Diversity in Chemical Structures and Biological Properties of Plant Alkaloids
Разнообразие химических структур и биологических свойств растительных алкалоидов
2021-06-03
SCID: 54.1/skc7rrcu
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alkaloid biosynthesisenzymatic structural modificationsplant alkaloidsplant defensespecialized metabolites
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Abstract (AI)
Phytochemicals belonging to the group of alkaloids are signature specialized metabolites endowed with countless biological activities. Plants are armored with these naturally produced nitrogenous compounds to combat numerous challenging environmental stress conditions. Traditional and modern healthcare systems have harnessed the potential of these organic compounds for the treatment of many ailments. Various chemical entities (functional groups) attached to the central moiety are responsible for their diverse range of biological properties. The development of the characterization of these plant metabolites and the enzymes involved in their biosynthesis is of an utmost priority to deliver enhanced advantages in terms of biological properties and productivity. Further, the incorporation of whole/partial metabolic pathways in the heterologous system and/or the overexpression of biosynthetic steps in homologous systems have both become alternative and lucrative methods over chemical synthesis in recent times. Moreover, in-depth research on alkaloid biosynthetic pathways has revealed numerous chemical modifications that occur during alkaloidal conversions. These chemical reactions involve glycosylation, acylation, reduction, oxidation, and methylation steps, and they are usually responsible for conferring the biological activities possessed by alkaloids. In this review, we aim to discuss the alkaloidal group of plant specialized metabolites and their brief classification covering major categories. We also emphasize the diversity in the basic structures of plant alkaloids arising through enzymatically catalyzed structural modifications in certain plant species, as well as their emerging diverse biological activities. The role of alkaloids in plant defense and their mechanisms of action are also briefly discussed. Moreover, the commercial utilization of plant alkaloids in the marketplace displaying various applications has been enumerated.
Key Findings
1
Characterizing alkaloids and their biosynthetic enzymes, together with engineering pathways in homologous or heterologous systems, offers alternatives to chemical synthesis for improving production and biological properties.
2
Enzymatically catalyzed glycosylation, acylation, reduction, oxidation, and methylation reactions drive structural diversification during alkaloid biosynthesis.
3
Plant alkaloids are nitrogen-containing specialized metabolites with extensive structural diversity and numerous biological activities that support plant defense and human healthcare.
4
Plant alkaloids have broad commercial applications, reflecting their therapeutic potential and diverse bioactivities.
5
Variations in functional groups attached to alkaloid core structures generate distinct chemical entities and contribute substantially to their diverse biological properties.
Research Object
Plant alkaloids as specialized metabolites
Research Subject
The diversity of alkaloid chemical structures and biological properties, including the biosynthetic modifications and mechanisms underlying their activities
Publication Details
Publication Date
2021-06-03
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