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[不同有机物料对水稻吸收和转运砷镉的影响]

[Effects of Different Organic Materials on Absorption and Translocation of Arsenic and Cadmium in Rice].

作者信息

Li Kai-Ye, Zhao Ting-Ting, Chen Jia, Zhao Xiu-Lan

机构信息

College of Resources and Environment, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing 400715, China.

出版信息

Huan Jing Ke Xue. 2021 Apr 8;42(4):2047-2055. doi: 10.13227/j.hjkx.202007307.

Abstract

A pot experiment was carried out to study the impacts of five organic materials (rape straw, broad bean stalk, peat, pig manure compost, and biochar) on the availability of arsenic (As) and cadmium (Cd) in soil, the amount of iron plaque on the root surface, as well as the uptake and translocation of As and Cd in rice grown in an As/Cd co-contaminated yellow paddy soil. The results indicated that the application of organic materials significantly increased the contents of the soil organic matter and the yield of rice. The application of broad bean stalk, peat, pig manure compost, and biochar remarkably increased the soil pH, while the application of rape straw exerted no significant influence. The addition of organic matter reduced the available Cd content by 34.77%-82.69%. However, the effects of organic materials on the availability of As varied with the organic materials. The soil-available As content was significantly increased by the application of pig manure compost and biochar, while it was significantly decreased by adding rape straw and peat. The application of organic materials increased As and Cd contents in the Fe plaques on rice root surface by 28.49%-94.86% and 17.73%-151.03%, respectively. It also reduced the As and Cd contents in brown rice by 27.04%-82.51% and 15.87%-79.45%, respectively. The largest decrease was observed in the biochar treatment. The application of organic materials also remarkably reduced the translocation efficiency of Cd from the root-stem-leaf-grain and that of As from the stem to grain. The correlation analysis revealed that the soil pH, available Cd, and Cd content in the Fe plaques are the major factors influencing the accumulation of Cd in the rice grain. Furthermore, the soil pH, soil organic matter, and As content in the Fe plaques are the major factors influencing the accumulation of As in the rice grain. Therefore, it has been concluded that organic materials could influence the uptake and translocation of As and Cd in rice through changing the soil pH, organic matter content, and As and Cd contents in the Fe plaques.

摘要

开展了一项盆栽试验,以研究五种有机物料(油菜秸秆、蚕豆秸秆、泥炭、猪粪堆肥和生物炭)对砷(As)和镉(Cd)污染的黄壤稻田中土壤砷和镉有效性、水稻根表铁膜数量以及水稻对砷和镉的吸收与转运的影响。结果表明,施用有机物料显著提高了土壤有机质含量和水稻产量。蚕豆秸秆、泥炭、猪粪堆肥和生物炭的施用显著提高了土壤pH值,而油菜秸秆的施用未产生显著影响。添加有机质使有效镉含量降低了34.77% - 82.69%。然而,有机物料对砷有效性的影响因物料种类而异。猪粪堆肥和生物炭的施用显著增加了土壤有效砷含量,而添加油菜秸秆和泥炭则显著降低了土壤有效砷含量。施用有机物料使水稻根表铁膜中砷和镉的含量分别增加了28.49% - 94.86%和17.73% - 151.03%。同时,也使糙米中砷和镉的含量分别降低了27.04% - 82.51%和15.87% - 79.45%。生物炭处理中降幅最大。施用有机物料还显著降低了镉从根 - 茎 - 叶 - 籽粒的转运效率以及砷从茎到籽粒的转运效率。相关性分析表明,土壤pH值、有效镉以及铁膜中的镉含量是影响水稻籽粒中镉积累的主要因素。此外,土壤pH值、土壤有机质以及铁膜中的砷含量是影响水稻籽粒中砷积累的主要因素。因此,可以得出结论,有机物料可通过改变土壤pH值、有机质含量以及铁膜中的砷和镉含量来影响水稻对砷和镉的吸收与转运。

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