Mercury (Hg) bioaccumulation in rice poses a health issue for rice consumers. In rice paddies, selenium (Se) can decrease the bioavailability of Hg through forming the less bioavailable Hg selenides (HgSe) in soil. Rice leaves can directly uptake a substantial amount of elemental Hg from the atmosphere, however, whether the bioaccumulation of Hg in rice leaves can affect the bioaccumulation of Se in rice plants is not known. Here, we conducted field and controlled studies to investigate the bioaccumulation of Hg and Se in the rice-soil system. In the field study, we observed a significantly positive correlation between Hg concentrations and BAFs of Se in rice leaves (r2 = 0.60, p < 0.01) collected from the Wanshan Mercury Mine, SW China, su...
Consumption of mercury-contaminated rice could pose a potential health risk to humans. In this study...
Rice consumption is more important methylmercury mercury exposure pathway to certain Chinese populat...
Rice paddy plantation is the dominant agricultural land use throughout Asia. Rice paddy fields have ...
Selenium (Se) is an important trace element for human nutrition and has an interactive effect on mer...
A great number of studies have confirmed that mercury–selenium (Hg–Se) antagonism is a widespread ph...
Heavy metals are rich in seleniferous areas; however, the bioaccumulation and health risk of heavy m...
Rice consumption represents a major route of mercury (Hg) and methylmercury (MeHg) exposure for thos...
Much attention is directed to the accumulation of mercury and methylmercury (MeHg) in rice grown on ...
Rice consumption is the primary pathway for methylmercury (MeHg) exposure at inland mercury (Hg) min...
International audienceHuman consumption of rice constitutes a potential toxicological risk in mercur...
Methylmercury (MeHg) contaminated rice is a global issue, particularly in mercury-polluted areas, po...
Abstract Human consumption of rice constitutes a potential toxicological risk in mercury (Hg) pollut...
Mercury contamination is a serious problem in the Hg mining area of Xiushan County, Chongqing, south...
China is the largest rice producer and consumer in the world, and mercury (Hg) levels, particularly ...
Selenium (Se) accumulation in plant foods may be providing dietary Se to minimize the health problem...
Consumption of mercury-contaminated rice could pose a potential health risk to humans. In this study...
Rice consumption is more important methylmercury mercury exposure pathway to certain Chinese populat...
Rice paddy plantation is the dominant agricultural land use throughout Asia. Rice paddy fields have ...
Selenium (Se) is an important trace element for human nutrition and has an interactive effect on mer...
A great number of studies have confirmed that mercury–selenium (Hg–Se) antagonism is a widespread ph...
Heavy metals are rich in seleniferous areas; however, the bioaccumulation and health risk of heavy m...
Rice consumption represents a major route of mercury (Hg) and methylmercury (MeHg) exposure for thos...
Much attention is directed to the accumulation of mercury and methylmercury (MeHg) in rice grown on ...
Rice consumption is the primary pathway for methylmercury (MeHg) exposure at inland mercury (Hg) min...
International audienceHuman consumption of rice constitutes a potential toxicological risk in mercur...
Methylmercury (MeHg) contaminated rice is a global issue, particularly in mercury-polluted areas, po...
Abstract Human consumption of rice constitutes a potential toxicological risk in mercury (Hg) pollut...
Mercury contamination is a serious problem in the Hg mining area of Xiushan County, Chongqing, south...
China is the largest rice producer and consumer in the world, and mercury (Hg) levels, particularly ...
Selenium (Se) accumulation in plant foods may be providing dietary Se to minimize the health problem...
Consumption of mercury-contaminated rice could pose a potential health risk to humans. In this study...
Rice consumption is more important methylmercury mercury exposure pathway to certain Chinese populat...
Rice paddy plantation is the dominant agricultural land use throughout Asia. Rice paddy fields have ...