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一种用于田间实验中时间分辨植物挥发物分析的强大、简单且高通量的技术。

A robust, simple, high-throughput technique for time-resolved plant volatile analysis in field experiments.

作者信息

Kallenbach Mario, Oh Youngjoo, Eilers Elisabeth J, Veit Daniel, Baldwin Ian T, Schuman Meredith C

机构信息

Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Hans Knöll Straße 8, 07745, Jena, Germany.

出版信息

Plant J. 2014 Jun;78(6):1060-72. doi: 10.1111/tpj.12523. Epub 2014 May 21.

Abstract

Plant volatiles (PVs) mediate interactions between plants and arthropods, microbes and other plants, and are involved in responses to abiotic stress. PV emissions are therefore influenced by many environmental factors, including herbivore damage, microbial invasion, and cues from neighboring plants, and also light regime, temperature, humidity and nutrient availability. Thus, an understanding of the physiological and ecological functions of PVs must be based on measurements reflecting PV emissions under natural conditions. However, PVs are usually sampled in the artificial environments of laboratories or climate chambers. Sampling of PVs in natural environments is difficult, being limited by the need to transport, maintain and provide power to instruments, or use expensive sorbent devices in replicate. Ideally, PVs should be measured in natural settings with high replication, spatio-temporal resolution and sensitivity, and modest costs. Polydimethylsiloxane (PDMS), a sorbent commonly used for PV sampling, is available as silicone tubing for as little as 0.60 € m(-1) (versus 100-550 € each for standard PDMS sorbent devices). Small pieces of silicone tubing (STs) of various lengths from millimeters to centimeters may be added to any experimental setting and used for headspace sampling, with little manipulation of the organism or headspace. STs have sufficiently fast absorption kinetics and large capacity to sample plant headspaces over a timescale of minutes to hours, and thus can produce biologically meaningful 'snapshots' of PV blends. When combined with thermal desorption coupled to GC-MS (a 40-year-old widely available technology), use of STs yields reproducible, sensitive, spatio-temporally resolved quantitative data from headspace samples taken in natural environments.

摘要

植物挥发物(PVs)介导植物与节肢动物、微生物及其他植物之间的相互作用,并参与对非生物胁迫的响应。因此,PVs的释放受许多环境因素影响,包括食草动物的损害、微生物入侵以及来自邻近植物的信号,还有光照条件、温度、湿度和养分有效性。所以,对PVs生理和生态功能的理解必须基于反映自然条件下PVs释放情况的测量。然而,PVs通常是在实验室或气候箱的人工环境中进行采样的。在自然环境中对PVs进行采样很困难,这受到仪器运输、维护和供电需求的限制,或者需要重复使用昂贵的吸附装置。理想情况下,PVs应该在自然环境中进行测量,要有高重复性、时空分辨率和灵敏度,且成本适中。聚二甲基硅氧烷(PDMS)是一种常用于PVs采样的吸附剂,作为硅胶管价格低至0.60欧元/米(相比之下,标准PDMS吸附装置每个价格为100 - 550欧元)。可以将从毫米到厘米不等的各种长度的小段硅胶管(STs)添加到任何实验装置中,并用于顶空采样,对生物体或顶空几乎无需进行操作。STs具有足够快的吸收动力学和大容量,能够在几分钟到几小时的时间尺度上对植物顶空进行采样,因此可以生成具有生物学意义的PVs混合物“快照”。当与热脱附联用气相色谱 -质谱联用仪(一种已有40年历史且广泛应用的技术)相结合时,使用STs可以从自然环境中采集的顶空样品中获得可重复、灵敏且具有时空分辨率的定量数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d447/4190661/e6bb30ebc96f/emss-60405-f0001.jpg

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