新型利用PDMS油管在土壤中捕获植物天然产物。

ty10086 提交于 周三, 08/25/2021 - 16:38
文章英文标题
Novel use of PDMS tubing for in-soil capture of plant natural products.
正文
研究了在植物与昆虫食草动物的地下生态相互作用中起作用的土壤-根系界面小亲油分子( SLMs )的提取。聚二甲基硅氧烷( PDMS )微管已被证明能在低干扰装置中选择性地吸收根部SLMs,其中分析物用甲醇从聚合物中提取。该技术适用于分离土壤和砂土中扩散在蒸气相中的SLMs,在各种实验参数下,用推过硅管长度的二乙醚塞萃取。水分水平对作为已知地下SLM半化学物质在介质中合成混合物的分析物的回收率有底物依赖性的影响。从砂土中提取的( E ) -石竹烯和( - ) -苏木素2种选择性SLM较多,聚合物和溶剂体积增大,取样时间延长,提取回收的2种SLM较多。实验还表明PDMS管在反复使用后没有丧失萃取能力。用乙醚萃取硅管,成功地从Diabrotica v . virgifera幼虫侵染的玉米植株根际分离到了标志性化合物( E ) -石竹烯。由于这些管子是以减少污染物的存在为前提的,因此可以直接用GC和GC-MS分析这些萃取物,并用于电生理和行为分析。经过进一步的修饰,可以开发出非侵入的原位PDMS探针,从植物根际提取SLMs,用于研究地下化学生态过程。
文章内容(英文)
The extraction of small lipophilic molecules (SLMs) in the soil-root interface that play a role in belowground ecological interactions between plants and insect herbivores was investigated. Polydimethylsiloxane (PDMS) microtubing has been shown to absorb root SLMs selectively in low-disturbance setups, where analytes were extracted from the polymer with methanol. This technique was adapted to isolate SLMs that diffuse in the vapour phase in soil and sand and under various experimental parameters, extracting with a plug of diethyl ether pushed through the length of the silicon tubing. Moisture level had a substrate-dependent effect on the recovery rate of analytes that were applied as synthetic blends of known belowground SLM semiochemicals in the media. Higher amounts of two selected SLMs, (E)-caryophyllene and (-)-thujopsene, were extracted from sand, and increased polymer and solvent volume, as well as sampling duration, resulted in more of these two SLMs recovered by extraction. It was also shown that PDMS tubes lose no extraction capacity after repeated use. The signature compound (E)-caryophyllene was successfully isolated from the rhizosphere of maize plants infested with Diabrotica v. virgifera larvae by extracting the silicon tubing with diethyl ether. Because the tubes are preconditioned to reduce the presence of contaminants, such extracts can be directly analysed by GC and GC-MS and used in electrophysiological and behavioural assays. After further modifications, non-invasive, in situ PDMS probes can be developed that extract SLMs from plant rhizosphere for the study of belowground chemical ecology processes.
来源出处
Journal|[J]Journal of Chromatography BVolume 1161, 2020. PP 122451-122451
DOI
https://doi.org/10.1016/J.JCHROMB.2020.122451

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