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Novel Set-Up for Low-Disturbance Sampling of Volatile and Non-volatile Compounds from Plant Roots

机译:对植物根中的挥发性和非挥发性化合物进行低干扰采样的新型装置

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摘要

Most studies on rhizosphere chemicals are carried out in substrate-free set-ups or in artificial substrates using sampling methods that require an air flow and may thus cause disturbance to the rhizosphere. Our study aimed to develop a simplified and inexpensive system that allows analysis of rhizosphere chemicals at experimentally less disturbed conditions. We designed a mesocosm in which volatile rhizosphere chemicals were sampled passively (by diffusion) without air- and water flow on polydimethylsiloxane-(PDMS) tubes. Dandelion (Taraxacum sect. ruderalia) was used as model plant; roots were left undamaged. Fifteen volatiles were retrieved from the sorptive material by thermal desorption for analysis by gas chromatography/mass spectrometry (GC/MS). Furthermore, three sugars were collected from the rhizosphere substrate by aqueous extraction and derivatized prior to GC/MS analysis. In order to study how the quantity of detected rhizosphere compounds depends on the type of soil or substrate, we determined the matrix-dependent recovery of synthetic rhizosphere chemicals. Furthermore, we compared sorption of volatiles on PDMS tubes with and without direct contact to the substrate. The results show that the newly designed mesocosm is suitable for low-invasive extraction of volatile and non-volatile compounds from rhizospheres. We further highlight how strongly the type of substrate and contact of PDMS tubes to the substrate affect the detectability of compounds from rhizospheres.
机译:关于根际化学物质的大多数研究都是在无底物的环境中或在人造底物中使用需要空气流动并可能因此对根际造成干扰的采样方法进行的。我们的研究旨在开发一种简化且廉价的系统,该系统允许在实验较少干扰的条件下分析根际化学物质。我们设计了一种介观膜,其中挥发性(根)的化学物质通过聚二甲基硅氧烷(PDMS)管被动(通过扩散)取样,没有空气和水流。蒲公英(蒲公英)。根未受损。通过热脱附从吸附性材料中回收了15种挥发物,用于气相色谱/质谱(GC / MS)分析。此外,通过水提取从根际底物中收集了三种糖,并在GC / MS分析之前将其衍生化。为了研究检测到的根际化合物的量如何取决于土壤或基质的类型,我们确定了合成的根际化学物质的基质依赖性回收率。此外,我们比较了在有和没有直接接触基质的情况下,PDMS管上挥发物的吸附情况。结果表明,新设计的介观膜适用于低侵入性地提取根际中的挥发性和非挥发性化合物。我们进一步强调底物的类型以及PDMS管与底物的接触对根际中化合物可检测性的影响有多大。

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