,进而减少其在地上部的含量;Na2SeO3和Na2SiO3使水稻的总Cd积累量显著下降,且使2个水稻品种地上部Cd积累量占总Cd积累量的比例也下降,而根和铁膜中Cd积累量占水稻总Cd积累量的比例在不同品种间存在差异,其中Na2SeO3和Na2SiO3主要改变宜香优2115铁膜中Cd积累量所占比例,而对川谷优2348根和铁膜中所占比例均有较大影响。相关分析结果显示,根表铁膜在本试验条件下是水稻Cd吸收的贮藏库。此外,Na2SeO3和Na2SiO3降低了2个供试品种籽粒成熟期的Cd含量,且对川谷优2348的降低效果优于宜香优2115,Na2SiO3处理的效果优于Na2SeO3

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