Antioxidant activity of various wheat genotypes grown under salinity stress

Author:

MATKOVİĆ STOJŠİN Mirela1,PETROVİĆ Sofija1,DİMİTRİJEVİĆ Miodrag1,ŠUĆUR Jovana1,MALENČİĆ Djordje1,ZEČEVİĆ Veselinka2,BANJAC Borislav1,KNEŽEVİĆ Desimir3

Affiliation:

1. Faculty of Agriculture, University of Novi Sad

2. Institute for Vegetable Crops

3. Faculty of Agriculture, University of Pristina

Abstract

In order to evaluate the antioxidant activity of wheat in salinity stress conditions, an experiment was conducted with 27 wheat genotypes, grown on two types of soil: solonetz (increased salinity) and chernozem (control). Analysis of DPPH scavenging activity and phenolic content (PC) were performed in different phenophases of wheat (tillering, stem elongation, heading and full maturity). Genotypes showed significantly higher DPPH scavenging activity and PC under salinity stress conditions (6.08 mg trolox equivalents (TE) per mg of dry matter (d.m.) and 7.27 mg gallic acid equivalents (GAE) per mg d.m., on solonetz, and 4.42 mg TE mg-1 d.m., 6.16 mg GAE mg-1 d.m., on chernozem). The highest antioxidant activity and PC under salinity stress was found in growth stage of stem elongation (10.91 mg TE mg-1 d.m. and 10.09 mg GAE mg-1 d.m.), while on chernozem, genotypes had the highest antioxidant activity and PC in the growth stage of heading (6.08 mg TE mg-1 d.m. and 7.74 mg GAE mg-1 d.m.). Highly significant and positive correlations are present between grain yield and parameters of antioxidant activity, in all growth stages of wheat and both agro-ecological conditions. Therefore, it could be possible to select salinity tolerant genotypes in early growth stages.

Publisher

Turkish Journal of Field Crops

Subject

Agronomy and Crop Science

Reference35 articles.

1. Ashraf, M. 2009. Biotechnological approach of improving plant salt tolerance using antioxidants as markers. Biotechnol. Adv. 27:84-93.

2. Azizpour, K., M.R. Shakiba, K.N. Sima, H. Alyari, M. Moghaddam, E. Esfandiari and M. Pessarakli. 2010. Physiological response of spring durum wheat genotypes to salinity. J. Plant. Nutr. 33:859-873.

3. Banjac, B. 2015. Yield potential and adaptation of wheat to stressful conditions of solonetzes: doctoral dissertation. University of Novi Sad, Faculty of agriculture, Serbia (in Serbian).

4. Barakat, N., V. Laudadio, E. Cazzato and V. Tufarelli. 2013. Antioxidant potential and oxidative stress markers in wheat (Triticum aestivum) treated with phytohormones under salt-stress condition. Int. J. Agric. Biol. 15:843-849.

5. Belić, M., Lj. Nešić, M. Dimitrijević, S. Petrović and B. Pejić. 2006. The -influence of water- physical properties changes of solonetz on the yield and yield components of wheat after phosphogypsum application. In: The natural mineral row materials and possibilities of theirs application in agricultural production and food industry, 165-177. Union of agricultural engineers and technicians of Serbia and Geological Institute, Belgrade, Serbia.

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