PURPOSE: ) mutants through gamma irradiation, focusing on agro-morphological traits, antioxidant enzyme activity, SSR marker-based genetic analysis, and gene expression profiling. This work addresses the challenge of blast disease and its impact on finger millet production and productivity. MATERIALS AND METHODS: was evaluated via qRT-PCR analysis. RESULTS: challenge, correlating with enhanced resistance. CONCLUSION: This study demonstrates the efficacy of gamma irradiation in inducing genetic variability for blast resistance in finger millet. Integration of phenotypic, biochemical, molecular, and gene expression approaches provides valuable strategies for resistance breeding, offering a sustainable solution to manage blast disease.
Sahni et al. (Thu,) studied this question.
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