Unravelling the Significance of Phosphoenolpyruvate Carboxylase in Phosphate Starvation Responses

Publication date

2026-01

Authors

Pérez-López, Jesús
de la Osa, Clara
Gandullo, Jacinto
Gigli-Bisceglia, NoraORCID 0000-0002-6907-1427ISNI 0000000491735554
Coleto, Inmaculada
Feria, Ana Belén
Echevarría, Cristina
Testerink, Christa
Marino, Daniel
García-Mauriño, Sofía

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Document Type

Article
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cc_by

Abstract

Low phosphate availability is a major concern for agriculture. Plants develop a plethora of responses to improve phosphate acquisition, known as phosphate starvation responses (PSR). Among them, the induction of phosphoenolpyruvate carboxylase (PEPC) has been described in many plants. However, most studies have been conducted in the absence of phosphate, thus the real impact of PEPC in PSR is missing as there is no phosphate to take up. In this study, we used modified sorghum plants silenced in the main PEPC isozyme in roots, SbPPC3, and analyzed the role of PEPC in the presence of insoluble calcium phosphate (PCa), showing a phosphate starvation phenotype in silenced but not in WT plants. Interestingly, root exudation of citrate was not reduced in silenced plants, probably due to a higher citrate synthase activity, but it was reduced for succinate, another compound with phosphate solubilisation capacity. Finally, silenced plants accumulated less P in roots with PCa, leading to a reduced phosphate acquisition efficiency (PAE). Our results show, for the first time, the actual role of PEPC in phosphate solubilisation through succinate exudation, proposing PPC3 as a specific target to improve PAE in plants.

Keywords

Sorghum bicolor, calcium phosphate, phosphate acquisition efficiency (PAE), phosphate starvation responses (PSR), phosphoenolpyruvate carboxylase (PEPC), root exudates, Physiology, Plant Science

Citation

Pérez-López, J, de la Osa, C, Gandullo, J, Gigli-Bisceglia, N, Coleto, I, Feria, A B, Echevarría, C, Testerink, C, Marino, D, García-Mauriño, S & Monreal, J A 2026, 'Unravelling the Significance of Phosphoenolpyruvate Carboxylase in Phosphate Starvation Responses', Plant, Cell and Environment, vol. 49, no. 1, pp. 177-192. https://doi.org/10.1111/pce.70204