Racovita Radu C, Jetter Reinhard
Department of Chemistry, The University of British Columbia, Vancouver, BC, V6T 1Z1, Canada.
Department of Botany, The University of British Columbia, Vancouver, BC, V6T 1Z4, Canada.
Lipids. 2016 Dec;51(12):1407-1420. doi: 10.1007/s11745-016-4208-z. Epub 2016 Oct 28.
Cuticular waxes are complex mixtures consisting mostly of very-long-chain aliphatics with single, primary functional groups. However, the waxes of many plant species also include aliphatics with one or more functional groups residing on subterminal or mid-chain carbons. In the present work, the cuticular wax mixtures from flag leaf blades and peduncles of Triticum aestivum cv. Bethlehem were analyzed in a search for novel wax constituents with in-chain functionalities, potentially of polyketide origin. The structures of compounds belonging to six different compound classes were elucidated using gas chromatography-mass spectrometry of various derivatives. Among them, a series of 2,4-ketols was identified, with odd carbon numbers ranging from C to C and peaking at C. The analogous C 2,4-diketone was identified as well, together with a pair of co-eluting C mid-chain β-ketol isomers (16-hydroxyhentriacontan-14-one and 14-hydroxyhentriacontan-16-one), a pair of co-eluting C mid-chain α-ketol isomers (15-hydroxytriacontan-14-one and 14-hydroxytriacontan-15-one), the corresponding C 14,15-diketone, and a pair of co-eluting C ketones (hentriacontan-14-one and hentriacontan-16-one). All newly discovered structures contain ketone functional groups, with similar CH and CH alkyl chains on either side of the functionalities, thus resembling the previously reported very-long-chain β-diketones dominating the wheat wax mixtures. Based on these structural characteristics, possible biosynthetic pathways leading to the newly identified polyketide-like compounds are proposed.
表皮蜡质是复杂的混合物,主要由带有单一初级官能团的超长链脂肪族化合物组成。然而,许多植物物种的蜡质还包括在亚末端或链中碳原子上带有一个或多个官能团的脂肪族化合物。在本研究中,对普通小麦品种伯利恒旗叶叶片和穗轴的表皮蜡质混合物进行了分析,以寻找具有链内官能团、可能源自聚酮化合物的新型蜡质成分。使用各种衍生物的气相色谱 - 质谱联用技术阐明了属于六个不同化合物类别的化合物结构。其中,鉴定出了一系列2,4 - 酮醇,其奇数碳原子数范围从C到C,在C达到峰值。还鉴定出了类似的C 2,4 - 二酮,以及一对共洗脱的C链中β - 酮醇异构体(16 - 羟基三十一烷 - 14 - 酮和14 - 羟基三十一烷 - 16 - 酮)、一对共洗脱的C链中α - 酮醇异构体(15 - 羟基三十烷 - 14 - 酮和14 - 羟基三十烷 - 15 - 酮)、相应的C 14,15 - 二酮,以及一对共洗脱的C酮(三十一烷 - 14 - 酮和三十一烷 - 16 - 酮)。所有新发现的结构都含有酮官能团,在官能团两侧具有相似的CH和CH烷基链,因此类似于先前报道的在小麦蜡质混合物中占主导地位的超长链β - 二酮。基于这些结构特征,提出了导致新鉴定的聚酮化合物样化合物的可能生物合成途径。