The opportunity of using durum wheat landraces to tolerate drought stress: screening morpho-physiological components

Author:

Chaouachi Latifa1,Marín-Sanz Miriam2,Kthiri Zayneb1,Boukef Sameh3,Harbaoui Kalthoum4,Barro Francisco2,Karmous Chahine1

Affiliation:

1. Laboratory of Genetics and Cereal Breeding (LR14 AGR01), National Institute of Agronomy of Tunisia, Carthage University , 1082 Tunis , Tunisia

2. Department of Plant Breeding, Institute for Sustainable Agriculture-Spanish National Research Council (IAS-CSIC) , 14004 Córdoba , Spain

3. High Institute of Agronomy of Chott Mariam, Sousse University , Chott-Mariem 13, Sousse 4042 , Tunisia

4. Higher School of Agriculture of Mateur, Carthage University , 7030 Route de Tabarka , Tunisia

Abstract

Abstract. Local genetic resources could constitute a promising solution to overcome drought stress. Thus, eight (8) durum wheat landraces and one improved variety were assessed for drought tolerance in pots under controlled conditions. Three water treatments were tested: control (100 % of the field capacity (FC)), medium (50 % FC) and severe (25 % FC) stress. The assessment was carried out at the seedling stage to mimic stress during crop set-up. Results showed that increased water stress led to a decrease in biomass and morpho-physiological parameters and an increase in antioxidant enzyme activities. Severe water stress decreased the chlorophyll fluorescence parameters, relative water content (RWC) and water potential of the investigated genotypes by 56.45, 20.58, 50.18 and 139.4 %, respectively. Besides, the phenolic compounds content increased by 169.2 % compared to the control. Catalase and guaiacol peroxidase activities increased 17 days after treatment for most genotypes except Karim and Hmira. A principal component analysis showed that the most contributed drought tolerance traits were chlorophyll fluorescence parameters, RWC and electrolyte conductivity. Unweighted pair group method with arithmetic mean clustering showed that the landraces Aouija, Biskri and Hedhba exhibited a higher adaptive response to drought stress treatments, indicating that water stress-adaptive traits are included in Tunisian landraces germplasm.

Funder

Spanish Agencia Estatal de Investigación

European Union (“NextGenerationEU”/PRTR

Junta de Andalucía

Publisher

Oxford University Press (OUP)

Subject

Plant Science

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