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Int J Mol Sci ; 17(1)2016 Jan 05.
Article in English | MEDLINE | ID: mdl-26742036

ABSTRACT

Tea plant is known to be a hyper-accumulator of fluoride (F). Over-intake of F has been shown to have adverse effects on human health, e.g., dental fluorosis. Thus, understanding the mechanisms fluoride accumulation and developing potential approaches to decrease F uptake in tea plants might be beneficial for human health. In the present study, we found that pretreatment with the anion channel inhibitor NPPB reduced F accumulation in tea plants. Simultaneously, we observed that NPPB triggered Ca(2+) efflux from mature zone of tea root and significantly increased relative CaM in tea roots. Besides, pretreatment with the Ca(2+) chelator (EGTA) and CaM antagonists (CPZ and TFP) suppressed NPPB-elevated cytosolic Ca(2+) fluorescence intensity and CaM concentration in tea roots, respectively. Interestingly, NPPB-inhibited F accumulation was found to be significantly alleviated in tea plants pretreated with either Ca(2+) chelator (EGTA) or CaM antagonists (CPZ and TFP). In addition, NPPB significantly depolarized membrane potential transiently and we argue that the net Ca(2+) and H⁺ efflux across the plasma membrane contributed to the restoration of membrane potential. Overall, our results suggest that regulation of Ca(2+)-CaM and plasma membrane potential depolarization are involved in NPPB-inhibited F accumulation in tea plants.


Subject(s)
Calcium/metabolism , Calmodulin/metabolism , Camellia sinensis/drug effects , Fluorides/metabolism , Ion Pumps/antagonists & inhibitors , Nitrobenzoates/pharmacology , Plant Proteins/metabolism , Camellia sinensis/cytology , Camellia sinensis/metabolism , Membrane Potentials/drug effects , Plant Roots/cytology , Plant Roots/drug effects , Plant Roots/metabolism
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