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Open AccessJournal ArticleDOI

Molecular Characterization of the Alfalfa mosaic virus Infecting Solanum melongena in Egypt and the Control of Its Deleterious Effects with Melatonin and Salicylic Acid.

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TLDR
In 2019, distinct virus-like symptoms were observed in the Kafr El-Sheikh Governorate in Egypt in naturally infected eggplants as discussed by the authors, and the AMV-Eggplant-EG was suspected of to be involved in this disease.
Abstract
During the spring of 2019, distinct virus-like symptoms were observed in the Kafr El-Sheikh Governorate in Egypt in naturally infected eggplants. Leaves of affected plants showed interveinal leaf chlorosis, net yellow, chlorotic sectors, mottling, blisters, vein enation, necrotic intervention, and narrowing symptoms. The Alfalfa mosaic virus (AMV) was suspected of to be involved in this disease. Forty plant samples from symptomatic eggplants and 10 leaf samples with no symptoms were collected. The samples were tested by double antibody sandwich ELISA (DAS-ELISA) using AMV-IgG. Six of the 40 symptomatic leaf samples tested positive for AMV, while, DAS-ELISA found no AMV in the 10 leaf samples without symptoms. The AMV Egyptian isolate (AMV-Eggplant-EG) was biologically isolated from the six positive samples tested by DAS-ELISA and from the similar local lesions induced on Chenopodium amaranticolor and then re-inoculated in healthy Solanum melongena as a source of AMV-Eggplant-EG and confirmed by DAS-ELISA. Reverse transcription polymerase chain reaction (RT-PCR) assay with a pair of primers specific for coat protein (CP) encoding RNA 3 of AMV yielded an amplicon of 666 bp from infected plants of Solanum melongena with AMV-Eggplant-EG. The amplified PCR product was cloned and sequenced. Analysis of the AMV-Eggplant-EG sequence revealed 666 nucleotides (nt) of the complete CP gene (translating 221 amino acid (aa) residues). Analysis of phylogeny for nt and deduced aa sequences of the CP gene using the maximum parsimony method clustered AMV-Eggplant-EG in the lineage of Egyptian isolates (shark-EG, mans-EG, CP2-EG, and FRE-EG) with a high bootstrap value of 88% and 92%, respectively. In addition to molecular studies, melatonin (MTL) and salicylic acid (SA) (100 μM) were used to increase the resistance of eggplant to AMV- infection. Foliar spray with MLT and SA caused a significant increase in the morphological criteria (shoot, root length, number of leaves, leaf area, and leaf biomass), chlorophyll and carotenoid content, antioxidant enzymes, and gene expression of some enzymes compared to the infected plants. On the other hand, treatment with MLT and SA reduced the oxidative damage caused by AMV through the reduction of hydrogen peroxide, superoxide anions, hydroxyl radicals, and malondialdehyde. In conclusion, MLT and SA are eco-friendly compounds and can be used as antiviral compounds.

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Journal ArticleDOI

Melatonin as a Possible Natural Anti-Viral Compound in Plant Biocontrol

TL;DR: In this article , the use of melatonin as a biocontrol agent for plant diseases caused by viruses is discussed. And the possibilities of using melatonin in plant defense systems against pathogens in general, and against viruses in particular are discussed.
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In Silico Pesticide Discovery for New Anti-Tobacco Mosaic Virus Agents: Reactivity, Molecular Docking, and Molecular Dynamics Simulations

TL;DR: Assessment of in silico anti-tobacco mosaic virus activity for a selection of 41 new and 2 reference standard compounds showed that two compounds of the antofine analogues could bind with the tobacco mosaic virus coat protein receptor better than ningnanmycin and ribavirin.
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Coal fly ash and nitrogen application as eco-friendly approaches for modulating the growth, yield, and biochemical constituents of radish plants

TL;DR: In this article , the influence of various fly ash concentrations (5, 10, 15, 20, 25, 30, and 35%) mixed with the optimum concentrations of nitrogen in the form of urea (0.5 g pot-1) on the growth, productivity and biochemical constituents of radish plants was evaluated.
Journal ArticleDOI

Melatonin: A promising candidate for maintaining food security under the threat of phytopathogens.

TL;DR: The role of melatonin in the regulation of plant defense response has been investigated in this article , where the authors present a putative pathway of Melatonin functioning and its interaction with phytohormones during biotic stress.
Journal ArticleDOI

Phylogenetic Relationship of AMV (Alfalfa Mosaic Virus) Isolate Identified in Bingöl Province Based on Coat Protein Gene in Bingöl District of Turkey

TL;DR: Alfalfa mosaic virus (AMV) is one of the most important viral diseases of alfalfa plant among the forage crop, causing significant annual economic losses as mentioned in this paper .
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