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Biology subjects

Jothi, M.

Publications and source records attributed to Jothi, M..

2 recordsLinked to original sources

Transgenic Cowpea Expressing Synthetic BtCry1Ab Confers High Resistance to Legume Pod Borer (Maruca vitrata)

Cowpea, an important food legume crop, suffers significant yield losses due to insect pests, particularly the legume pod borer (Maruca vitrata). Narrow genetic base and lack of sufficient resistance to M. vitrata in existing cowpea germplasm, make them less effective in managing M. vitrata populations. To address this challenge, a transgenic approach is explored. In this study, we develop transgenic cowpea with enhanced resistance to M. vitrata by overexpressing a synthetic cry1Ab gene, driven by constitutive CaMV35S viral promoter, in an Indian cowpea cultivar. High expression of Cry1Ab was detected in leaves and pods. Bioassays with M. vitrata and Helicoverpa armigera larvae demonstrated significant resistance of transgenic lines to these lepidopteran pests. The transgenic lines exhibited reduced pod damage, decreased larval feeding, and increased insect mortality compared to non-transgenic controls. NMR analysis demonstrated absence of any new metabolites in transgenic plants. Furthermore, these transgenic lines showed no penalty on growth and development. The transgenic lines exhibited no observable phenotypic drawbacks, indicating their promise for sustainable agricultural practices. Our findings suggest that these transgenic cowpea lines could offer broad-spectrum protection against these pests, providing an effective pest management solution.

plant biology↗

Metavinculin mediates differentiation cues into myogenic gene expression.

Isoform switching in deciphering differentiation signals into myogenic transcriptional output remains unexplored. Here, we report a distinct function of muscle-specific metavinculin isoform in switching canonical to non-canonical Wnt-pathways to establish skeletal muscle differentiation. Metavinculin expression is specifically associated with muscle differentiation, regeneration and absent in proliferating myoblasts. During differentiation, metavinculin-specific exon retention is facilitated by the direct binding of Rbfox1 to its downstream intron. Depletion of metavinculin impairs skeletal muscle differentiation, while its ectopic expression induces genes associated with differentiation even in proliferating myoblasts. Subsequent results revealed that pharmacological activation of canonical Wnt impedes muscle differentiation, whereas its inhibition stimulates differentiation. Canonical Wnt inhibition or ectopic non-canonical Wnt7b expression restores muscle differentiation programs in metavinculin-depleted cells. These results indicates a dynamic interplay between Rbfox1-generated metavinculin and Wnt-signaling pathways. This advancement sheds light on the intricate molecular mechanisms underlying skeletal muscle differentiation and suggests potential therapeutic targets for muscle-related disorders.

cell biology↗