Exogenous nitric oxide reinforces photosynthetic efficiency, osmolyte, mineral uptake, antioxidant, expression of stress-responsive genes and ameliorates the effects of salinity stress in wheat

Alnusairi, Ghalia S.H.; Mazrou, Yasser S.A.; Qari, Sameer H.; Elkelish, Amr A.; Soliman, Mona H.; Eweis, Mohamed; Abdelaal, Khaled; El-Samad, Gomaa Abd; Ibrahim, Mohamed Farag Mohamed; Elnahhas, Nihal;

Abstract


Salinity stress is one of the major environmental constraints responsible for a reduction in agricultural productivity. This study investigated the effect of exogenously applied nitric oxide (NO) (50 µM and 100 µM) in protecting wheat plants from NaCl-induced oxidative damage by modulating protective mechanisms, including osmolyte accumulation and the antioxidant system. Exogenously sourced NO proved effective in ameliorating the deleterious effects of salinity on the growth parameters studied. NO was beneficial in improving the photosynthetic efficiency, stomatal conductance, and chlorophyll content in normal and NaCl-treated wheat plants. Moreover, NOtreated plants maintained a greater accumulation of proline and soluble sugars, leading to higher relative water content maintenance. Exogenous-sourced NO at both concentrations up-regulated the antioxidant system for averting the NaCl-mediated oxidative damage on membranes. The activity of antioxidant enzymes increased the protection of membrane structural and functional integrity and photosynthetic efficiency. NO application imparted a marked effect on uptake of key mineral elements such as nitrogen (N), potassium (K), and calcium (Ca) with a concomitant reduction in the deleterious ions such as Na+ . Greater K and reduced Na uptake in NO-treated plants lead to a considerable decline in the Na/K ratio. Enhancing of salt tolerance by NO was concomitant with an obvious down-regulation in the relative expression of SOS1, NHX1, AQP, and OSM-34, while D2-protein was up-regulated.


Other data

Title Exogenous nitric oxide reinforces photosynthetic efficiency, osmolyte, mineral uptake, antioxidant, expression of stress-responsive genes and ameliorates the effects of salinity stress in wheat
Authors Alnusairi, Ghalia S.H.; Mazrou, Yasser S.A.; Qari, Sameer H.; Elkelish, Amr A.; Soliman, Mona H.; Eweis, Mohamed; Abdelaal, Khaled; El-Samad, Gomaa Abd; Ibrahim, Mohamed Farag Mohamed ; Elnahhas, Nihal
Keywords Antioxidant system | Na /H antiporters + + | Nitric oxide | Osmolytes | Photosystem II | Salinity stress | Triticum aestivum L
Issue Date 1-Aug-2021
Journal Plants 
ISSN 2223-7747
DOI 10.3390/plants10081693
Scopus ID 2-s2.0-85112677799

Recommend this item

Similar Items from Core Recommender Database

Google ScholarTM

Check



Items in Ain Shams Scholar are protected by copyright, with all rights reserved, unless otherwise indicated.