Seasonal and Spatial Variability of Arsenic in Rice Across a Climate Gradient in Vietnam

Authored by

Anh T.Q. Nguyen, Van M. Dinh, Anh M. Nguyen, Ngan T. Nguyen, Hoan T. Dao, Quan T. Dang, Trung Q. Lai, Eden Halpert, Tu N. Nguyen, Trang T.H. Nguyen, Than T.N. Dam, Lan Nguyen-Thanh, Nghia K. Nguyen, Ngoc T.M. Nguyen, Thanh Ngo-Duc, Marcos Paradelo, Kazunori Minamikawa, Benjamin C. Bostick, Stefan Dultz, Minh N. Nguyen

Abstract

Arsenic (As) accumulation in rice poses a significant, worldwide threat to food safety. Arsenic uptake is highly sensitive to climate and environmental factors; however, a comprehensive understanding of how diverse climatic conditions influence As dynamics and subsequent grain accumulation remains elusive. To fill this gap, we investigated As in soil and rice grain across 243 floodplain paddy sites along a ~2000 km longitudinal transect in Vietnam (8° N to 22° N), which is part of the world's largest rice-growing belt in Asia. The median levels of As in soils ranged from 8.3 to 9.9 mg kg−1, and the consequent median levels of As in straw and grain were 0.85 mg kg−1 and 163.5 μg kg−1, respectively. Our findings reveal a clear tendency for rice grain As accumulation to vary with climate and cropping season. Particularly, data from contrasting seasons show that warmer temperatures promote higher As uptake in rice grains and enhance the accumulation of inorganic As species. These results underscore an urgent need to establish new, proactive mitigation strategies and sustainable land management practices in response to accelerating global warming to safeguard the global rice supply.

Details

Organisation(s)
Institute of Soil Science
External Organisation(s)
Vietnam National University
Columbia University
Vietnamese Academy of Science and Technology
Arkansas State University
Clemson University
Technische Universität Darmstadt
Can Tho University
Haiphong University of Medicine & Pharmacy (HPMU)
University of Science and Technology of Hanoi (USTH)
Univ. of Greenwich, Dept. of Info. Syst. and Multimed., UK
Japan International Research Center for Agricultural Sciences
Type
Article
Journal
Land Degradation and Development
Volume
37
Pages
9999-10008
No. of pages
10
ISSN
1085-3278
Publication date
11.08.2026
Publication status
Published
Peer reviewed
Yes
ASJC Scopus subject areas
Environmental Chemistry, Development, General Environmental Science, Soil Science
Sustainable Development Goals
SDG 13 - Climate Action, SDG 15 - Life on Land
Electronic version(s)
https://doi.org/10.1002/ldr.70748 (Access: Closed )