Genotypic differences in physiological and biochemical responses to salinity stress in melon ( Cucumis melo L.) plants: Prospects for selection of salt tolerant landraces
Autor: | Jaleh Ghashghaie, Nasser Ghaderi, Sahebali Bolandnazar, Behrooz Sarabi |
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Rok vydání: | 2017 |
Předmět: |
0106 biological sciences
0301 basic medicine Salinity Genotype Specific leaf area Physiology Melon Plant Science Biology 01 natural sciences 03 medical and health sciences chemistry.chemical_compound Cucumis melo Osmotic Pressure Genetics Plant breeding Cultivar Hoagland solution fungi food and beverages Trichomes biology.organism_classification Carotenoids 030104 developmental biology Agronomy chemistry Chlorophyll Plant Stomata Cucumis 010606 plant biology & botany |
Zdroj: | Plant Physiology and Biochemistry. 119:294-311 |
ISSN: | 0981-9428 |
DOI: | 10.1016/j.plaphy.2017.09.006 |
Popis: | Melon (Cucumis melo L.) is one of the most important horticultural crops in Iran often cultivated in arid and semiarid regions of the country with salinity problems. The objective of this work was to better understand the mechanisms of physiological and biochemical responses to salinity stress of five Iranian melon landraces “Samsuri”, “Kashan”, “Khatouni”, “Suski-e-Sabz”, and “Ghobadlu” from different geographical origins, and “Galia” F1 cultivar. Plants were grown under greenhouse conditions and irrigated with half-strength Hoagland solution containing 0, 30, 60, or 90 mM NaCl for 60 days. Increase in the external salt concentration was accompanied by an obvious depression in leaf relative water content, membrane stability index, chlorophyll a and b and carotenoid contents, stomata and trichome density, leaf area, specific leaf area, biomass, leaf and stem K+ concentrations as well as leaf and stem K+/Na+ ratios in all landraces studied. In contrast, hydrogen peroxide, lipid peroxidation, proline and soluble carbohydrate contents, activity of antioxidant enzymes as well as leaf and stem Na+ and Cl− concentrations, all increased significantly with increasing stress over all plants. Moreover, carbon isotope discrimination (Δ13C), determined on leaf organic matter, was found to be associated with evaluated traits. For example, a highly positive correlation between Δ13C and both biomass production and salt tolerance index was notable when all saline treatments were averaged (r = 0.998 and 0.998, respectively). Also, scatter plot and clustering analysis showed that “Suski-e-Sabz” and “Ghobadlu” were placed close to “Galia” F1, a salt tolerant cultivar, indicating that their similar behavior under salinity. Overall, the present results indicated a significant genetic variability for most of the traits studied, suggesting that “Suski-e-Sabz” and “Ghobadlu” could be introduced as the superior landraces and the most promising tolerant parents in the future melon breeding programs due to their suitable performance, in terms of responses to salt stress as compared with other landraces. Also, Δ13C can be used as a powerful criterion in melon breeding programs aimed at selection of salt tolerant landraces. |
Databáze: | OpenAIRE |
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