Department of Chemistry, University at Albany, State University of New York, 1400 Washington Avenue, Albany, NY, 12222, USA.
Royal Botanic Gardens, Kew, Richmond,, TW9 3AE, UK.
New Phytol. 2022 Apr;234(1):319-331. doi: 10.1111/nph.17893. Epub 2021 Dec 27.
Analysis of wood transects in a manner that preserves the spatial distribution of the metabolites present is highly desirable to among other things: (1) facilitate ecophysiology studies that reveal the association between chemical make-up and environmental factors or climatic events over time; and (2) investigate the mechanisms of the synthesis and trafficking of small molecules within specialised tissues. While a variety of techniques could be applied to achieve these goals, most remain challenging and impractical. Laser ablation direct analysis in real time imaging-mass spectrometry (LADI-MS) was successfully used to survey the chemical profile of wood, while also preserving the small-molecule spatial distributions. The tree species Entandrophragma candollei Harms, Millettia laurentii DeWild., Pericopsis elata (Harms) Meeuwen, Dalbergia nigra (Vell.) Benth. and Dalbergia normandii Bosser & R.Rabev were analysed. Several compounds were associated with anatomical features. A greater diversity was detected in the vessels and parenchyma compared with the fibres. Analysis of single vessels revealed that the chemical fingerprint used for timber identification is mainly determined by vessel content. Laser ablation direct analysis in real time imaging-mass spectrometry offers unprecedented opportunities to investigate the distribution of metabolites within wood samples, while circumventing the issues associated with previous methods. This technique opens up new vistas for the discovery of small-molecule biomarkers that are linked to environmental events.
对木材切片进行分析,以保留存在的代谢物的空间分布,这对于以下方面非常重要:(1) 便于生态生理学研究,揭示化学组成与环境因素或随时间变化的气候事件之间的关联;(2) 研究小分子在专门组织内的合成和运输机制。虽然可以应用多种技术来实现这些目标,但大多数技术仍然具有挑战性和不切实际。激光烧蚀实时直接分析-质谱法(LADI-MS)成功地用于调查木材的化学特征,同时也保留了小分子的空间分布。分析了物种包括恩檀木 Entandrophragma candollei Harms、美丽崖豆藤 Millettia laurentii DeWild.、坡垒 Pericopsis elata (Harms) Meeuwen、黑黄檀 Dalbergia nigra (Vell.) Benth. 和绒毛黄檀 Dalbergia normandii Bosser & R.Rabev。几种化合物与解剖特征有关。与纤维相比,在导管和薄壁组织中检测到更大的多样性。对单个导管的分析表明,用于木材鉴定的化学指纹主要由导管含量决定。激光烧蚀实时直接分析-质谱法为研究木材样本中代谢物的分布提供了前所未有的机会,同时避免了以前方法所存在的问题。这项技术为发现与环境事件相关的小分子生物标志物开辟了新的前景。