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Ascorbic Acid Enhances Growth and Yield of Sweet Peppers (Capsicum annum) by Mitigating Salinity Stress
Authors:El-Beltagi  Hossam S.  Ahmad  Imran  Basit  Abdul  Shehata  Wael F.  Hassan  Umair  Shah  Syed Tanveer  Haleema   Bibi  Jalal   Abdullah  Amin   Roohul  Khalid   Muhammad Areeb  Noor   Fahad  Mohamed   Heba I.
Affiliation:1.Agricultural Biotechnology Department, College of Agriculture and Food Sciences, King Faisal University, P.O. Box 400, 31982, Al-Ahsa, Saudi Arabia
;2.Biochemistry Department, Faculty of Agriculture, Cairo University, 12613, Giza, Egypt
;3.Department of Horticulture, The University of Agriculture, 25120, Peshawar, Pakistan
;4.Plant Production Department of, College of Environmental Agricultural Science, El-Arish University, P.O. Box: 45511, North Sinai, Egypt
;5.Floriculture Section, Agriculture Research Institute Tarnab, Peshawar, Pakistan
;6.Institute of Biotechnology and Genetic Engineering, The University of Agriculture, Peshawar, Pakistan
;7.Department of Agriculture, Bacha Khan University, Charsadda, Pakistan
;8.Department of Biological and Geological Sciences, Faculty of Education, Ain Shams University, Cairo, Egypt
;
Abstract:

Salinity is a crucial problem which has affected crop productivity globally. Ascorbic acid is considered helpful against abiotic stresses due to its powerful antioxidant potential. In the pot experiment, salinity stress (0, 35, 70, and 105?mM) was applied to sweet peppers in split doses after 20 days of transplantation. To mitigate the adverse effects of salinity, ascorbic acid (0, 0.40, 0.80, and 1.20?mM) was applied as foliar spray after a 6-day interval during vegetative growth. Sweet pepper plants sprayed with distilled water (control) recorded maximum plant height (cm), leaf area (cm2), number of branches, stem diameter (mm), number of fruit plant?1, fruit diameter (cm), yield plant?1 (g), and chlorophyll content (mg 100?g?1), while the maximum polyphenol oxidase (PPO) activity (unit mg protein?1 min?1) and ascorbate peroxidase (APX) activity (unit mg protein?1 min?1) were recorded in plants treated with 70?mM NaCl application. Salinity stress beyond 70?mM significantly reduced all the studied parameters. An ascorbic acid concentration of 1.20?mM significantly mitigated the negative effects of salt stress and recorded maximum plant height (cm), number of leaves plant?1, leaf area (cm2), number of branches plant?1, stem diameter (mm), number of fruit plant?1, fruit diameter (cm), yield plant?1 (g), chlorophyll content (mg 100?g?1), PPO activity (unit mg protein?1 min?1), and APX activity (unit mg protein?1 min?1). Hence, a 1.20?mM concentration of foliar ascorbic acid could be used in saline conditions up to 70?mM of sodium chloride (NaCl) for better growth, productivity, and enzymatic activity of sweet peppers.

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