A Geranylfarnesyl Diphosphate Synthase Provides the Precursor for Sesterterpenoid (C25) Formation in the Glandular Trichomes of the Mint Species Leucosceptrum canum

生物 萜类 毛状体 法尼基二磷酸合酶 茉莉酸甲酯 ATP合酶 生物化学 夜蛾 生物合成 拟南芥 萜烯 植物 甲戊酸途径 质体 基因 突变体 叶绿体 重组DNA
作者
Yan Liu,Shi‐Hong Luo,Axel Schmidt,Guodong Wang,Guiling Sun,Marcus Grant,Ce Kuang,Min-Jie Yang,Shu-Xi Jing,Chun‐Huan Li,Bernd Schneider,Jonathan Gershenzon,Sheng‐Hong Li
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:28 (3): 804-822 被引量:54
标识
DOI:10.1105/tpc.15.00715
摘要

Plant sesterterpenoids, an important class of terpenoids, are widely distributed in various plants, including food crops. However, little is known about their biosynthesis. Here, we cloned and functionally characterized a plant geranylfarnesyl diphosphate synthase (Lc-GFDPS), the enzyme producing the C25 prenyl diphosphate precursor to all sesterterpenoids, from the glandular trichomes of the woody plant Leucosceptrum canum. GFDPS catalyzed the formation of GFDP after expression in Escherichia coli. Overexpressing GFDPS in Arabidopsis thaliana also gave an extract catalyzing GFDP formation. GFDPS was strongly expressed in glandular trichomes, and its transcript profile was completely in accordance with the sesterterpenoid accumulation pattern. GFDPS is localized to the plastids, and inhibitor studies indicated its use of isoprenyl diphosphate substrates supplied by the 2-C-methyl-d-erythritol 4-phosphate pathway. Application of a jasmonate defense hormone induced GFDPS transcript and sesterterpenoid accumulation, while reducing feeding and growth of the generalist insect Spodoptera exigua, suggesting that these C25 terpenoids play a defensive role. Phylogenetic analysis suggested that GFDPS probably evolved from plant geranylgeranyl diphosphate synthase under the influence of positive selection. The isolation of GFDPS provides a model for investigating sesterterpenoid formation in other species and a tool for manipulating the formation of this group in plants and other organisms.

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