School of Grain Science and Technology, Jiangsu University of Science and Technology, Zhenjiang 212100, Jiangsu, China; CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, & CAS-HKU Joint Laboratory of Metallomics on Health and Environment, & Beijing Metallomics Facility, & National Consortium for Excellence in Metallomics, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing, 100049, China.
School of Grain Science and Technology, Jiangsu University of Science and Technology, Zhenjiang 212100, Jiangsu, China.
Environ Int. 2021 Nov;156:106749. doi: 10.1016/j.envint.2021.106749. Epub 2021 Jul 8.
Cadmium (Cd) contamination in paddy fields is a serious health concern because of its high toxicity and widespread pollution. Recently, much progress has been made in elucidating the mechanisms involved in Cd uptake, transport, and transformation from paddy soils to rice grains, aiming to mitigate the associated health risk; however, these topics have not been critically reviewed to date. Here, we summarized and reviewed the (1) geochemical distribution and speciation of Cd in soil-rice systems, (2) mobilization, uptake, and transport of Cd from soil to rice grains and the associated health risks, (3) pathways and transformation mechanisms of Cd from soil to rice grains, (4) transporters involved in reducing Cd uptake, transport, and accumulation in rice plants, (5) factors governing Cd bioavailability in paddy, and (6) comparison of remediation approaches for mitigating the environmental and health risks of Cd contamination in paddy fields. Briefly, this review presents the state of the art about the fate of Cd in paddy fields and its transport from soil to grains, contributing to a better understanding of the environmental hazards of Cd in rice ecosystems. Challenges and perspectives for controlling Cd risks in rice are thus raised. The summarized findings in this review may help to develop innovative and applicable methods for controlling Cd accumulation in rice grains and sustainably manage Cd-contaminated paddy fields.
镉(Cd)污染是一个严重的健康问题,因为它的毒性很高且污染广泛。最近,人们在阐明从稻田土壤到水稻籽粒中镉的吸收、转运和转化机制方面取得了很大进展,旨在减轻相关的健康风险;然而,这些主题尚未得到批判性的回顾。在这里,我们总结和回顾了(1)土壤-水稻系统中镉的地球化学分布和形态,(2)镉从土壤向水稻籽粒的迁移、吸收和转运及其相关的健康风险,(3)镉从土壤向水稻籽粒的迁移途径和转化机制,(4)参与减少水稻植株中镉吸收、转运和积累的转运蛋白,(5)控制水稻中镉生物有效性的因素,以及(6)减轻稻田镉污染的环境和健康风险的修复方法比较。总之,本综述介绍了镉在稻田中的归宿及其从土壤向籽粒转运的最新研究进展,有助于更好地了解镉在水稻生态系统中的环境危害。因此,提出了控制水稻中镉风险的挑战和展望。本综述总结的发现可能有助于开发控制水稻籽粒中镉积累的创新和适用方法,并可持续管理镉污染的稻田。