J. Agric. Food Chem., 55 (6), 2115 -2120, 2007. 10.1021/jf0631676 S0021-8561(06)03167-0
Web Release Date: February 21, 2007

Copyright © 2007 American Chemical Society

Analysis of Bioavailable Arsenic in Rice with Whole Cell Living Bioreporter Bacteria

Barbara Baumann and Jan Roelof van der Meer*

Department of Fundamental Microbiology, University of Lausanne, CH 1015 Lausanne, Switzerland

Received for review November 3, 2006. Revised manuscript received January 7, 2007. Accepted January 11, 2007. This work was supported by a grant from the Swiss Development Council.

Abstract:

A multiwell plate bioassay was developed using genetically modified bacteria (bioreporter cells) to detect inorganic arsenic extracted from rice. The bacterial cells expressed luciferase upon exposure to arsenite, the activity of which was detected by measurement of cellular bioluminescence. The bioreporter cells detected arsenic in all rice varieties tested, with averages of 0.02-0.15 g of arsenite equivalent per gram of dry weight and a method detection limit of 6 ng of arsenite per gram of dry rice. This amounted to between 20 and 90% of the total As content reported by chemical methods for the same sample and suggested that a major proportion of arsenic in rice is in the inorganic form. Calibrations of the bioassay with pure inorganic and organic arsenic forms showed that the bacterial cells react to arsenite with highest affinity, followed by arsenate (with 25% response relative to an equivalent arsenite concentration) and trimethylarsine oxide (at 10% relative response). A method for biocompatible arsenic extraction was elaborated, which most optimally consisted of (i) grinding rice to powder, (ii) mixing with an aqueous solution containing pancreatic enzymes, (iii) mechanical shearing, (iv) extraction in mild acid conditions and moderate heat, and (v) centrifugation and pH neutralization. Detection of mainly inorganic arsenic by the bacterial cells may have important advantages for toxicity assessment of rice consumption and would form a good complement to total chemical arsenic determination.

Keywords: Escherichia coli; ArsR; bacterial luciferase; bioreporter


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