Croucher Institute for Environmental Sciences, and Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong SAR, People's Republic of China.
Environ Sci Pollut Res Int. 2013 Dec;20(12):8334-41. doi: 10.1007/s11356-013-2083-1. Epub 2013 Sep 5.
Greenhouse experiment was conducted to examine effects of arsenic (As) on iron plaque formation, radial oxygen loss, As accumulation, and speciation in rice. Three genotypes were grown in soil with three different concentrations of As. The stress of As caused a slight increase of iron plaque formation (P>0.05) and a decrease in the rates of radial oxygen loss (ROL; P<0.01). The results of As speciation showed that the percentages of DMA increased from 19-28 % to 53-58 %, while the percentages of inorganic As decreased from 53-58 % to 36-42 % with the increasing soil As concentrations, indicating a strong environmental influence on As species in rice grain. The present study showed that elevated soil As may induce As toxicity towards rice plants, leading to the decrease of ROL; environmental factors could influence As methylation or As species transportation. Our study provided useful information on As tolerance and accumulation in rice which may contribute to reducing the health risk posed by As contamination in rice.
采用温室盆栽试验研究砷(As)对水稻铁膜形成、径向氧损失、As 积累和形态的影响。在含有 3 种不同浓度 As 的土壤中种植 3 种基因型。As 胁迫导致铁膜形成略有增加(P>0.05),径向氧损失(ROL)速率降低(P<0.01)。As 形态分析结果表明,DMA 的百分率从 19-28%增加到 53-58%,而无机 As 的百分率从 53-58%减少到 36-42%,随着土壤 As 浓度的增加,表明环境因素对水稻籽粒中 As 形态有强烈影响。本研究表明,土壤中 As 含量升高可能会导致水稻植株出现 As 毒性,从而降低 ROL;环境因素可能会影响 As 的甲基化或 As 形态的运输。本研究为水稻的 As 耐性和积累提供了有用信息,这可能有助于降低水稻中 As 污染对健康的风险。