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Veena Vighneswaran

Publications (5)

Evaluation of EMS Induced Mutagenic Effects on Seed Germination and Early Growth Parameters in Rice Variety Uma

Anjitha, A. R, Veena Vighneswaran, Seeja G, Deepa Thomas, Gayathri G & Anuradha T · Journal of Advances in Biology & Biotechnology · 2025

Ethyl methane sulphonate (EMS) is a potent chemical mutagen widely used to induce genetic variability in crops, including rice (Oryza sativa L.). The objective of this research was to evaluate the combined effects of water pre-soaking, EMS concentration, and exposure duration on...

Open access Research Article 10.9734/jabb/2025/v28i113264

Assessment of Genetic Diversity for Grain Iron and Zinc Contents among 123 Rice Germplasm Lines

Aiswarya S. Kumar, Veena Vighneswaran, Deepa Thomas, Seeja G, Beena Thomas & Pratheesh P Gopinath · Journal of Advances in Biology & Biotechnology · 2025

Aims: This study evaluated 123 rice germplasm lines to assess genetic diversity for major biometric and grain iron and grain zinc contents and identify superior donor genotypes for biofortification breeding programmes. Study Design: completely randomized design. Place and Duratio...

Open access Research Article 10.9734/jabb/2025/v28i103176

Targeting Induced Local Lesions in Genome (TILLING): An Approach towards Genetic Mutations in Rice

Anjitha, A. R & Veena Vighneswaran · Journal of Experimental Agriculture International · 2025

TILLING (Targeting Induced Local Lesions in Genome) is a reverse genetic approach that involves inducing mutations and then utilizing high-throughput methods to identify these mutations. Successful attempts have been made towards improvement of traits through identification of be...

Open access Research Article 10.9734/jeai/2025/v47i103802

Climate Resilient Rice: Progress and Perspectives in Submergence Tolerance

Akula Sri Lakshmi, Deepthy Antony P., Seeja G, Veena Vighneswaran & Deepa Thomas · Journal of Advances in Biology & Biotechnology · 2025

Rice cultivation in rainfed lowland regions faces mounting challenges due to climate-driven flooding stress, which severely threatens crop productivity. Farmers in flood-prone areas are often reluctant to adopt improved rice varieties due to their limited tolerance to submergence...

Open access Research Article 10.9734/jabb/2025/v28i123373

Harnessing Salinity-tolerance Genes Via CRISPR Gene Editing: A Milestone in Rice Breeding

Nihala Shouk K.V, Deepthy Antony P., Jiji Joseph, Veena Vighneswaran & Deepa Thomas · Journal of Advances in Biology & Biotechnology · 2025

Salinity is a major abiotic stress limiting global rice production and threatening food security, as salinized lands continue to expand. Conventional breeding has improved salt tolerance in rice, but improvement is constrained by the complex, multigenic nature of the trait. CRISP...

Open access Research Article 10.9734/jabb/2025/v28i113339