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Assessment of Genotype Stress Tolerance as an Effective Way to Sustain Wheat Production under Salinity Stress Conditions

Author

Listed:
  • Mirela Matković Stojšin

    (Institute “Tamiš”, Novoseljanski Put 33, 26000 Pančevo, Serbia)

  • Sofija Petrović

    (Faculty of Agriculture, University of Novi Sad, Dositej Obradović Square 8, 21000 Novi Sad, Serbia)

  • Borislav Banjac

    (Faculty of Agriculture, University of Novi Sad, Dositej Obradović Square 8, 21000 Novi Sad, Serbia)

  • Veselinka Zečević

    (Institute for Vegetable Crops, Karadjordjeva 71, 11420 Smederevska Palanka, Serbia)

  • Svetlana Roljević Nikolić

    (Institute “Tamiš”, Novoseljanski Put 33, 26000 Pančevo, Serbia)

  • Helena Majstorović

    (Institute “Tamiš”, Novoseljanski Put 33, 26000 Pančevo, Serbia)

  • Radiša Đorđević

    (Institute for Vegetable Crops, Karadjordjeva 71, 11420 Smederevska Palanka, Serbia)

  • Desimir Knežević

    (Faculty of Agriculture, University of Priština, Kopaonička bb, 38219 Lešak, Serbia)

Abstract

The creation of salt-tolerant wheat genotypes can provide a basis for sustainable wheat production in areas that are particularly sensitive to the impacts of climate change on soil salinity. This study aimed to select salt-tolerant wheat genotypes that could serve as a genetic resource in breeding for salinity tolerance. A two-year experiment was established with 27 wheat genotypes, grown in salinity stress and non-stress conditions. Agronomic parameters (plant height, spike weight, number of grains per spike, thousand grain weight, and grain yield/plant) were analyzed in the phenophase of full maturity, while biochemical parameters (DPPH radical scavenging activity and total phenolic content) were tested in four phenophases. Grain yield/plant was the most sensitive parameter to salinity, with a 31.5% reduction in value. Selection based on salt tolerance indices (STI, MP, and GMP) favored the selection of the genotypes Renesansa, Harmonija, Orašanka, Bankut 1205, KG-58, and Jugoslavija. Based on YI (1.30) and stability analysis, the genotype Harmonija stands out as the most desirable genotype for cultivation in saline conditions. The presence of positive correlations between grain yield/plant and biochemical parameters, in all phenophases, enables the selection of genotypes with high antioxidant activity and high yield potential, even in the early stages of plant development.

Suggested Citation

  • Mirela Matković Stojšin & Sofija Petrović & Borislav Banjac & Veselinka Zečević & Svetlana Roljević Nikolić & Helena Majstorović & Radiša Đorđević & Desimir Knežević, 2022. "Assessment of Genotype Stress Tolerance as an Effective Way to Sustain Wheat Production under Salinity Stress Conditions," Sustainability, MDPI, vol. 14(12), pages 1-19, June.
  • Handle: RePEc:gam:jsusta:v:14:y:2022:i:12:p:6973-:d:833416
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    References listed on IDEAS

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    1. Unknown, 2009. "Wheat Facts and Futures 2009," Facts and Trends/Overview and Outlook 56366, CIMMYT: International Maize and Wheat Improvement Center.
    2. Amirhossein Hassani & Adisa Azapagic & Nima Shokri, 2021. "Global predictions of primary soil salinization under changing climate in the 21st century," Nature Communications, Nature, vol. 12(1), pages 1-17, December.
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    Cited by:

    1. Borislav Banjac & Velimir Mladenov & Sofija Petrović & Mirela Matković-Stojšin & Đorđe Krstić & Svetlana Vujić & Ksenija Mačkić & Boris Kuzmanović & Dušana Banjac & Snežana Jakšić & Danilo Begić & Rad, 2022. "Phenotypic Variability of Wheat and Environmental Share in Soil Salinity Stress [3S] Conditions," Sustainability, MDPI, vol. 14(14), pages 1-18, July.

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