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功能表征和表达分析参与百合 '西伯利亚' 花香味形成的两种萜烯合酶。

Functional characterization and expression analysis of two terpene synthases involved in floral scent formation in Lilium 'Siberia'.

机构信息

The Research Center for Ornamental Plants, College of Forestry and Landscape Architecture, South China Agricultural University, Guangzhou, 510642, China.

Department of Horticulture, College of Agriculture, University of Sargodha, Punjab, Pakistan.

出版信息

Planta. 2019 Jan;249(1):71-93. doi: 10.1007/s00425-018-3006-7. Epub 2018 Sep 14.

Abstract

Floral scent formation in Lilium 'Siberia' is mainly due to monoterpene presence in the floral profile. LoTPS1 and LoTPS3 are responsible for the formation of (±)-linalool and β-ocimene in Lilium 'Siberia'. Lilium 'Siberia' is a perennial herbaceous plant belonging to Liliaceae family, cultivated both as a cut flower and garden plant. The snowy white flower emits a pleasant aroma which is mainly caused by monoterpenes present in the floral volatile profile. Previously terpene synthase (TPS) genes have been isolated and characterized from various plant species but less have been identified from Liliaceae family. Here, two terpene synthase genes (LoTPS1 and LoTPS3), which are highly expressed in sepals and petals of Lilium 'Siberia' flower were functionally characterized recombinant LoTPS1 specifically catalyzes the formation of (Z)-β-ocimene and (±)-linalool as its main volatile compounds from geranyl pyrophosphate (GPP), whereas LoTPS3 is a promiscuous monoterpene synthase which utilizes both GPP and farnesyl pyrophosphate (FPP) as a substrate to generate (±)-linalool and cis-nerolidol, respectively. Transcript levels of both genes were prominent in flowering parts, especially in sepals and petals which are the main source of floral scent production. The gas chromatography-mass spectrometry (GC-MS) and quantitative real-time PCR analysis revealed that the compounds were emitted throughout the day, prominently during the daytime and lower levels at night following a strong circadian rhythm in their emission pattern. Regarding mechanical wounding, both genes showed considerable involvement in floral defense by inducing the emission of (Z)-β-ocimene and (±)-linalool, elevating the transcript accumulation of LoTPS1 and LoTPS3. Furthermore, the subcellular localization experiment revealed that LoTPS1 was localized in plastids, whilst LoTPS3 in mitochondria. Our findings on these two TPSs characterized from Lilium 'Siberia' provide new insights into molecular mechanisms of terpene biosynthesis in this species and also provide an opportunity for biotechnological modification of floral scent profile of Lilium.

摘要

百合 '西伯利亚' 的花香主要归因于花香成分中存在单萜。LoTPS1 和 LoTPS3 负责形成百合 '西伯利亚' 中的(±)-芳樟醇和β-罗勒烯。百合 '西伯利亚' 是一种多年生草本植物,属于百合科,既作为切花又作为园林植物进行栽培。雪白的花朵散发出宜人的香气,主要由花香挥发物中的单萜产生。以前,萜烯合酶(TPS)基因已从各种植物物种中分离和鉴定,但从百合科中鉴定的较少。在这里,两个萜烯合酶基因(LoTPS1 和 LoTPS3)在百合 '西伯利亚' 花的萼片和花瓣中高度表达,功能重组的 LoTPS1 特异性催化香叶基焦磷酸(GPP)形成(Z)-β-罗勒烯和(±)-芳樟醇作为其主要挥发性化合物,而 LoTPS3 是一种混杂的单萜合酶,它利用 GPP 和法呢基焦磷酸(FPP)作为底物分别生成(±)-芳樟醇和顺-橙花叔醇。这两个基因的转录水平在开花部位明显,特别是在萼片和花瓣中,它们是花香产生的主要来源。气相色谱-质谱(GC-MS)和定量实时 PCR 分析表明,化合物全天释放,尤其是在白天,夜间水平较低,呈现出强烈的昼夜节律。关于机械损伤,这两个基因都通过诱导(Z)-β-罗勒烯和(±)-芳樟醇的释放,显著参与花的防御,提高 LoTPS1 和 LoTPS3 的转录积累。此外,亚细胞定位实验表明,LoTPS1 定位于质体,而 LoTPS3 定位于线粒体。我们从百合 '西伯利亚' 中鉴定的这两个 TPS 的研究结果为该物种萜类生物合成的分子机制提供了新的见解,也为生物技术修饰百合的花香特征提供了机会。

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