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研究银杏中倍半萜的生物合成:(E,E)-法呢醇和α-姜烯合酶的分子克隆与功能表征。

Investigating sesquiterpene biosynthesis in Ginkgo biloba: molecular cloning and functional characterization of (E,E)-farnesol and α-bisabolene synthases.

机构信息

National Center for Natural Products Research, Thad Cochran Research Center, School of Pharmacy, University of Mississippi, University, MS, 38677, USA.

United States Department of Agriculture, Agricultural Research Service, Natural Products Utilization Research Unit (USDA-ARS-NPURU), P.O. Box 1848, University, MS, 38677-1848, USA.

出版信息

Plant Mol Biol. 2015 Nov;89(4-5):451-62. doi: 10.1007/s11103-015-0381-3. Epub 2015 Oct 6.

Abstract

Ginkgo biloba is one of the oldest living tree species and has been extensively investigated as a source of bioactive natural compounds, including bioactive flavonoids, diterpene lactones, terpenoids and polysaccharides which accumulate in foliar tissues. Despite this chemical diversity, relatively few enzymes associated with any biosynthetic pathway from ginkgo have been characterized to date. In the present work, predicted transcripts potentially encoding enzymes associated with the biosynthesis of diterpenoid and terpenoid compounds, including putative terpene synthases, were first identified by mining publicly-available G. biloba RNA-seq data sets. Recombinant enzyme studies with two of the TPS-like sequences led to the identification of GbTPS1 and GbTPS2, encoding farnesol and bisabolene synthases, respectively. Additionally, the phylogenetic analysis revealed the two terpene synthase genes as primitive genes that might have evolved from an ancestral diterpene synthase.

摘要

银杏是现存最古老的树种之一,作为生物活性天然化合物的来源,已被广泛研究,包括生物活性类黄酮、二萜内酯、萜类化合物和多糖,这些物质在叶片组织中积累。尽管具有这种化学多样性,但迄今为止,与银杏任何生物合成途径相关的相对较少的酶已被鉴定。在本工作中,通过挖掘公开可用的 G. biloba RNA-seq 数据集,首先鉴定了预测的转录本,这些转录本可能编码与二萜和萜类化合物生物合成相关的酶,包括可能的萜烯合酶。对两种 TPS 样序列的重组酶研究导致鉴定了 GbTPS1 和 GbTPS2,分别编码法呢醇和双丁烯合成酶。此外,系统发育分析表明,这两个萜烯合酶基因是原始基因,可能是从祖先二萜合酶进化而来的。

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