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首页> 外文期刊>European Journal of Lipid Science and Technology >2-Acetyl-1,3-Diacyl-sn-Glycerols with Unusual Acyl Composition in Seed Oils of the Genus Polygala
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2-Acetyl-1,3-Diacyl-sn-Glycerols with Unusual Acyl Composition in Seed Oils of the Genus Polygala

机译:2-乙酰基-1,3-二酰基-Sn-甘油,具有异常的酰基组合物中的异常胶质组合物

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摘要

Seed oils containing unusual triacylglycerol (TAG) molecules, where one fatty acid of a TAG is substituted by an acetate group (Ac), are uncommon but of considerable interest as potential low-viscosity biofuels and lubricants or reduced calorie food ingredients. Although the properties and pathway of biosynthesis of 3-acetyl-1,2-diacyl-sn-glycerols (sn-3-acTAGs) have been described, little is known about the occurrence of 2-acetyl-1,3-diacyl-sn-glycerols (sn-2-acTAGs). Prompted by a report of sn-2-acTAGs in the seeds of Polygala virgata, a study of the seed oil of seven members of this genus, and two related species is conducted. The presence of sn-2-acTAG and lesser amounts of conventional TAG is conclusively demonstrated in Polygala seed oil by Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry (MALDI-TOF MS) and high resolution C-13 nuclear magnetic resonance spectroscopy (C-13 NMR). Analysis of seed fatty acids reveals a diversity of composition with oils from P. myrtifolia and P. fruticosa dominated by the medium-chain fatty acid (MCFA) myristic acid (tetradecanoic acid) at an average of 79.8 and 74.1% of total seed fatty acids, respectively. In contrast, MCFAs are absent from oils from P. tenuifolia and P. virgata, with the very-long-chain fatty acid (VLCFA) gondoic acid (cis-11-eicosenoic acid) being most abundant. Polygala species therefore represent a rich source of sn-2-acTAGs and uncommon fatty acids.Practical applications: The seed oils of Polygala species contain a highly unusual combination of sn-2-acTAGs and uncommon fatty acids. These plants can serve as a unique genetic resource for the elucidation of the pathways of biosynthesis of these lipids and the identification of genes for the engineering of novel oils in transgenic plants. As Polygala is morphologically diverse genus ranging from annual herbs to small trees, identification of species with suitable seed production and agronomic characteristics may allow the commercial production of novel oils for specific higher value uses. Plant seed oils are generally composed primarily of triacylglycerol (TAG). In this article, the authors examine the seed oils of seven species in the genus Polygala and report the occurrence of an unusual lipid, 2-acetyl-1,3-diacyl-sn-glycerol (sn-2 acTAG). These plants also produce unusual fatty acids in their seed oil, with Polygala tenuifolia being enriched in gondoic acid (cis-11-eicosenoic acid, 20:1(11)) and Polygala myrtifolia containing myristic acid (tetradecanoic acid, 14:0). The genus Polygala represents a potential source of novel oil and a resource for the characterization of sn-2 acTAG biosynthesis.
机译:含有不寻常的三酰基甘油(标签)分子的种子油,其中标签的一种脂肪酸被乙酸盐基团(AC)取代,罕见但具有相当大的兴趣,也具有相当的兴趣,作为潜在的低粘度生物燃料和润滑剂或降低的卡路里食品成分。虽然已经描述了3-乙酰基-1,2-二酰基-Sn-甘油(Sn-3- actags)的生物合成的性质和途径,但是关于2-乙酰基-1,3-二氨基-SN的发生几乎是已知的 - 甘油(Sn-2-Actags)。通过在Polygala Virgata的种子中报告Sn-2-Actags的报告,对该属七个成员的种子油和两个相关物种的研究进行了研究。通过基质辅助激光解吸/电离飞行时间质谱法(MALDI-TOF MS)和高分辨率C-13核磁磁性,在聚像辅助激光解吸/电离时,在聚像籽油中展示了Sn-2- actag和较小量的常规标签。共振光谱(C-13 NMR)。种子脂肪酸的分析揭示了来自中链脂肪酸(MCFA)肉豆蔻酸(四癸酸)的P. myrtifolia和P. Fruticosa的组合物的多样性平均为79.8%和74.1%的种子脂肪酸, 分别。相比之下,MCFA不存在来自P. Tenuifolia和P.Vergata的油,具有非常长的链脂肪酸(VLCFA)吉伦酸(CIS-11-己酸)最丰富。因此,聚像醛物种代表了Sn-2 - 肌动酵母的丰富来源和罕见的脂肪酸。常见应用:聚集类物种的种子油含有高度不寻常的Sn-2-肌动酵母和罕见脂肪酸的组合。这些植物可以作为阐明这些脂质生物合成的途径的独特遗传资源,以及转基因植物中新型油的工程基因的鉴定。由于聚集钙是不同的多样性属,从年度草药到小树,具有合适的种子生产和农艺特征的物种的鉴定可能允许商业生产用于具体的更高价值的新油。植物种子油通常主要由三酰基甘油(标签)组成。在本文中,作者将七种种子中的七种种子含有七种种子油,并报告发生异常脂质,2-乙酰基-1,3-二酰基-Sn-甘油(Sn-2 Actag)的发生。这些植物在其种子油中也产生了不寻常的脂肪酸,具有富含甘露酸(CIS-11-乙酸,20:1(11))和含有肉豆蔻酸(四癸酸,14:0)的聚集体Myrtifolia的富含凝血剂的脂肪酸。 Polygala属代表新型石油的潜在来源和用于表征Sn-2 Actag生物合成的资源。

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