Plant In Vitro Culture Factories for Pentacyclic Triterpenoid Production.

4区 工程技术 Q2 Biochemistry, Genetics and Molecular Biology
Ilian Badjakov, Ivayla Dincheva, Radka Vrancheva, Vasil Georgiev, Atanas Pavlov
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引用次数: 0

Abstract

Pentacyclic triterpenoids are a diverse subclass of naturally occurring terpenes with various biological activities and applications. These compounds are broadly distributed in natural plant resources, but their low abundance and the slow growth cycle of plants pose challenges to their extraction and production. The biosynthesis of pentacyclic triterpenoids occurs through two main pathways, the mevalonic acid (MVA) pathway and the 2-C-methyl-D-erythritol-4-phosphate (MEP) pathway, which involve several enzymes and modifications. Plant in vitro cultures, including elicited and hairy root cultures, have emerged as an effective and sustainable system for pentacyclic triterpenoid production, circumventing the limitations associated with natural plant resources. Bioreactor systems and controlling key parameters, such as media composition, temperature, light quality, and elicitor treatments, have been optimized to enhance the production and characterization of specific pentacyclic triterpenoids. These systems offer a promising bioprocessing tool for producing pentacyclic triterpenoids characterized by a low carbon footprint and a sustainable source of these compounds for various industrial applications.

生产五环三萜类化合物的植物体外培养工厂。
五环三萜类化合物是天然存在的萜类化合物中的一个多样化亚类,具有各种生物活性和应用。这些化合物广泛分布于天然植物资源中,但其丰度较低,且植物生长周期缓慢,给提取和生产带来了挑战。五环三萜类化合物的生物合成主要通过两条途径,即甲羟戊酸(MVA)途径和 2-C-甲基-D-赤藓糖醇-4-磷酸(MEP)途径,其中涉及多种酶和修饰。植物体外培养物(包括诱导培养物和毛根培养物)已成为生产五环三萜类化合物的一种有效且可持续的系统,避免了与天然植物资源相关的限制。生物反应器系统和关键参数控制(如培养基成分、温度、光照质量和诱导剂处理)已得到优化,以提高特定五环三萜类化合物的生产和表征。这些系统为生产五环三萜类化合物提供了一种前景广阔的生物加工工具,其特点是低碳足迹和这些化合物的可持续来源,可用于各种工业应用。
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来源期刊
Advances in biochemical engineering/biotechnology
Advances in biochemical engineering/biotechnology 工程技术-生物工程与应用微生物
CiteScore
5.70
自引率
0.00%
发文量
29
期刊介绍: Advances in Biochemical Engineering/Biotechnology reviews actual trends in modern biotechnology. Its aim is to cover all aspects of this interdisciplinary technology where knowledge, methods and expertise are required for chemistry, biochemistry, microbiology, genetics, chemical engineering and computer science. Special volumes are dedicated to selected topics which focus on new biotechnological products and new processes for their synthesis and purification. They give the state-of-the-art of a topic in a comprehensive way thus being a valuable source for the next 3 - 5 years. It also discusses new discoveries and applications.
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