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Published on: May 27, 2022
Imaging translocation and transformation of bioavailable selenium by Stanleya pinnata with X-ray microscopy
Wren Amos1, Samuel Webb, Yijin Liu
1Department of Chemistry & Biochemistry, California State University East Bay, Hayward, CA 94542, USA.
Abstract:
Selenium hyperaccumulator Stanleya pinnata, Colorado ecotype, was supplied with water-soluble and biologically available selenate or selenite. Selenium distribution and tissue speciation were established using X-ray microscopy (micro-X-ray fluorescence and transmission X-ray microscopy) in two dimensions and three dimensions. The results indicate that S. pinnata tolerates, accumulates, and volatilizes significant concentrations of selenium when the inorganic form supplied is selenite and may possess novel metabolic capacity to differentiate, metabolize, and detoxify selenite concentrations surpassing field concentrations. The results also indicate that S. pinnata is a feasible candidate to detoxify selenium-polluted soil sites, especially locations with topsoil polluted with soluble and biologically available selenite.

