Vidya Muthulakshmi M, Srinivasan Aparajitha, Srivastava Smita
Department of Biotechnology, Bhupat & Jyoti Mehta School of Biosciences, Indian Institute of Technology Madras (IIT Madras), Chennai, 600 036 Tamil Nadu, India.
ACS Omega. 2023 Jan 13;8(4):3586-3605. doi: 10.1021/acsomega.2c05819. eCollection 2023 Jan 31.
Vitamin E is a dietary supplement synthesized only by photosynthetic organisms and, hence, is an essential vitamin for human well-being. Because of the ever-increasing demand for natural vitamin E and limitations in existing synthesis modes, attempts to improve its yield using plant cultures have gained traction in recent years. With inflating industrial production costs, integrative approaches to conventional bioprocess optimization is the need of the hour for multifold vitamin E productivity enhancement. In this review, we briefly discuss the structure, isomers, and important metabolic routes of biosynthesis for vitamin E in plants. We then emphasize its vital role in human health and its industrial applications and highlight the market demand and supply. We illustrate the advantages of plant cell/tissue culture cultivation as an alternative to current commercial production platforms for natural vitamin E. We touch upon the conventional vitamin E metabolic pathway engineering strategies, such as single/multigene overexpression and chloroplast engineering. We highlight the recent progress in plant systems biology to rationally identify metabolic bottlenecks and knockout targets in the vitamin E biosynthetic pathway. We then discuss bioprocess optimization strategies for sustainable vitamin E production, including media/process optimization, precursor/elicitor addition, and scale-up to bioreactors. We culminate the review with a short discussion on kinetic modeling to predict vitamin E production in plant cell cultures and suggestions on sustainable green extraction methods of vitamin E for reduced environmental impact. This review will be of interest to a wider research fraternity, including those from industry and academia working in the field of plant cell biology, plant biotechnology, and bioprocess engineering for phytochemical enhancement.
维生素E是一种仅由光合生物合成的膳食补充剂,因此是人类健康所必需的维生素。由于对天然维生素E的需求不断增加以及现有合成模式的局限性,近年来利用植物培养提高其产量的尝试受到了关注。随着工业生产成本的不断上涨,采用综合方法对传统生物过程进行优化是大幅提高维生素E生产力的当务之急。在这篇综述中,我们简要讨论了植物中维生素E的结构、异构体和重要的生物合成代谢途径。然后我们强调了它在人类健康中的重要作用及其工业应用,并突出了市场需求和供应情况。我们阐述了植物细胞/组织培养作为天然维生素E当前商业生产平台的替代方法的优势。我们提及了传统的维生素E代谢途径工程策略,如单基因/多基因过表达和叶绿体工程。我们强调了植物系统生物学在合理识别维生素E生物合成途径中的代谢瓶颈和敲除靶点方面的最新进展。然后我们讨论了可持续生产维生素E的生物过程优化策略,包括培养基/过程优化、前体/诱导剂添加以及扩大到生物反应器。我们以关于动力学建模以预测植物细胞培养中维生素E产量的简短讨论以及关于减少环境影响的维生素E可持续绿色提取方法的建议作为综述的结尾。这篇综述将引起更广泛的研究群体的兴趣,包括在植物细胞生物学、植物生物技术和生物过程工程领域从事植物化学物质增强研究的工业界和学术界人士。