Published June 2017 | Version v1
Journal article

Uptake and translocation of cesium by Arabidopsis thaliana in hydroponics conditions: Links between kinetics and molecular mechanisms

  • 1. Commissariat Energie Atom et Energies Alternat CEA, IBEB SBVME, LBDP, Cadarache, (France)
  • 2. IRSN, PRP ENV, SERIS, Lab Biogeochim Biodisponibilite et Transferts Radi, Cadarache, (France)
  • 3. IRSN, PRP ENV SERIS, Lab ECOtoxicol Radionucleides LECO, Cadarache, (France)

Description

Early studies have shown that cesium (Cs+) competes with the macronutrient potassium (K+) for uptake by plants. The present study investigates the effect of K+ supply on Cs+ uptake and translocation in Arabidopsis thaliana. Taking advantage of the frequent use of this model plant in previous molecular studies, we discuss the link between functional features described for transporters involved in K+ (and sometimes in Cs+) uptake and results obtained here in both Cs+ influx and accumulation experiments under different K+-treatments. In low K+ condition (10 mu M), we observed that roots affinity for Cs+ increased significantly and Ce concentration in the external medium clearly affected the efficiency of Cs+ uptake. Our results are consistent with previous molecular studies indicating the role of the high-affinity K+ carrier AtHAK5 in Cs+ uptake under K+-deprivation. Further experiments show that the lack of AtHAK5 has no more effect on Cs' uptake for external Ce concentration above 100 M. We propose that nonselective cation channels, likely involved in Cs+ uptake under K+-sufficient conditions according to previous studies, could also mediate Cs+ uptake under K+-starvation and high Cs+ concentrations. Finally, evidences for Cs(+) translocation mediated by K+ channels are discussed. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1016/j.envexpbot.2017.03.013

Additional details

Publishing Information

Journal Title
Environmental and Experimental Botany
Journal Volume
138
Journal Page Range
p. 164-172
ISSN
0098-8472