Physiological and Biochemical Changes in Vegetable and Field Crops under Drought, Salinity and Weeds Stresses: Control Strategies and Management
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Published:2022-12-05
Issue:12
Volume:12
Page:2084
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ISSN:2077-0472
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Container-title:Agriculture
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language:en
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Short-container-title:Agriculture
Author:
Abdelaal KhaledORCID, Alsubeie Moodi Saham, Hafez Yaser, Emeran Amero, Moghanm Farahat, Okasha Salah, Omara RedaORCID, Basahi Mohammed A.ORCID, Darwish Doaa Bahaa EldinORCID, Ibrahim Mohamed F. M.ORCID, El-Yazied Ahmed AbouORCID, Rashwan Emadeldeen Ahmed, Elkelish Amr, Mady Mohamed Ahmed, Ibraheem FaragORCID
Abstract
Weeds are one of the most damaging biotic stresses in crop production, and drought and salinity are considered the most serious abiotic stresses. These factors harmfully affect growth and development in several vegetable and field crops by causing harmful effects on physiological and biochemical characteristics such as water uptake, photosynthesis, relative water content, electrolyte leakage, and antioxidant compounds linked with oxidative stress and the accumulation of reactive oxygen species (ROS). These oxidative stress-related components affect most physiological and biochemical characteristics in plants under natural conditions and environmental stresses, especially weed infestation, salinity, and drought stress. ROS such as superoxide (O2•−), hydrogen peroxide (H2O2), peroxyl radical (ROO•), and singlet oxygen (1O2) are very important molecules produced naturally as by-products of metabolic processes in chloroplasts, mitochondria, peroxisomes, and the apoplast. Under stress conditions such as weed infestation, drought and salinity, the morphological and yield characteristics of stressed plants are negatively affected; however, superoxide (O2•−) and hydrogen peroxide (H2O2) are significantly increased. The negative impact of weeds can be mitigated with integrated controls which include herbicides, allelopathy, and crop rotation as well as the different methods for weed control. The defense system in various crops mainly depends on both enzymatic and nonenzymatic antioxidants. The enzymatic antioxidants include superoxide dismutase, glutathione reductase, and catalase; nonenzymatic antioxidants include ascorbic acid, carotenoids, α-Tocopherols, proline, glutathione, phenolics, and flavonoids. These antioxidant components can scavenge various ROS under several stresses, particularly weeds, drought and salinity. In this review, our objective is to shed light on integrated weeds management and plant tolerance to salinity and drought stresses associated with the ROS and the induction of antioxidant components to increase plant growth and yield in the vegetable and field crops.
Funder
Deanship of Scientific Research at Umm Al-Qura University
Subject
Plant Science,Agronomy and Crop Science,Food Science
Reference253 articles.
1. Pivotal role of yeast and ascorbic acid in improvement the morpho-physiological characters of two wheat cultivars under water deficit stress in calcareous soil;Abdelaal;Fresenius Environ. Bull.,2021 2. Foliar application of nano zink-oxide can alleviate the harmful effects of water deficit on some flax cultivars under drought conditions;Rashwan;Fresenius Environ. Bull.,2020 3. Hafez, Y.M., Attia, K.A., Alamery, S., Ghazy, A., Al-Dosse, A., Ibrahim, E., Rashwan, E., El-Maghraby, L., Awad, A., and Abdelaal, K.A.A. (2020). Beneficial Effects of Biochar and Chitosan on Antioxidative Capacity, Osmolytes Accumulation, and Anatomical Characters of Water-Stressed Barley Plants. Agronomy, 10. 4. Abdelaal, K., EL-Maghraby, L.M., Elansary, H., Hafez, Y.M., Ibrahim, E.I., El-Banna, M., El-Esawi, M., and Elkelish, A. (2020). Treatment of Sweet Pepper with Stress Tolerance-Inducing Compounds Alleviates Salinity Stress Oxidative Damage by Mediating the Physio-Biochemical Activities and Antioxidant Systems. Agronomy, 10. 5. ALKahtani, M.D.F., Attia, K.A., Hafez, Y.M., Khan, N., Eid, A.M., Ali, M.A.M., and Abdelaal, K.A.A. (2020). Chlorophyll Fluorescence Parameters and Antioxidant Defense System Can Display Salt Tolerance of Salt Acclimated Sweet Pepper Plants Treated with Chitosan and Plant Growth Promoting Rhizobacteria. Agronomy, 10.
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