Uptake and transformation of decabromodiphenyl ether in different rice cultivars: Evidence from a carbon-14 study.

Pengfei Zhao, Qingfu Ye, Kaixiang Yu, Joann K Whalen, Ramasamy Rajesh Kumar, Xi Cheng, Laura Delgado-Moreno, Wei Wang

Journal: The Science of the total environment 2020;704():135398

PMID: 31836228

Abstract

The differences of PBDE absorption, accumulation, and metabolism in different cultivars of the same crop are rarely explored. This study used C tracing to fully demonstrate the uptake and transformation of soil-borne BDE209 in three rice cultivars, including two indica (HHZ and YD1) and one japonica cultivars (NJ3). Results showed that about 6.9, 17.2, and 17.4% of the applied C-BDE209 were transformed to C-metabolites in soils planted with HHZ, YD1, and NJ3, respectively. The C-BDE209 and its C-metabolites in soil could be absorbed by the rice and gradually transported to its root, stem, leaf, and grain, with the total whole-plant uptake of 8.52, 4.55 and 3.43 nmol for HHZ, YD1, and NJ3, respectively. The cultivar of HHZ had the greatest whole-plant C absorption but the lowest ΣPBDEs residues in its grain, with the ΣPBDEs of 421.8, 454.2 and 967.0 ng g for HHZ, YD1, and NJ3, respectively. BDE-209 accounted for 90%, 31% and 50% of the ΣPBDEs in the grain from HHZ, YD1, and NJ3, respectively. The estimated daily intake (EDI) amounts of ΣPBDEs were 928, 1056, and 2675 ng kg bw d via consuming rice grains from HHZ, YD1, and NJ3, respectively, which were below the safe threshold limits for human consumption. This study proved the different BDE-209 absorption, accumulation and transformation in different rice cultivars, which potentially suggests the need of considering cultivar differences in assessing the dietary risks of PBDEs.

Copyright © 2019 Elsevier B.V. All rights reserved.

Address: Institute of Nuclear Agricultural Sciences, Key Laboratory of Nuclear Agricultural Sciences of Ministry of Agriculture of PR China, Zhejiang University, Hangzhou, 310058, PR China; Department of Natural Resource Sciences, Macdonald Campus, McGill University, Ste Anne de Bellevue, QC H9X 3V9, Canada.; Institute of Nuclear Agricultural Sciences, Key Laboratory of Nuclear Agricultural Sciences of Ministry of Agriculture of PR China, Zhejiang University, Hangzhou, 310058, PR China.; Department of Natural Resource Sciences, Macdonald Campus, McGill University, Ste Anne de Bellevue, QC H9X 3V9, Canada.; Environmental Protection Department, Estación Experimental del Zaidín (CSIC), Granada, Spain.; Institute of Nuclear Agricultural Sciences, Key Laboratory of Nuclear Agricultural Sciences of Ministry of Agriculture of PR China, Zhejiang University, Hangzhou, 310058, PR China. Electronic address: [email protected].

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.