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Effect of glycine betaine and silicon on drought-stressed durum wheat (Triticum durum Desf.) plants

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  • Effect of Glycine Betaine and Silicon On Drought-stressed Durum Wheat (Triticum Durum Desf.) Plants
  • Effect of glycine betaine and silicon on drought-stressed durum wheat (Triticum durum Desf.) plants

Afef Othmani 1, 2, *, Salem Marzougui 1, Mouna Mechri 3, Rim Hajri 2, 4, Imen Bouhaouel 5, 6 and Amel Medini 2

1 Field Crops Laboratory, National Agricultural Research Institute of Tunisia, University of Carthage, Tunis, Ariana 2049, Tunisia.
2 Laboratory of Support for the Sustainability of Agricultural Production Systems in the Northwest Region LR14AGR04, University of Jendouba, Higher School of Agriculture of Kef, Boulifa, Kef.
3 National Institute of Field Crops, Boussalem, Tunisia.
4 Research Laboratory of Agricultural Production Systems and Sustainable Development, University of Carthage, Tunisia.
5 Higher School of Agriculture of Mateur, University of Carthage, Street Tabarka-7030 Mateur, Tunisia.
6 Genetics and Cereal Breeding Laboratory, LR14AGR01, National Agronomic Institute of Tunisia, University of Carthage, 1082 Tunis Mahrajene, Tunisia.
 
Research Article
GSC Advanced Research and Reviews, 2025, 22(03), 116-125.
Article DOI: 10.30574/gscarr.2025.22.3.0062
DOI url: https://doi.org/10.30574/gscarr.2025.22.3.0062
Received on 17 January 2025; revised on 01March 2025; accepted on 04March 2025
 
Water deficit is the major factor limiting durum wheat (Triticum durum Desf.) production and productivity. In this context, a first experiment was conducted to study the effect of seed priming by glycine betaine (GB) on the germination of durum wheat under water deficit stress induced by polyethylene glycol (PEG 6000). Five treatments were applied (T0: Control (0 g/l PEG, 0 mM GB); T1: 0 PEG, 50 mM GB; T2: 0 PEG, 100 mM; T3: 125 g/l PEG, 0 mM GB;T4: 125 g/l PEG, 50 mM GB;T5: 125 g/l PEG, 100 mM GB. A second experiment has focused on the evaluation of the effect of silicon (Si) foliar application on the physiological response of durum wheat to water stress in the field under semi-arid conditions. Two treatments were applied (whithout Si (Si-) and with Si (Si+)). Main results showed that durum wheat seed priming by GB improved germination and seedling growth under water deficit conditions. The highest values of germination percentage (75.83%), vigor index (434.45) and shoot length (4.45 cm) were obtained using 50 mM of GB. The foliar application of silicon improvedphysiological performance of different studied varieties.  Highest values of relative water content (57.31%), leaf area (31.56 cm2) were recorded with the application of Si. Results showed that seed priming with glycine betaine and the foliar application of silicon could be among new approaches to alleviate adverse effects of water deficit stress.
 
Durum wheat; Water deficit stress; Glycine betaine; Silicon
 
https://gscarr.gsconlinepress.com/sites/default/files/fulltext_pdf/GSCARR-2025-…

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Afef Othmani, Salem Marzougui, Mouna Mechri, Rim Hajri, Imen Bouhaouel and Amel Medini. Effect of glycine betaine and silicon on drought-stressed durum wheat (Triticum durum Desf.) plants. GSC Advanced Research and Reviews, 2025, 22(3), 116-125. Article DOI: https://doi.org/10.30574/gscarr.2025.22.3.0062

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