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Tolra, R.

Publications and source records attributed to Tolra, R..

2 recordsLinked to original sources

Early salt shock uncouples shoot - root acclimation in Lobularia maritima

1.O_LISalt stress triggers overlapping osmotic and ionic effects. In halophytes, rapid acclimation can obscure how early responses are coordinated across organs. The use of facultative halophytes and salt shocks provides a useful framework to resolve this transition. C_LIO_LIWe investigated the first 24 h of salt shock responses in the facultative halophyte Lobularia maritima by integrating physiological, ionomic, transcriptional and phytohormonal analyses to resolve organ- and time-dependent acclimation dynamics. C_LIO_LISalt shock induced a rapid but transient osmotic effect, with shoot turgor recovery after 8 h. This recovery was associated with sustained osmotic adjustment, proline accumulation and increased Na+ levels in shoots. Conversely, photosynthetic impairment persisted beyond osmotic recovery. Salt exposure rapidly reshaped shoot and root ionomes and was associated with dynamic expression of LmSOS1, LmNHX1, and LmHKT1, consistent with coordinated Na+ partitioning. Oxidative responses diverged between organs; shoots maintained a stable oxidative state, while roots exhibited progressive loss of meristem viability. Abscisic acid (ABA) was strongly accumulated at all time points and emerged as the dominant regulator of early responses. C_LIO_LIThese results show that early salt acclimation in L. maritima is rapid but spatially and functionally uncoupled, combining fast shoot osmotic adjustment with persistent photosynthetic constraints and increased root vulnerability. C_LI

plant biology↗

A role for root carbonic anhydrase βCA4 in bicarbonate tolerance of Arabidopsis thaliana

Carbonic anhydrases (CAs) are the main enzymes handling bicarbonate in the different cell compartments. This study analyses the expression of CAs in roots of Arabidopsis thaliana demes differing in tolerance to bicarbonate: the tolerant A1(c+) deme and the sensitive deme, T6(c-). While 10 mM NaCl caused a transient depolarization of the root cell membranes, 10 mM NaHCO3 caused hyperpolarization. This hyperpolarization was much stronger in A1(c+) than in T6(c-). Acetazolamide (AZ), a specific inhibitor of CAs, abolished the hyperpolarizing effect in A1(c+), indicating the implication of CAs in this fast membrane response. The time dependent (3 to 72 h) expression profiles of 14 CAs (CA1-8 and {beta}CA1-6) in roots of A1(c+) and T6(c-) exposed to either control or NaHCO3 (pH 8.3) revealed a bicarbonate specific upregulation of {beta}CA4.1 (from 3 to 12 h) and, although to a lesser extent, of {beta}CA3 in A1(c+). Contrastingly, in T6(c-) {beta}CA4 was downregulated by NaHCO3. Exclusively in A1(c+), the enhanced expression of {beta}CA4 under bicarbonate was parallelled by an increase of PIP1,3, SLAH1, SLAH3, AHA2, and FRO2 gene expression levels. Under HCO3 - exposure, a {beta}ca4 knockout mutant had lower number of lateral roots, lower root diameter and higher MDA root concentrations than the WT. The obtained results indicate that bicarbonate induced root membrane hyperpolarization is the fast (minutes) initial signalling event in the tolerance response, followed by the specific upregulation of {beta}CA4.1 and the genes involved in H20 and CO2 transport, apoplast acidification, ion homeostasis and iron acquisition.

plant biology↗