Understanding Potential Heavy Metal Contamination, Absorption, Translocation and Accumulation in Rice and Human Health Risks

Author:

Zakaria Zuliana,Zulkafflee Nur Syahirah,Mohd Redzuan Nurul Adillah,Selamat JinapORCID,Ismail Mohd Razi,Praveena Sarva Mangala,Tóth GergelyORCID,Abdull Razis Ahmad FaizalORCID

Abstract

Rice is a worldwide staple food and heavy metal contamination is often reported in rice production. Heavy metal can originate from natural sources or be present through anthropogenic contamination. Therefore, this review summarizes the current status of heavy metal contamination in paddy soil and plants, highlighting the mechanism of uptake, bioaccumulation, and health risk assessment. A scoping search employing Google Scholar, Science Direct, Research Gate, Scopus, and Wiley Online was carried out to build up the review using the following keywords: heavy metals, absorption, translocation, accumulation, uptake, biotransformation, rice, and human risk with no restrictions being placed on the year of study. Cadmium (Cd), arsenic (As), and lead (Pb) have been identified as the most prevalent metals in rice cultivation. Mining and irrigation activities are primary sources, but chemical fertilizer and pesticide usage also contribute to heavy metal contamination of paddy soil worldwide. Further to their adverse effect on the paddy ecosystem by reducing the soil fertility and grain yield, heavy metal contamination represents a risk to human health. An in-depth discussion is further offered on health risk assessments by quantitative measurement to identify potential risk towards heavy metal exposure via rice consumption, which consisted of in vitro digestion models through a vital ingestion portion of rice.

Funder

Malaysian Ministry of Higher Education

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Reference215 articles.

1. Alga growth inhibition by water pollution;Ckamaca;Environ. Pollut.,2002

2. Arsenic in Rice

3. IARC Monographs on the Evaluation of Carcinogenic Risk to Human,2012

4. Heavy metals, trace elements and their cellular effects,2011

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