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  5. Transporters of arsenite in rice and their role in arsenic accumulation in rice grain

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Article
English
2008

Transporters of arsenite in rice and their role in arsenic accumulation in rice grain

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English
2008
Proceedings of the National Academy of Sciences
Vol 105 (29)
DOI: 10.1073/pnas.0802361105

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Fang-jie Zhao
Fang-jie Zhao

Nanjing Agricultural University

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Jian Feng
Naoki Yamaji
Namiki Mitani
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Abstract

Arsenic poisoning affects millions of people worldwide. Human arsenic intake from rice consumption can be substantial because rice is particularly efficient in assimilating arsenic from paddy soils, although the mechanism has not been elucidated. Here we report that two different types of transporters mediate transport of arsenite, the predominant form of arsenic in paddy soil, from the external medium to the xylem. Transporters belonging to the NIP subfamily of aquaporins in rice are permeable to arsenite but not to arsenate. Mutation in OsNIP2;1 (Lsi1, a silicon influx transporter) significantly decreases arsenite uptake. Furthermore, in the rice mutants defective in the silicon efflux transporter Lsi2, arsenite transport to the xylem and accumulation in shoots and grain decreased greatly. Mutation in Lsi2 had a much greater impact on arsenic accumulation in shoots and grain in field-grown rice than Lsi1. Arsenite transport in rice roots therefore shares the same highly efficient pathway as silicon, which explains why rice is efficient in arsenic accumulation. Our results provide insight into the uptake mechanism of arsenite in rice and strategies for reducing arsenic accumulation in grain for enhanced food safety.

How to cite this publication

Jian Feng, Naoki Yamaji, Namiki Mitani, Xiaoyan Xu, Yuhong Su, S. P. McGrath, Fang-jie Zhao (2008). Transporters of arsenite in rice and their role in arsenic accumulation in rice grain. Proceedings of the National Academy of Sciences, 105(29), pp. 9931-9935, DOI: 10.1073/pnas.0802361105.

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Publication Details

Type

Article

Year

2008

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Proceedings of the National Academy of Sciences

DOI

10.1073/pnas.0802361105

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