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本地和非本地宿主对植物天然产物代谢途径重建的评估

Native and non-native host assessment towards metabolic pathway reconstructions of plant natural products.

作者信息

Pujari Ipsita, Thomas Abitha, Sankar Babu Vidhu

机构信息

Department of Plant Sciences, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.

出版信息

Biotechnol Rep (Amst). 2021 Apr 16;30:e00619. doi: 10.1016/j.btre.2021.e00619. eCollection 2021 Jun.

Abstract

Plant-based biopreparations are reasonably priced and are devoid of viral, prion and endotoxin contaminants. However, synthesizing these natural plant products by chemical methods is quite expensive. The structural complexity of plant-derived natural products poses a challenge for chemical synthesis at a commercial scale. Failure of commercial-scale synthesis is the chief reason why metabolic reconstructions in heterologous hosts are inevitable. This review discusses plant metabolite pathway reconstructions experimented in various heterologous hosts, and the inherent challenges involved. Plants as native hosts possess enhanced post-translational modification ability, along with rigorous gene edits, unlike microbes. To achieve a high yield of metabolites in plants, increased cell division rate is one of the requisites. This improved cell division rate will promote cellular homogeneity. Incorporation and maintenance of plant cell synchrony, in turn, can program stable product scale-up.

摘要

植物源生物制剂价格合理,且不含病毒、朊病毒和内毒素污染物。然而,通过化学方法合成这些天然植物产品成本相当高昂。植物源天然产物的结构复杂性给商业规模的化学合成带来了挑战。商业规模合成的失败是在异源宿主中进行代谢重建不可避免的主要原因。本综述讨论了在各种异源宿主中进行的植物代谢物途径重建以及其中涉及的固有挑战。与微生物不同,作为天然宿主的植物具有增强的翻译后修饰能力以及严格的基因编辑能力。为了在植物中实现高产量的代谢物,提高细胞分裂速率是必要条件之一。这种提高的细胞分裂速率将促进细胞同质性。反过来,植物细胞同步性的整合和维持可以规划稳定的产品放大生产。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f51/8091882/0ff8967a392b/gr1.jpg

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