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. 2024 Mar;137(2):265-277.
doi: 10.1007/s10265-023-01515-y. Epub 2023 Dec 27.

Evidence of an active role of resveratrol derivatives in the tolerance of wild grapevines (Vitis vinifera ssp. sylvestris) to salinity

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Evidence of an active role of resveratrol derivatives in the tolerance of wild grapevines (Vitis vinifera ssp. sylvestris) to salinity

Faouzia Hanzouli et al. J Plant Res. 2024 Mar.

Abstract

Resveratrol and its derivatives are the most important phytoalexins with a crucial role in plant defense mechanisms. These compounds can occur either naturally or in response to abiotic stresses. Among them, salinity is one of the major threats to the sustainability and productivity of agro-economically important species, particularly those involved in the vini-viticulture sector. Understating salinity tolerance mechanisms in plants is required for the development of novel engineering tools. This study aimed to investigate the potential role of resveratrol derivatives in salinity tolerance of wild grapevines. Our data revealed that the tolerant Tunisian wild grapevine genotype "Ouchtata" exhibited an increased accumulation of resveratrol derivatives (glycosylated and non-glycosylated resveratrol and t-ɛ-viniferin and hydroxylated t-piceatannol) in both stems and roots, along with an increased total antioxidant activity (TAA) compared to the sensitive genotype "Djebba" under stress conditions, suggesting an involvement of these stilbenes in redox homeostasis, thereby, protecting cells from salt-induced oxidative damage. Overall, our study revealed, for the first time, an active role for resveratrol derivatives in salt stress tolerance in wild grapevine, highlighting their potential use as metabolic markers in future grapevine breeding programs for a sustainable vini-viticulture in salt-affected regions.

Keywords: Redox homeostasis; Resveratrol derivatives; Salt tolerance; Wild grapevines.

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References

    1. Abideen Z, Qasim M, Rasheed A, Adnan MY, Gul B, Khan MA (2015) Antioxidant activity and polyphenolic content of Phragmites karka under saline conditions. Pak J Bot 47:813–818
    1. Ahanger MA, Agarwal R (2017) Potassium up-regulates antioxidant metabolism and alleviates growth inhibition under water and osmotic stress in wheat (Triticum aestivum L). Protoplasma 254:1471–1486 - PubMed - DOI
    1. Akcin TA, Akcin A, Yalcın E (2017) Anatomical changes induced by salinity stress in Salicornia freitagii (Amaranthaceae). Brazi J Bot 40:1013–1018 - DOI
    1. Alston JM, Sambucci O (2019) Grapes in the world economy. Grape Genome:1–24
    1. Arnold C, Gillet F, Gobat J-M (1998) Situation de la vigne sauvage Vitis vinifera ssp. silvestris en Europe. Vitis 37:159–170

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