Literature DB >> 19887541

Metabolic engineering of lignan biosynthesis in Forsythia cell culture.

Hyun Jung Kim1, Eiichiro Ono, Kinuyo Morimoto, Tohru Yamagaki, Atsushi Okazawa, Akio Kobayashi, Honoo Satake.   

Abstract

Lignans are a large class of secondary metabolites in plants, with numerous biological effects in mammals, including antitumor and antioxidant activities. Sesamin, the most abundant furofuran-class lignan in sesame seeds (Sesamum plants), is produced by the cytochrome P450 enzyme CYP81Q1 from the precursor lignan, pinoresinol. In contrast, Forsythia plants produce dibenzylbutyrolactone-class lignans, such as matairesinol, from pinoresinol via the catalysis of pinoresinol/lariciresinol reductase (PLR) and secoisolariciresinol dehydrogenase. Here we present the engineering of lignan biosynthesis in Forsythia cell suspension cultures for the development of an efficient production method of beneficial lignans. A suspension cell culture prepared from leaves of Forsythia koreana produced lignans, mainly pinoresinol and matairesinol glucosides, at levels comparable with that obtained from the leaves. In an attempt to increase the pinoresinol content in Forsythia, we generated a transgenic cell line overexpressing an RNA interference (RNAi) construct of PLR (PLR-RNAi). Down-regulation of PLR expression led to a complete loss of matairesinol and an accumulation of approximately 20-fold pinoresinol in its glucoside form in comparison with the non-transformant. Moreover, the Forsythia transgenic cells co-expressing CYP81Q1 and PLR-RNAi exhibited production of sesamin as well as accumulation of pinoresinol glucoside. These data suggest Forsythia cell suspension to be a promising tool for the engineering of lignan production. To the best of our knowledge, this is the first report on transgenic production of an exogenous lignan in a plant species.

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Year:  2009        PMID: 19887541     DOI: 10.1093/pcp/pcp156

Source DB:  PubMed          Journal:  Plant Cell Physiol        ISSN: 0032-0781            Impact factor:   4.927


  16 in total

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3.  Identification, Molecular Cloning, and Functional Characterization of a Coniferyl Alcohol Acyltransferase Involved in the Biosynthesis of Dibenzocyclooctadiene Lignans in Schisandra chinensis.

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4.  Transgenic Forsythia plants expressing sesame cytochrome P450 produce beneficial lignans.

Authors:  Tomotsugu Koyama; Erika Matsumoto; Toshimi Okuda; Jun Murata; Manabu Horikawa; Naoki Hata; Atsushi Okazawa; Eiichiro Ono; Honoo Satake
Journal:  Sci Rep       Date:  2022-06-16       Impact factor: 4.996

5.  Metabolome analysis of genus Forsythia related constituents in Forsythia suspensa leaves and fruits using UPLC-ESI-QQQ-MS/MS technique.

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6.  Transcriptome analysis of Bupleurum chinense focusing on genes involved in the biosynthesis of saikosaponins.

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Review 7.  Essences in metabolic engineering of lignan biosynthesis.

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Journal:  Metabolites       Date:  2015-05-04

8.  Identification and functional characterization of a flax UDP-glycosyltransferase glucosylating secoisolariciresinol (SECO) into secoisolariciresinol monoglucoside (SMG) and diglucoside (SDG).

Authors:  Kaushik Ghose; Kumarakurubaran Selvaraj; Jason McCallum; Chris W Kirby; Marva Sweeney-Nixon; Sylvie J Cloutier; Michael Deyholos; Raju Datla; Bourlaye Fofana
Journal:  BMC Plant Biol       Date:  2014-03-28       Impact factor: 4.215

9.  Genome sequencing of the high oil crop sesame provides insight into oil biosynthesis.

Authors:  Linhai Wang; Sheng Yu; Chaobo Tong; Yingzhong Zhao; Yan Liu; Chi Song; Yanxin Zhang; Xudong Zhang; Ying Wang; Wei Hua; Donghua Li; Dan Li; Fang Li; Jingyin Yu; Chunyan Xu; Xuelian Han; Shunmou Huang; Shuaishuai Tai; Junyi Wang; Xun Xu; Yingrui Li; Shengyi Liu; Rajeev K Varshney; Jun Wang; Xiurong Zhang
Journal:  Genome Biol       Date:  2014-02-27       Impact factor: 13.583

10.  Generation of Triple-Transgenic Forsythia Cell Cultures as a Platform for the Efficient, Stable, and Sustainable Production of Lignans.

Authors:  Jun Murata; Erika Matsumoto; Kinuyo Morimoto; Tomotsugu Koyama; Honoo Satake
Journal:  PLoS One       Date:  2015-12-07       Impact factor: 3.240

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