Effect of selenium in soil on the toxicity and uptake of arsenic in rice plant

硒酸盐 砷酸盐 亚砷酸盐 化学 砷毒性 环境化学 对抗 根际 毒性 生态毒理学 生物利用度 植物 农学 生物化学 生物 细菌 药理学 受体 有机化学 遗传学
作者
Ganga Raj Pokhrel,Kai Teng Wang,HongMao Zhuang,Yongxiang Wu,Wei Chen,Yan Lu,Xi Zhu,Li Zhong,FengFu Fu,Yang Gao
出处
期刊:Chemosphere [Elsevier BV]
卷期号:239: 124712-124712 被引量:47
标识
DOI:10.1016/j.chemosphere.2019.124712
摘要

Selenium can regulate arsenic toxicity by strengthening antioxidant potential, but the antagonism between selenite or selenate nutrient and the translocation of arsenic species from paddy soil to different rice organs are poorly understood. In this study, a pot experiment was designed to investigate the effect of selenite or selenate on arsenite or arsenate toxicity to two indica rice cultivars (namely Ming Hui 63 and Lu You Ming Zhan), and the uptake and transportation of arsenic species from paddy soil to different rice organs. The results showed that selenite or selenate could significantly decrease the arsenate concentration in pore water of soils, and thus inhibited arsenate uptake by rice roots. However, the existence of selenite or selenate didn't decrease arsenate concentration in rhizosphere pore water of two indica rice cultivars. There existed good antagonistic effect between selenite or selenate and the uptake of arsenite and arsenate in rice plant in the case of low arsenic paddy soil. However, this antagonism depended on rice cultivars, arsenic species and arsenic level in soil. There existed both synergistic and inhibiting effects between the addition of selenite or selenate and the uptake of trimethylarsinoxide and dimethylarsinic acid by two indica rice cultivars, but the mechanism was unclear. Both selenite and selenate are all effective to decrease the translocation of inorganic arsenic from the roots to their above-ground rice organs in arsenite/arsenate-spiked paddy soil, but selenate had stronger inhibiting effect on their transfer factors than selenite.
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