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Does abiotic stresses enhance the production of secondary metabolites? A review

The Pharma Innovation · 2020 · Vol. 9(1) · pp. 412–422
HurmatRicha ShriGulshan Bansal

Abstract

Plants are the backbone of traditional systems of medicine and are also revered for their contribution to development of modern drugs. The therapeutic potential of plants depends on the quality and quantity of phytoconstituents present. Plant growth and the biosynthesis of plant metabolites are greatly influenced by biotic and abiotic factors. Scientific investigations have shown that various abiotic stresses including salt stress, flooding, drought, fertilization, shade, soil types etc. influence plant growth and formation of active constituents. Thus, optimization of abiotic stresses may help in increasing levels of plant metabolites and thus enhancing the bioactivity. The present review summarizes the importance of various abiotic stresses on plant growth and production of bioactive constituents. Literature shows that plants respond to abiotic stresses by modifying their morphology, physiology and phytochemical nature. Changes in plant growth and their bioactive metabolites are reported with alteration in abiotic stresses. This knowledge however is not translated to the fields during cultivation of valuable medicinal plants. From this review the authors conclude that, alteration of environmental factors during growth/cultivation of medicinal plants may ensure supply of plants with increased marker content which ensures better activity.

Plant Genetic and Mutation StudiesBotanical Research and ChemistryPlant tissue culture and regenerationAbiotic componentAbiotic stressPlant growthPhytochemicalBiologyBotanyBiotechnologyEcology
Citations
13
FWCI
1.39
field-weighted impact
References
109
Percentile
84%
vs. same field & year
Citations per year
References
Salt tolerance and salinity effects on plants: a review
Ecotoxicology and Environmental Safety · 2004 · 4,114 citations
Secondary metabolites in plant defence mechanisms
New Phytologist · 1994 · 1,614 citations
Stress-Induced Phenylpropanoid Metabolism
The Plant Cell · 1995 · 2,097 citations
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