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通过 PTR-ToF-MS 进行植物体内 VOC 生物合成基因高通量筛选的研究。

High-throughput screening for in planta characterization of VOC biosynthetic genes by PTR-ToF-MS.

机构信息

Department of Biodiversity and Molecular Ecology, Research and Innovation Centre, Fondazione Edmund Mach, 38010, San Michele all' Adige, TN, Italy.

Dipartimento di Scienze Chimiche, Università degli Studi di Padova, Via Marzolo 1, 35121, Padua, Italy.

出版信息

J Plant Res. 2020 Jan;133(1):123-131. doi: 10.1007/s10265-019-01149-z. Epub 2019 Nov 7.

Abstract

Functional characterization of plant volatile organic compound (VOC) biosynthetic genes and elucidation of the biological function of their products often involve the screening of large numbers of plants from either independent transformation events or mapping populations. The low time resolution of standard gas chromatographic methods, however, represents a major bottleneck for in planta genetic characterization of VOC biosynthetic genes. Here we present a fast and highly-sensitive method for the high-throughput characterization of VOC emission levels/patterns by coupling a Proton Transfer Reaction Time-of-Flight Mass Spectrometer to an autosampler for automation of sample measurement. With this system more than 700 samples per day can be screened, detecting for each sample hundreds of spectrometric peaks in the m/z 15-300 range. As a case study, we report the characterization of VOC emissions from 116 independent Arabidopsis thaliana lines transformed with a putative isoprene synthase gene, confirming its function also when fused to a C-terminal 3×FLAG tag. We demonstrate that the method is more reliable than conventional characterization of transgene expression for the identification of the most highly isoprene-emitting lines. The throughput of this VOC screening method exceeds that of existing alternatives, potentially allowing its application to reverse and forward genetic screenings of genes contributing to VOC emission, constituting a powerful tool for the functional characterization of VOC biosynthetic genes and elucidation of the biological functions of their products directly in planta.

摘要

功能表征植物挥发性有机化合物(VOC)生物合成基因,并阐明其产物的生物学功能,通常涉及从独立转化事件或图谱群体中筛选大量植物。然而,标准气相色谱方法的时间分辨率低,这是 VOC 生物合成基因的植物内遗传特征分析的主要瓶颈。在这里,我们通过将质子转移反应飞行时间质谱仪与自动进样器耦合,为 VOC 排放水平/模式的高通量表征提供了一种快速且高灵敏度的方法,从而实现了样品测量的自动化。使用该系统,每天可以筛选超过 700 个样本,在 m/z 15-300 范围内检测到每个样本数百个光谱峰。作为一个案例研究,我们报告了 116 个独立的拟南芥转化株系的 VOC 排放特征,这些株系转化了一个假定的异戊二烯合酶基因,证实了即使与 C 端 3×FLAG 标签融合,其功能也存在。我们证明,该方法比传统的转基因表达特征分析更可靠,可用于鉴定最具异戊二烯排放能力的株系。这种 VOC 筛选方法的通量超过了现有方法,有可能将其应用于对 VOC 排放有贡献的基因的反向和正向遗传筛选,直接在植物体内构成 VOC 生物合成基因功能表征和其产物生物学功能阐明的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5df/6946754/6093f9adace4/10265_2019_1149_Fig1_HTML.jpg

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