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Article

Magnetic Iron–Improved Growth, Leaf Chemical Content, Yield, and Fruit Quality of Chinese Mandarin Trees Grown under Soil Salinity Stress

1
Department of Biology, College of Science, Princess Nourah Bint Abdulrahman University, Riyadh 11671, Saudi Arabia
2
College of Science and Humanities-Huraymila, Imam Mohammed Bin Saud Islamic University (IM SIU), Riyadh 11432, Saudi Arabia
3
Department of Horticulture, Faculty of Agriculture, Al-Azhar University, Cairo 11884, Egypt
4
Soils and Water Department, Faculty of Agriculture, Al-Azhar University, Cairo 11884, Egypt
5
Citrus Department, Horticulture Research Institute, Agriculture Research Center, Giza 12619, Egypt
*
Authors to whom correspondence should be addressed.
Plants 2022, 11(21), 2839; https://doi.org/10.3390/plants11212839
Submission received: 24 September 2022 / Revised: 18 October 2022 / Accepted: 20 October 2022 / Published: 25 October 2022

Abstract

Chinese mandarin fruits are an inexpensive and rich source of vitamin C. They have potential benefits in treating acute respiratory infections and mitigating inflammation in critical patients with COVID-19. In Egypt, citrus is the most important fruit tree but is sensitive to salinity stress, resulting in poor vegetative tree growth and reductions in productivity and fruit quality. Magnetic iron has emerged as a promising approach in the citrus tree industry, since it improves vegetative growth, yield, and fruit quality and alleviates salinity stress in Chinese mandarin trees grown in soils suffering from high salt stress. This research is aimed at studying the influence of adding magnetic iron (as soil treatment) on tree canopy growth, yield, and fruit quality of ‘Chinese’ mandarin trees. Therefore, the treatments were as follows: 0, 250, 500, and or 750 g of magnetic iron.tree−1. Our results indicated that all applications of magnetic iron significantly improved tree canopy volume, leaf total chlorophyll, relative water content, yield (kg.tree−1), and the fruit physical and chemical characteristics of Chinese mandarin. In contrast, leaf Na and Cl content, (%), proline, and total phenolic content were decreased by magnetic iron soil treatments. In respect to vegetative growth, our results indicated that adding magnetic iron at the concentration 750 g.tree−1 caused the best values of tree canopy volume. A similar trend was noticed regarding yield. The increase in yield attained was nearly 19%; the best values were obtained when magnetic iron were used at 750 g.tree−1. In conclusion, the application of magnetic iron can lead to improved fruit production and fruit quality of Chinese mandarin trees grown in salinity stress conditions.
Keywords: (Citrus reticulata blanco); salt stress; fruit quality; yield increasing; vitamin C (Citrus reticulata blanco); salt stress; fruit quality; yield increasing; vitamin C

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MDPI and ACS Style

Alharbi, K.; Alshallash, K.S.; Hamdy, A.E.; Khalifa, S.M.; Abdel-Aziz, H.F.; Sharaf, A.; Abobatta, W.F. Magnetic Iron–Improved Growth, Leaf Chemical Content, Yield, and Fruit Quality of Chinese Mandarin Trees Grown under Soil Salinity Stress. Plants 2022, 11, 2839. https://doi.org/10.3390/plants11212839

AMA Style

Alharbi K, Alshallash KS, Hamdy AE, Khalifa SM, Abdel-Aziz HF, Sharaf A, Abobatta WF. Magnetic Iron–Improved Growth, Leaf Chemical Content, Yield, and Fruit Quality of Chinese Mandarin Trees Grown under Soil Salinity Stress. Plants. 2022; 11(21):2839. https://doi.org/10.3390/plants11212839

Chicago/Turabian Style

Alharbi, Khadiga, Khalid S. Alshallash, Ashraf E. Hamdy, Sobhy M. Khalifa, Hosny F. Abdel-Aziz, Ahmed Sharaf, and Walid F. Abobatta. 2022. "Magnetic Iron–Improved Growth, Leaf Chemical Content, Yield, and Fruit Quality of Chinese Mandarin Trees Grown under Soil Salinity Stress" Plants 11, no. 21: 2839. https://doi.org/10.3390/plants11212839

APA Style

Alharbi, K., Alshallash, K. S., Hamdy, A. E., Khalifa, S. M., Abdel-Aziz, H. F., Sharaf, A., & Abobatta, W. F. (2022). Magnetic Iron–Improved Growth, Leaf Chemical Content, Yield, and Fruit Quality of Chinese Mandarin Trees Grown under Soil Salinity Stress. Plants, 11(21), 2839. https://doi.org/10.3390/plants11212839

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