Salinity is a major abiotic constraint limiting mango (Mangifera indica L.) production, particularly in arid and semi-arid regions. This study evaluated the effects of foliar application of glycine betaine (GB) and algae extract (AE) on the growth, physiological, biochemical, and anatomical responses of two mango rootstocks, Sokkary and Gahrawy, irrigated with tap water, 1500 ppm, or 3000 ppm seawater. Salinity significantly reduced plant height, stem diameter, leaf area, chlorophyll content, and the K⁺/Na⁺ ratio, while increasing malondialdehyde (MDA), hydrogen peroxide (H₂O₂), and antioxidant enzyme activities. At 3000 ppm, untreated plants reached only 24–25 cm in height, whereas GB application in Gahrawy and AE application in Sokkary substantially alleviated this inhibition, restoring height to 42.25 and 40.00 cm, respectively. Gahrawy exhibited greater intrinsic salinity tolerance, with higher K⁺ retention (2.174%), endogenous glycine betaine (2.91 µmol g⁻¹ DW), and antioxidant capacity (40.23% DPPH scavenging). In contrast, Sokkary responded more strongly to biostimulant application, particularly GB under severe salinity. GB improved osmotic adjustment, ion homeostasis, and chlorophyll stability, increasing plant height to 50.0 cm in Gahrawy at 1500 ppm and reducing leaf Na⁺ accumulation by up to 51% at 3000 ppm. AE enhanced antioxidant activity (53.0% DPPH scavenging), leaf expansion, and vascular development. Anatomical analyses revealed genotype-specific structural adaptations associated with salinity tolerance. Salinity tolerance depended on the interaction among genotype, salinity level, and biostimulant treatment. GB and AE effectively alleviated salt-induced damage through complementary physiological and anatomical mechanisms, supporting their use as sustainable strategies to improve mango production under saline conditions.
: Soil salinity, intensified by climate change, is a major abiotic constraint limiting crop productivity, and the development of sustainable management strategies is therefore essential for resilient agroecosystems. Plant biostimulants, including arbuscular mycorrhizal fungi (AMFs), Trichoderma spp., and organic amendm...
Drought stress in agricultural land disrupts the physiological processes, growth, and yield of kale (Brassica oleracea L. var. acephala). This study evaluated the physiological responses, growth, and yield of kale treated with salicylic acid, a potential strategy to enhance plant tolerance to drought stress, in a green...
Rosyida Rosyida, A. Dinana, K. Karno et al.· Agro Bali: Agricultural Jour...· 0 citations
Nagami kumquat (
Fortunella margarita
) is sensitive to high summer temperatures and limited water, which reduce growth and fruit quality. To enhance drought tolerance, a greenhouse factorial experiment was conducted in Chaboksar, Iran, using kaolin (0, 3, 5%) and salicylic acid (0.0, 0.1, 1.0 mM) under three irr...
Akram Mostafaei-Esgandani, F. Zaare-Nahandi, Saeideh Alizadeh-Salteh· Scientific Reports· 1 citation
Increasing soil salinization and water scarcity threaten crop productivity in arid and semi-arid regions. The present study evaluated the physiological and biochemical responses of pumpkin seed (
Cucurbita pepo
L.) to different salinity and deficit irrigation treatments under greenhouse conditions. Plants were su...
Hasan Ali Irık, Ahmet Say, Mustafa Arif Timoçin· Scientific Reports· 0 citations
Combined water deficit and nutritional deficiencies pose significant challenges to the productivity of alfalfa (Medicago sativa). We evaluated natural variation in 14 Tunisian accessions under combined stress, and identifed two contrasting genotypes, Radhouane (tolerant) and Kettana 1 (sensitive), for detailed analysis...
Chaima Mejri, N. Ressaissi, Loua Haddoudi et al.· Functional Plant Biology· 0 citations
KH supplementation confers superior resilience by reinforcing oxidative balance, improving nutrient homeostasis, and supporting key metabolic functions, and support the use of KH as a scalable, cost-effective biostimulant to safeguard P. nodiflora productivity in saline soils.
Fatemeh Sadeghi, S. Esmaeili, M. Chehrazi· Turkish Journal of Agricultu...· 0 citations
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