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Mohana Prasad, J.

Publications and source records attributed to Mohana Prasad, J..

2 recordsLinked to original sources

A BIOPOLYMER LAMINARIN ELICITS ANTIOXIDANT DEFENSE IN DIFFERENT CULTIVARS OF SOLANUM LYCOPERSICUM AGAINST EARLY BLIGHT DISEASE CAUSED BY ALTERNARIA SOLANI

The study evaluates the potential of laminarin (LaM), a biopolymer, in inducing antioxidative defense in tomato against early blight disease caused by Alternaria solani. Histological analysis of A. solani infection in susceptible (PKM-1) and tolerant (Arka Rakshak) cultivars of tomato showed increased pathogen colonization in PKM-1 by day 8 compared to Arka Rakshak. Fluorescent microscopic analysis with a chitin-specific dye, Calcofluor white, demonstrated reduced A. solani colonization in PKM-1 pretreated with LaM (0.1%), followed by A. solani infection on par with Arka Rakshak. A significant increase in the accumulation of hydrogen peroxide was observed in LaM-pretreated leaves (0.050%, 0.075% and 0.1%) at 24- and 48-hours post-infection in both cultivars. A quantitative increase in guaiacol peroxidase (GPX) activity was recorded in LaM (0.025%), followed by A. solani infection leaves at 36 hrs in Arka Rakshak, whereas LaM (0.010%) followed by A. solani infection recorded maximum GPX activity at 24 hrs in PKM-1. Induction of new GPX isoform was evident in LaM (0.075% and 0.1%) pretreated, and LaM pretreated, followed by A. solani infected leaves of both cultivars at 24 hrs. There was a significant reduction in disease severity in tomato leaves pretreated with LaM (0.1%) and infected with A. solani. The results suggest that LaM could be a potential elicitor of antioxidant defense in tomato against A. solani infection, which can further be harnessed to develop sustainable strategies for managing early blight disease while reducing dependence on chemical fungicides.

plant biology↗

Comparative transcriptome analysis of tomato cultivars pretreated with Laminarin reveals differential expression of defense-responsive genes against Early blight disease

Eco-friendly measures to control disease progression are the need of the hour since chemical fungicides have been harmful to the environment. This study observed that the algal polysaccharide Laminarin triggers a defense response against early blight disease in both tolerant and susceptible tomato cultivars. A dose-dependent reduction in cell death was observed in tomato leaves pre-treated with 0.1% Laminarin and then infected with Alternaria solani in a susceptible and tolerant cultivar. As a result, 0.1% Laminarin was chosen for transcriptome analysis. Transcriptome analysis revealed the upregulation of defense-related genes, such as EF-hand domain-containing protein, Heat shock protein 70, Heat shock factor (HSF) type DNA binding domain-containing protein, Non-specific serine/threonine protein kinase, AP2/ERF domain-containing protein, Leucine-rich repeat-containing N-terminal plant type domain-containing protein, and Subtilisin-like protease. The study also validated the differentially expressed genes using qRT-PCR for bZIP, nsLTP, SKP1, and V-type ATPase genes. Overall, the study demonstrated that the algal polysaccharide Laminarin could induce defense-related genes and provide resistance against early blight disease in tomato plants. KEY MESSAGETomatoes defense-responsive genes showed differential expression in tolerant and susceptible cultivars when treated with laminarin, followed by Alternaria solani infection.

plant biology↗