Foliar uptake of radiocaesium from irrigation water by paddy rice (Oryza sativa): an overlooked pathway in contaminated environments.

Shinichiro Uematsu, Hildegarde Vandenhove, Lieve Sweeck, May Van Hees, Jean Wannijn, Erik Smolders

Journal: The New phytologist 2018;214(2):820-829

PMID: 28102551

Abstract

Flooded (paddy) rice (Oryza sativa) can take up ions from the irrigation water by foliar uptake via the exposed stem base. We hypothesised that the stem base uptake of radiocaesium (RCs) is a pathway for rice grown in RCs-contaminated environments. We developed a bi-compartmental device which discriminates the stem base from root RCs uptake from solutions, thereby using RCs isotopes ( Cs and Cs) with < 2% solution leak between the compartments. Radiocaesium uptake was linear over time (0-24 h). Radiocaesium uptake to the entire plant, expressed per dry weight of the exposed parts, was sixfold higher for the roots than for the exposed stem base. At equal RCs concentrations in both compartments, the exposed stem base and root uptake contributed almost equally to the total shoot RCs concentrations. Reducing potassium supply to the roots not only increased the root RCs uptake but also increased RCs uptake by the stem base. This study was the first to experimentally demonstrate active and internally regulated RCs uptake by the stem base of rice. Scenario calculations for the Fukushima-affected area predict that RCs in irrigation water could be an important source of RCs in rice as indirectly suggested from field data.

© 2017 The Authors. New Phytologist © 2017 New Phytologist Trust.

Address: Biosphere Impact Studies, SCK CEN, Belgian Nuclear Research Centre, Boeretang 200, B-2400, Mol, Belgium.; Division of Soil and Water Management, KU Leuven, Kasteelpark Arenberg 20, B-3001, Leuven, Belgium.

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