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Arsenic uptake, accumulation and toxicity in rice plants: Possible remedies for its detoxification: A review

机译:水稻植物中的砷吸收,积聚和毒性:解毒可能的补救措施:审查

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摘要

Arsenic (As) is a toxic metalloid. Serious concerns have been raised in literature owing to its potential toxicity towards living beings. The metalloid causes various water- and food-borne diseases. Among food crops, rice contains the highest concentrations of As. Consuming As-contaminated rice results in serious health issues. Arsenic concentration in rice is governed by various factors in the rhizosphere such as availability and concentration of various mineral nutrients (iron, phosphate, sulfur and silicon) in soil solution, soil oxidation/reduction status, inter-conversion between organic and inorganic As compounds. Agronomic and civil engineering methods can be adopted to decrease As accumulation in rice. Agronomic methods such as improving soil porosity/aeration by irrigation management or creating the conditions favorable for As-precipitate formation, and decreasing As uptake and translocation by adding a inorganic nutrients that compete with As are easy and cost effective techniques at field scale. This review focuses on the factors regulating and competing As in soil-plant system and As accumulation in rice grains. Therefore, it is suggested that judicious use of water, management of soil, antagonistic effects of various inorganic plant-nutrients to As should be considered in rice cultivated areas to mitigate the building up of As in human food chain and with minimum negative impact to the environment.
机译:砷(AS)是一种有毒的金属。由于其对生物的潜在毒性,文学中提出了严重的问题。金属剂导致各种水和食物传播的疾病。在食物作物中,水稻含有最高浓度。消耗污染的水稻导致严重的健康问题。水稻中的砷浓度受根际的各种因素,如土壤溶液,土壤氧化/减少状态,有机和无机之间的各种矿物营养素(铁,磷酸盐,硫和硅)的可用性和浓度,作为化合物的互连。可以采用农艺和土木工程方法作为水稻积累减少。农艺方法,如通过灌溉管理改善土壤孔隙率/通气,或产生有利于沉淀地形成的条件,并通过加入与现场规模的简单且成本有效的技术竞争的无机营养素降低和易位作为摄取和易位。本综述重点是在土壤植物系统中调节和竞争的因素,并作为水稻谷物的积累。因此,建议明智地使用水,土壤管理,各种无机植物营养物的拮抗作用,以便在水稻栽培区域中考虑,以减轻人类食物链中的建筑物,并对最小的负面影响降低环境。

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