High abscisic acid and low root hydraulic conductivity may explain low leaf hydration in ‘Mandarin’ lime exposed to aluminum

Author:

Silva Giselle Schwab1,Gavassi Marina Alves2,de Oliveira Carvalho Brenda Mistral1,Habermann Gustavo2ORCID

Affiliation:

1. Programa de Pós-Graduação em Biologia Vegetal, Departamento de Biodiversidade, Instituto de Biociências, Universidade Estadual Paulista , UNESP, Av. 24-A, 1515, 13506-900 Rio Claro, SP , Brazil

2. Departamento de Biodiversidade, Instituto de Biociências, Universidade Estadual Paulista , UNESP, Av. 24-A, 1515, 13506-900 Rio Claro, SP , Brazil

Abstract

AbstractThe first symptom of aluminum (Al) toxicity is the inhibition of root growth, which has been associated with low leaf hydration, with negative consequences for leaf gas exchange including stomatal conductance (gs) observed in many plant species. Here we asked whether low leaf hydration occurs before or after the inhibition of root growth of Citrus × limonia Osbeck (‘Mandarin’ lime) cultivated for 60 days in nutrient solution with 0 and 1480 μM Al. The length, diameter, surface area and biomass of roots of plants exposed to Al were lower than control plants only at 30 days after treatments (DAT). Until the end of the study, estimated gs (measured by sap flow techniques) was lower than in control plants from 3 DAT, total plant transpiration (Eplant) and root hydraulic conductivity (Lpr) at 7 DAT, and midday leaf water potential (Ψmd) and relative leaf water content at 15 DAT. Abscisic acid (ABA) in leaves was twofold higher in Al-exposed plants 1 DAT, and in roots a twofold higher peak was observed at 15 DAT. As ABA in leaves approached values of control plants after 15 DAT, we propose that low gs of plants exposed to Al is primarily caused by ABA, and the maintenance of low gs could be ascribed to the low Lpr from 7 DAT until the end of the study. Therefore, the low leaf hydration in ‘Mandarin’ lime exposed to Al does not seem to be caused by root growth inhibition or by a simple consequence of low water uptake due to a stunted root system.

Funder

Brazilian National Council for Scientific and Technological Development

São Paulo Research Foundation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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