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除虫菊中除虫菊酯生物合成过程中表达的一种毛状体特异性亚油酸脂氧合酶。

A trichome-specific linoleate lipoxygenase expressed during pyrethrin biosynthesis in pyrethrum.

作者信息

Ramirez Aldana M, Yang Ting, Bouwmeester Harro J, Jongsma Maarten A

机构信息

Plant Research International, Wageningen University and Research Centre, Wageningen, The Netherlands.

出版信息

Lipids. 2013 Oct;48(10):1005-15. doi: 10.1007/s11745-013-3815-1. Epub 2013 Jul 28.

Abstract

The lipid precursor alcohols of pyrethrins-jasmolone, pyrethrolone and cinerolone-have been proposed as sharing parts of the oxylipin pathway with jasmonic acid. This implies that one of the first committed steps of pyrethrin biosynthesis is catalyzed by a lipoxygenase, catalyzing the hydroperoxidation of linolenic acid at position 13. Previously, we showed that the expression and activity of chrysanthemyl diphosphate synthase (TcCDS), the enzyme catalyzing the first committed step in the biosynthesis of the acid moiety of pyrethrins, is trichome-specific and developmentally regulated in flowers. In the present study we characterized the expression pattern of 25 lipoxygenase EST contigs, and subsequently carried out the molecular cloning of two pyrethrum lipoxygenases, TcLOX1 and TcLOX2, that have a similar pattern to TcCDS. Only recombinant TcLOX1 catalyzed the peroxidation of the linolenic acid substrate. Just as TcCDS, TcLOX1, are exclusively expressed in trichomes. Phylogenetic analysis showed that the enzyme shared the highest homology with chloroplast-localized 13-type-lipoxygenases that are involved in maintaining basal levels of jasmonate.

摘要

除虫菊酯的脂质前体醇类——茉莉酮、除虫菊醇酮和瓜菊醇酮——被认为与茉莉酸共享部分氧脂途径。这意味着除虫菊酯生物合成的首个关键步骤之一是由脂氧合酶催化的,该酶催化亚麻酸在13位的氢过氧化反应。此前,我们发现催化除虫菊酯酸部分生物合成首个关键步骤的酶——菊苣二磷酸合酶(TcCDS)——的表达和活性具有毛状体特异性,且在花中受到发育调控。在本研究中,我们对25个脂氧合酶EST重叠群的表达模式进行了表征,随后对两种除虫菊脂氧合酶TcLOX1和TcLOX2进行了分子克隆,它们具有与TcCDS相似的模式。只有重组TcLOX1催化亚麻酸底物的过氧化反应。与TcCDS一样,TcLOX1仅在毛状体中表达。系统发育分析表明,该酶与参与维持茉莉酸基础水平的叶绿体定位13型脂氧合酶具有最高的同源性。

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