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海洋硅藻中的脂氧合酶产物:一种探索氧脂素功能潜力的简明分析方法(1)

LIPOXYGENASE PRODUCTS IN MARINE DIATOMS: A CONCISE ANALYTICAL METHOD TO EXPLORE THE FUNCTIONAL POTENTIAL OF OXYLIPINS(1).

作者信息

Cutignano Adele, Lamari Nadia, d'ippolito Giuliana, Manzo Emiliano, Cimino Guido, Fontana Angelo

机构信息

CNR-Istituto di Chimica Biomolecolare, Via Campi Flegrei 34, 80078 Pozzuoli, Naples, Italy.

出版信息

J Phycol. 2011 Apr;47(2):233-43. doi: 10.1111/j.1529-8817.2011.00972.x. Epub 2011 Mar 24.

Abstract

Oxylipins are oxygenated derivatives of polyunsaturated fatty acids (PUFAs) that act as chemical mediators in many ecological and physiological processes in marine and freshwater diatoms. The occurrence and distribution of these molecules are relatively widespread within the lineage with considerable species-specific differences due to the variability of both the fatty acids recognized as substrates and the enzymatic transformations. The present review provides a general introduction to recent studies on diatom oxylipins and describes an analytical method for the detection and assessment of these elusive molecules in laboratory and field samples. This methodology is based on selective enrichment of the oxylipin fraction by solvent extraction, followed by parallel acquisition of full-scan UV and tandem mass spectra on reverse phase liquid chromatography (LC) peaks. The analytical procedure enables identification of potential genetic differences, enzymatic regulation, and ecophysiological conditions that result in different oxylipin signatures, thus providing an effective tool for probing the functional relevance of this class of lipids in plankton communities. Examples of oxylipin measurements in field samples are also provided as a demonstration of the analytical potential of the methodology.

摘要

氧化脂质是多不饱和脂肪酸(PUFA)的氧化衍生物,在海洋和淡水硅藻的许多生态和生理过程中充当化学介质。由于被识别为底物的脂肪酸和酶促转化的变异性,这些分子的出现和分布在该谱系中相对广泛,存在相当大的物种特异性差异。本综述对硅藻氧化脂质的最新研究进行了概述,并描述了一种用于检测和评估实验室和野外样本中这些难以捉摸的分子的分析方法。该方法基于通过溶剂萃取选择性富集氧化脂质部分,然后在反相液相色谱(LC)峰上并行采集全扫描紫外和串联质谱。该分析程序能够识别导致不同氧化脂质特征的潜在遗传差异、酶调控和生态生理条件,从而为探究这类脂质在浮游生物群落中的功能相关性提供了一种有效工具。还提供了野外样本中氧化脂质测量的示例,以证明该方法的分析潜力。

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