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异黄酮生物合成的遗传和代谢工程。

Genetic and metabolic engineering of isoflavonoid biosynthesis.

机构信息

Maize Research Institute, Sichuan Agricultural University, Yaan Sichuan, 625014, China.

出版信息

Appl Microbiol Biotechnol. 2010 May;86(5):1293-312. doi: 10.1007/s00253-010-2512-8. Epub 2010 Mar 23.

Abstract

Isoflavonoids are a diverse group of secondary metabolites derived from the phenylpropanoid pathway. These compounds are distributed predominantly in leguminous plants and play important roles in plant-environment interactions and human health. Consequently, the biosynthetic pathway of isoflavonoid compounds has been widely elucidated in the past decades. Up to now, most of the structural genes and some of the regulatory genes involved in this pathway have been isolated and well characterized. Nowadays, the protective effects of the legume isoflavonoids against hormone dependent cancers, cardiovascular disease, osteoporosis, and menopausal symptoms have generated considerable interest within the genetic and metabolic engineering fields to enhance the dietary intake of these compounds for disease prevention. Subsequently, there are some great progresses in genetic and metabolic engineering to improve their yields in leguminous and non-leguminous plants and/or microorganisms. Because of the field of flavonoid biosynthesis has been reviewed fairly extensively in the past, this review concentrates on the more recent development in the isoflavonoid branch of phenylpropanoid pathway, including gene isolation and characterization. In addition, we describe the state-of-the-art research with respect to genetic and metabolic engineering of isoflavonoid biosynthesis.

摘要

异黄酮是一类源自苯丙烷途径的次级代谢产物,具有多样性。这些化合物主要分布在豆科植物中,在植物-环境相互作用和人类健康中发挥着重要作用。因此,异黄酮化合物的生物合成途径在过去几十年中得到了广泛的阐明。到目前为止,该途径中涉及的大多数结构基因和一些调节基因已经被分离出来并得到了很好的表征。如今,豆类异黄酮对激素依赖性癌症、心血管疾病、骨质疏松症和更年期症状的保护作用引起了遗传和代谢工程领域的极大兴趣,旨在通过提高这些化合物的饮食摄入来预防疾病。随后,在遗传和代谢工程方面取得了一些提高豆科和非豆科植物和/或微生物中这些化合物产量的重大进展。由于过去对类黄酮生物合成领域进行了相当广泛的综述,因此本综述重点介绍了苯丙烷途径中异黄酮分支的最新发展,包括基因的分离和表征。此外,我们还描述了异黄酮生物合成的遗传和代谢工程方面的最新研究进展。

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