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Vacuolar Ca2+/H+ transport activity is required for systemic phosphate homeostasis involving shoot-to-root signaling in arabidopsis
Journal article   Open access   Peer reviewed

Vacuolar Ca2+/H+ transport activity is required for systemic phosphate homeostasis involving shoot-to-root signaling in arabidopsis

Tzu-Yin Liu, Kyaw Aung, Ching-Ying Tseng, Tzu-Yun Chang, Ying-Shin Chen and Tzyy-Jen Chiou
Plant Physiology, Vol.156(3), pp.1176-1189
07/2011

Abstract

phosphate homeostasis

Calcium ions (Ca 2+ ) and Ca 2+ -related proteins mediate a wide array of downstream processes involved in plant responses to abiotic stresses. In Arabidopsis (Arabidopsis thaliana), disruption of the vacuolar Ca 2+ /H + transporters CAX1 and CAX3 causes notable alterations in the shoot ionome, including phosphate pi content. In this study, we showed that the cax1/cax3 double mutant displays an elevated Pi level in shoots as a result of increased Pi uptake in a miR399/PHO2-independent signaling pathway. Microarray analysis of the cax1/cax3 mutant suggests the regulatory function of CAX1 and CAX3 in suppressing the expression of a subset of shoot Pi starvation-responsive genes, including genes encoding the PHT1;4 Pi transporter and two SPX domain-containing proteins, SPX1 and SPX3. Moreover, although the expression of several HT1 genes and PHT1;1/2/3 proteins is not up-regulated in the root of cax1/cax3, results from reciprocal grafting experiments indicate that the cax1/cax3 scion is responsible for high Pi accumulation in grafted plants and that the pht1;1 rootstock is sufficient to moderately repress such Pi accumulation. Based on these findings, we propose that CAX1 and CAX3 mediate a shoot-derived signal that modulates the activity of the root Pi transporter system, likely in part via posttranslational regulation of PHT1;1 Pi transporters. © 2011 American Society of Plant Biologists.

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https://doi.org/10.1104/pp.111.175257View
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