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生物转化异生物质的毛状根。

Biotransformation of xenobiotics by hairy roots.

机构信息

Amity School of Biotechnology, Amity University Mumbai, Pune Expressway, Bhatan Post -Somathne, Panvel, Mumbai, Maharashtra, 410206, India.

Amity School of Biotechnology, Amity University Mumbai, Pune Expressway, Bhatan Post -Somathne, Panvel, Mumbai, Maharashtra, 410206, India.

出版信息

Phytochemistry. 2020 Aug;176:112421. doi: 10.1016/j.phytochem.2020.112421. Epub 2020 Jun 4.

Abstract

The exponential industrial growth we see today rides on the back of large scale production of chemicals, explosives and pharmaceutical products. However, the effluents getting released from their manufacturing units are greatly compromising the sustainability of our environment. With greater awareness of the imperative for environmental clean-up, a promising approach that is attracting increasing research interests is biodegradation of xenobiotics. In this approach, biotransformation has proven to be one of the most effective tools. While many different model frameworks have been used to study different aspects of biotransformation, hairy roots (HRs) have been found to be exceptionally valuable. HR cultures are preferred over other in-vitro model systems due to their biochemical stability and hormone-autotrophy. In addition, the multi-enzyme biosynthetic potential of HRs which is similar to the parent plant and their relatively low-cost cultural requirements further characterize their suitability for biotransformation. The recent progress observed in scale-up of HR cultures and understanding of functional genomics has opened up new dimensions providing valuable insights for industrial application. This review article summarizes the potential of HR cultures in the biotransformation of xenobiotics, their limitations in the application on a large scale and current strategies to alleviate them. Advancement in bioreactors engineering enabling large scale cultivation and modern gene technologies improving biotransformation efficiency promises to extend laboratory results to industrial applications.

摘要

当今我们所看到的指数级工业增长,依赖于大规模生产化学品、炸药和医药产品。然而,这些制造单元释放的废水极大地影响了我们环境的可持续性。随着人们对环境清洁的必要性的认识不断提高,生物降解外来化合物作为一种有前途的方法引起了越来越多的研究兴趣。在这种方法中,生物转化已被证明是最有效的工具之一。虽然已经使用了许多不同的模型框架来研究生物转化的不同方面,但发根(HRs)已被证明具有特别的价值。发根培养物优于其他体外模型系统,因为它们具有生化稳定性和激素自养性。此外,HRs 的多酶生物合成潜力与母体植物相似,并且它们的培养要求相对较低,这进一步证明了它们在生物转化中的适用性。最近在 HR 培养物的放大规模和功能基因组学理解方面取得的进展开辟了新的维度,为工业应用提供了有价值的见解。这篇综述文章总结了 HR 培养物在外来化合物生物转化中的潜力、在大规模应用中的局限性以及目前缓解这些局限性的策略。生物反应器工程的进步使大规模培养成为可能,现代基因技术提高了生物转化效率,有望将实验室结果扩展到工业应用。

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