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肉桂拟层孔菌菌丝体和子实体萜类合成中的差异基因表达网络

Differential Gene Expression Network in Terpenoid Synthesis of Antrodia cinnamomea in Mycelia and Fruiting Bodies.

作者信息

Lin Yan-Liang, Ma Li-Ting, Lee Yi-Ru, Shaw Jei-Fu, Wang Sheng-Yang, Chu Fang-Hua

机构信息

School of Forestry and Resource Conservation, National Taiwan University , Taipei, Taiwan.

I-Shou University , Kaohsiung, Taiwan.

出版信息

J Agric Food Chem. 2017 Mar 8;65(9):1874-1886. doi: 10.1021/acs.jafc.6b05386. Epub 2017 Feb 24.

Abstract

Antodia cinnamomea, a precious brown-rot fungus endemic to Taiwan, has pharmaceutical applications due to its diverse array of metabolites. The terpenoids found in A. cinnamomea contribute to its most important bioactivities. We identified several terpenoid compounds in A. cinnamomea and revealed that their content in mycelium and fruiting body were significantly different. Using next-generation sequencing and an in-house transcriptome database, we identified several terpene synthase (TPS) candidates. After sequence analysis and functional characterization, 10 out of 12 candidates were found to have single or multiple terpene synthesis functions. Most of the terpenoid compounds were found to confer important bioactivities. RT-PCR results showed a positive correlation between terpene synthase expression pattern and terpenoid content. In addition, we identified several modification enzyme candidates that may be involved in the postmodification of terpenoid compounds with a genomic DNA scaffold, and a putative genetic network.

摘要

樟芝是台湾特有的珍贵褐腐真菌,因其多样的代谢产物而具有药用价值。樟芝中发现的萜类化合物对其最重要的生物活性有贡献。我们在樟芝中鉴定出了几种萜类化合物,并发现它们在菌丝体和子实体中的含量存在显著差异。利用下一代测序技术和内部转录组数据库,我们鉴定出了几个萜烯合酶(TPS)候选基因。经过序列分析和功能表征,12个候选基因中有10个被发现具有单一或多种萜烯合成功能。大多数萜类化合物被发现具有重要的生物活性。RT-PCR结果表明萜烯合酶表达模式与萜类化合物含量之间存在正相关。此外,我们利用基因组DNA支架鉴定出了几个可能参与萜类化合物后修饰的修饰酶候选基因,以及一个假定的遗传网络。

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