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Withania somnifera (L.) Dunal is a subtropical crop which is widely used in traditional medicine owing to the presence of root bioactives called withanolides. In the present study, phenological variation in withanolide content in roots and leaves was determined at various days after plantation (DAP). Results showed that during the full vegetative state, the amount of marker secondary metabolites viz., withanolide A (Wd-A) and withanone (Wn), increased significantly (p ≤ 0.05) more than early vegetative state (8.16 and 3.2 times, respectively) and maturity stage (54 and 1.33 times, respectively). To qualify the role of temperature per se in enhancing secondary metabolite content, plants during full vegetative stage were exposed to temperature similar to lowest minimum temperature found during the growing period (8°C). During recovery, the metabolic content of secondary metabolites again fell to the level of plants growing at 25°C. This indicated that seasonal temperature played a key role in increasing secondary metabolites rather than the phenological stage of the plant. The physiological importance of this increase in harvesting and its balance with biomass yield has further been discussed.
Swertia chirata Buch.-Ham. is an endangered medicinal plant having high medicinal value. Present study was envisaged to understand in vitro induction of marker secondary metabolites using NaCl elicitation. 50 and 100 mM of NaCl concentrations were applied on 1-monthold static culture shoots. Plants were assessed for cellular damage, anti-oxidative enzymatic system and production of secondary metabolites. There was significant (p ≤ 0.05) increase in secondary metabolites at 50 mM NaCl without any cellular damage or induction of anti-oxidative enzymes. Initial increase in metabolic content of secondary metabolites was observed during 100 mM NaCl treatment, which falls back to normal levels at the seventh day. There was concurrent induction of scavenging enzymes during this period. Results suggest channelling of different defence strategies in response to differential NaCl treatment. Biochemical relationship between induction of anti-oxidative enzymes and production of secondary metabolites has further been discussed in light of physiological requirements.
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