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姜黄凤仙花法呢基焦磷酸合酶基因的克隆与表达及其在花和伤/取食诱导的叶片挥发性倍半萜合成中的可能作用。

Molecular cloning and expression of Hedychium coronarium farnesyl pyrophosphate synthase gene and its possible involvement in the biosynthesis of floral and wounding/herbivory induced leaf volatile sesquiterpenoids.

机构信息

Center of Flower Research, College of Horticulture, South China Agricultural University, Guangzhou 510642, China.

出版信息

Gene. 2013 Apr 15;518(2):360-7. doi: 10.1016/j.gene.2013.01.007. Epub 2013 Jan 17.

Abstract

Farnesyl pyrophosphate synthase (FPPS EC 2.5.1.10) catalyzes the production of farnesyl pyrophosphate (FPP), which is a key precursor for many sesquiterpenoids such as floral scent and defense volatiles against herbivore attack. Here we report a new full-length cDNA encoding farnesyl diphosphate synthase from Hedychium coronarium. The open reading frame for full-length HcFPPS encodes a protein of 356 amino acids, which is 1068 nucleotides long with calculated molecular mass of 40.7 kDa. Phylogenetic tree analysis indicates that HcFPPS belongs to the plant FPPS super-family and has strong relationship with FPPS from Musa acuminata. Expression of the HcFPPS gene in Escherichia coli yielded FPPS activity. Tissue-specific and developmental analyses of the HcFPPS mRNA and corresponding volatile sesquiterpenoid levels in H. coronarium flowers revealed that the HcFPPS might play a regulatory role in floral volatile sesquiterpenoid biosynthesis. The emission of the FPP-derived volatile terpenoid correlates with strong expression of HcFPPS induced by mechanical wounding and Udaspes folus-damage in leaves, which suggests that HcFPPS may have an important ecological function in H. coronarium vegetative organ.

摘要

法呢基焦磷酸合酶(FPPS EC 2.5.1.10)催化法呢基焦磷酸(FPP)的产生,FPP 是许多倍半萜类化合物的关键前体,如花香和防御性挥发物,以抵御草食性动物的攻击。本文报道了一种来自姜黄属植物的新型全长 cDNA 编码法呢基二磷酸合酶。全长 HcFPPS 的开放阅读框编码一个由 356 个氨基酸组成的蛋白质,其长度为 1068 个核苷酸,计算分子量为 40.7 kDa。系统进化树分析表明,HcFPPS 属于植物 FPPS 超家族,与 Musa acuminata 的 FPPS 具有很强的亲缘关系。在大肠杆菌中表达 HcFPPS 基因产生 FPPS 活性。H. coronarium 花中 HcFPPS mRNA 的组织特异性和发育性分析及其相应挥发性倍半萜水平表明,HcFPPS 可能在花挥发性倍半萜生物合成中起调节作用。FPP 衍生的挥发性萜类化合物的排放与机械损伤和 Udaspes folus 叶片损伤诱导的 HcFPPS 强烈表达相关,这表明 HcFPPS 在姜黄属植物营养器官中可能具有重要的生态功能。

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