CSIR-National Chemical Laboratory, Plant Molecular Biology Unit, Biochemical Sciences Division, Dr. Homi Bhabha Road, Pune 411008, Maharashtra, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, Uttar Pradesh, India.
Molecules. 2021 Jun 3;26(11):3374. doi: 10.3390/molecules26113374.
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.
植物生物碱类化合物是具有无数生物活性的标志性特征化学生物代谢物。植物利用这些天然产生的含氮化合物来应对许多具有挑战性的环境胁迫条件。传统和现代医疗保健系统都利用这些有机化合物的潜力来治疗许多疾病。连接在中心部分上的各种化学实体(官能团)负责它们多样化的生物特性。这些植物代谢物及其生物合成中涉及的酶的特征描述的发展是提供在生物特性和生产力方面增强优势的最优先事项。此外,近年来,在异源系统中引入完整/部分代谢途径和/或在同源系统中过表达生物合成步骤已成为替代化学合成的替代且有利的方法。此外,对生物碱生物合成途径的深入研究揭示了生物碱转化过程中发生的许多化学修饰。这些化学反应涉及糖基化、酰化、还原、氧化和甲基化步骤,它们通常负责赋予生物碱所具有的生物活性。在这篇综述中,我们旨在讨论植物特征化学生物代谢物的生物碱组及其简要分类,涵盖主要类别。我们还强调了某些植物物种中酶促催化结构修饰引起的植物生物碱基本结构的多样性,以及它们新兴的多样化生物活性。生物碱在植物防御中的作用及其作用机制也进行了简要讨论。此外,还列举了市场上具有各种应用的植物生物碱的商业利用。