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Unravelling the multi-faceted regulatory role of polyamines in plant biotechnology, transgenics and secondary metabolomics

期刊

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
卷 106, 期 3, 页码 905-929

出版社

SPRINGER
DOI: 10.1007/s00253-021-11748-3

关键词

Polyamines; Plant biotechnology; Transgenics; Secondary metabolomics; Putrescine

资金

  1. DST-INSPIRE [C/4588/IFD/2014-15]
  2. Faculty Research and Professional Development Fund (FRPDF) from Presidency University

向作者/读者索取更多资源

Polyamines play crucial roles in various aspects of plant growth and development, including enhancing the production of bioactive natural products and providing defense mechanisms against environmental stress. Their function as growth regulators in vitro is closely correlated with intertwined mechanisms and physiological tuning.
Polyamines (PAs) are ubiquitous low-molecular-weight, aliphatic compounds with wide as well as complex application in fundamental areas of plant growth and development. PAs are mediator of basic metabolism of organisms which include cell division and differentiation, biotic and abiotic stress tolerance, reversal of oxidative damage, stabilization of nucleic acids, and protein and phospholipid binding. In plants, it attributes in direct and indirect organogenesis, endogenous phytohormone regulation, cellular compartmentalization, fruit and flower development, senescence, and secondary metabolite production which are highly tuned as first line of defense response. There are several aspects of polyamine-directed mechanism that regulate overall plant growth in vitro and in vivo. In the present review, we have critically discussed the role played by polyamine on the enhanced production of bioactive natural products and how the same polyamines are functioning against different environmental stress conditions, i.e., salinity, drought, high CO2 content, herbivory, and physical wounding. The role of polyamines on elicitation process has been highlighted previously, but it is important to note that its activity as growth regulator under in vitro condition is correlated with an array of intertwined mechanism and physiological tuning. Medicinal plants under different developmental stages of micropropagation are characterized with different functional aspects and regulatory changes during embryogenesis and organogenesis. The effect of precursor molecules as well as additives and biosynthetic inhibitors of polyamines in rhizogenesis, callogenesis, tuberization, embryogenesis, callus formation, and metabolite production has been discussed thoroughly. The beneficial effect of exogenous application of PAs in elicitation of secondary metabolite production, plant growth and morphogenesis and overall stress tolerance are summarized in this present work.

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