Vu Hieu Sy, Shiva Sunitha, Roth Mary R, Tamura Pamela, Zheng Lianqing, Li Maoyin, Sarowar Sujon, Honey Samuel, McEllhiney Dedan, Hinkes Paul, Seib Lawrence, Williams Todd D, Gadbury Gary, Wang Xuemin, Shah Jyoti, Welti Ruth
Kansas Lipidomics Research Center, Division of Biology, Kansas State University, Manhattan, KS, 66506, USA.
Plant J. 2014 Nov;80(4):728-43. doi: 10.1111/tpj.12659. Epub 2014 Oct 3.
A direct-infusion electrospray ionization triple-quadrupole mass spectrometry method with multiple reaction monitoring (MRM) was employed to measure 264 lipid analytes extracted from leaves of Arabidopsis thaliana subjected to mechanical wounding. The method provided precise measurements with an average coefficient of variation of 6.1%. Lipid classes analyzed comprised galactolipids and phospholipids (including monoacyl molecular species, molecular species with oxidized acyl chains, phosphatidic acids (PAs)), tri- and tetra-galactosyldiacylglycerols (TrGDGs and TeGDGs), head-group-acylated galactolipids, and head-group-acylated phosphatidylglycerol (acPG), sulfoquinovosyldiacylglycerols (SQDGs), sphingolipids, di- and tri-acylglycerols (DAGs and TAGs), and sterol derivatives. Of the 264 lipid analytes, 254 changed significantly in response to wounding. In general, levels of structural lipids decreased, whereas monoacyl molecular species, galactolipids and phosphatidylglycerols (PGs) with oxidized fatty acyl chains, PAs, TrGDGs, TeGDGs, TAGs, head-group-acylated galactolipids, acPG, and some sterol derivatives increased, many transiently. The observed changes are consistent with activation of lipid oxidizing, hydrolyzing, glycosylating, and acylating activities in the wounding response. Correlation analysis of the levels of lipid analytes across individual control and treated plants was used to construct a lipid dendrogram and to define clusters and sub-clusters of lipid analytes, each composed of a group of lipids which occurred in a coordinated manner. Current knowledge of metabolism supports the notion that observed sub-clusters comprise lipids generated by a common enzyme and/or metabolically downstream of a common enzyme. This work demonstrates that co-occurrence analysis, based on correlation of lipid levels among plants, is a powerful approach to defining lipids generated in vivo by a common enzymatic pathway.
采用直接进样电喷雾电离三重四极杆质谱法结合多反应监测(MRM),对拟南芥叶片经机械损伤后提取的264种脂质分析物进行测定。该方法测量精确,平均变异系数为6.1%。分析的脂质类别包括半乳糖脂和磷脂(包括单酰基分子种类、具有氧化酰基链的分子种类、磷脂酸(PA))、三半乳糖基二酰基甘油和四半乳糖基二酰基甘油(TrGDG和TeGDG)、头基酰化半乳糖脂和头基酰化磷脂酰甘油(acPG)、磺基喹喔啉基二酰基甘油(SQDG)、鞘脂、二酰基甘油和三酰基甘油(DAG和TAG)以及甾醇衍生物。在这264种脂质分析物中,有254种在受伤后发生了显著变化。总体而言,结构脂质水平下降,而单酰基分子种类、具有氧化脂肪酰基链的半乳糖脂和磷脂酰甘油(PG)、PA、TrGDG、TeGDG、TAG、头基酰化半乳糖脂、acPG以及一些甾醇衍生物增加,其中许多是短暂增加。观察到的变化与受伤反应中脂质氧化、水解、糖基化和酰化活性的激活一致。通过对各个对照植物和处理植物中脂质分析物水平的相关性分析,构建脂质树状图并定义脂质分析物的簇和子簇,每个簇由一组以协同方式出现的脂质组成。目前的代谢知识支持这样一种观点,即观察到的子簇包含由共同酶产生和/或在共同酶代谢下游的脂质。这项工作表明,基于植物间脂质水平相关性的共现分析是定义通过共同酶促途径在体内产生的脂质的有力方法。