Cadmium isotope fractionation in soil-wheat systems
File(s)Cd_isotope_soil_wheat_w_ SI.pdf (2.27 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Analyses of stable metal isotope ratios constitute a novel tool in order to improve our understanding of biogeochemical processes in soil-plant systems. In this study, we used such measurements to assess Cd uptake and transport in wheat grown on three agricultural soils under controlled conditions. Isotope ratios of Cd were determined in the bulk C and A horizons, in the Ca(NO3)2-extractable Cd soil pool, and in roots, straw, and grains. The Ca(NO3)2-extractable Cd was isotopically heavier than the Cd in the bulk A horizon (Δ(114/110)Cdextract-Ahorizon = 0.16 to 0.45‰). The wheat plants were slightly enriched in light isotopes relative to the Ca(NO3)2-extractable Cd or showed no significant difference (Δ(114/110)Cdwheat-extract = -0.21 to 0.03‰). Among the plant parts, Cd isotopes were markedly fractionated: straw was isotopically heavier than roots (Δ(114/110)Cdstraw-root = 0.21 to 0.41‰), and grains were heavier than straw (Δ(114/110)Cdgrain-straw = 0.10 to 0.51‰). We suggest that the enrichment of heavy isotopes in the wheat grains was caused by mechanisms avoiding the accumulation of Cd in grains, such as the chelation of light Cd isotopes by thiol-containing peptides in roots and straw. These results demonstrate that Cd isotopes are significantly and systematically fractionated in soil-wheat systems, and the fractionation patterns provide information on the biogeochemical processes in these systems.
Date Issued
2016-09-06
Date Acceptance
2016-08-02
Citation
Environmental Science and Technology, 2016, 50 (17), pp.9223-9231
ISSN
0013-936X
Publisher
American Chemical Society
Start Page
9223
End Page
9231
Journal / Book Title
Environmental Science and Technology
Volume
50
Issue
17
Copyright Statement
This document is the Accepted Manuscript version of a Published Work that appeared in final form in Environmental Science and Technology, © 2016 American Chemical Society, after peer review and technical editing by the publisher. To access the final edited and published work see http://dx.doi.org/10.1021/acs.est.6b01568.
Identifier
https://pubs.acs.org/doi/full/10.1021/acs.est.6b01568
Subjects
Science & Technology
Technology
Life Sciences & Biomedicine
Engineering, Environmental
Environmental Sciences
Engineering
Environmental Sciences & Ecology
HYPERACCUMULATOR ARABIDOPSIS-HALLERI
LONG-DISTANCE TRANSPORT
DURUM-WHEAT
PHLOEM SAP
ZINC
CD
ZN
PHYTOCHELATINS
COMPLEXATION
TRANSLOCATION
Cadmium
Chemical Fractionation
Isotopes
Soil
Triticum
Triticum
Cadmium
Isotopes
Soil
Chemical Fractionation
Environmental Sciences
Publication Status
Published
Date Publish Online
2016-08-02