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1.
Funct Plant Biol ; 43(11): 1016-1027, 2016 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32480523

RESUMO

Salt stress, among other abiotic stresses, has a high impact on crop yield. Salt tolerance is a multifactorial trait that involves the ability of cells to retain K ions, regulate reactive O species (ROS) production, and synthesise new molecules to cope with osmotic stress. In the present work, two different cultivars of Cucumis sativus L. (cv. Parys, sensitive; cv. Polan, tolerant) were selected based on their germination capabilities under 100mM NaCl. The capacity of these two cultivars to tolerate salt stress was analysed using several different physiological and genetic approaches. K+ fluxes from roots, as an immediate response to salinity, showed the higher ability of cv. Polan to maintain K+ compared with cv. Parys, according to the expression level of inward rectifying potassium channel 1 (AKT1). ROS production was also investigated in both cultivars and a higher basal ROS level was observed in cv. Polan than in cv. Parys. Concurrently, an increased basal level of respiratory burst oxidase homologue F (RBOHF) gene was also found, as well as a strong induction of the ethylene responsive factor 109 (ERF109) transcription factor after salt treatment in cv. Polan. Our data suggest that roots' ability to retain K+, a higher level of RBOHF and a strong induction of ERF109 should all be considered important components for salt tolerance in C. sativus.

2.
J Plant Physiol ; 174: 137-46, 2015 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-25462976

RESUMO

The presence of Psidium guajava in polluted environments has been reported in recent studies, suggesting that this species has a high tolerance to the metal stress. The present study aims at a physiological characterization of P. guajava response to high nickel (Ni) concentrations in the root-zone. Three hydroponic experiments were carried out to characterize the effects of toxic Ni concentrations on morphological and physiological parameters of P. guajava, focusing on Ni-induced damages at the root-level and root ion fluxes. With up to 300µM NiSO4 in the root-zone, plant growth was similar to that in control plants, whereas at concentrations higher than 1000µM NiSO4 there was a progressive decline in plant growth and leaf gas exchange parameters; this occurred despite, at all considered concentrations, plants limited Ni(2+) translocation to the shoot, therefore avoiding shoot Ni(2+) toxicity symptoms. Maintenance of plant growth with 300µM Ni(2+) was associated with the ability to retain K(+) in the roots meanwhile 1000 and 3000µM NiSO4 led to substantial K(+) losses. In this study, root responses mirror all plant performances suggesting a direct link between root functionality and Ni(2+) tolerance mechanisms and plant survival. Considering that Ni was mainly accumulated in the root system, the potential use of P. guajava for Ni(2+) phytoextraction in metal-polluted soils is limited; nevertheless, the observed physiological changes indicate a good Ni(2+) tolerance up to 300µM NiSO4 suggesting a potential role for the phytostabilization of polluted soils.


Assuntos
Níquel/toxicidade , Raízes de Plantas/fisiologia , Cálcio/metabolismo , Dióxido de Carbono/metabolismo , Carotenoides/metabolismo , Clorofila/metabolismo , Impedância Elétrica , Íons , Níquel/metabolismo , Folhas de Planta/efeitos dos fármacos , Folhas de Planta/metabolismo , Raízes de Plantas/citologia , Raízes de Plantas/crescimento & desenvolvimento , Raízes de Plantas/ultraestrutura , Brotos de Planta/efeitos dos fármacos , Brotos de Planta/crescimento & desenvolvimento , Estômatos de Plantas/fisiologia , Potássio/metabolismo , Psidium/efeitos dos fármacos , Psidium/crescimento & desenvolvimento , Psidium/fisiologia , Psidium/ultraestrutura , Espectrometria por Raios X
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