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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Reassessment of the structural composition of the alkenone distributions in natural environments using an improved method for double bond location based on GC-MS analysis of cyclopropylimines
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Reassessment of the structural composition of the alkenone distributions in natural environments using an improved method for double bond location based on GC-MS analysis of cyclopropylimines

机译:使用改进的双键定位方法,基于环丙基亚胺的GC-MS分析,对自然环境中烯酮分布的结构组成进行重新评估

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摘要

The usefulness of n-propyl-, iso-propyl-, and cyclopropylamines for the location of double bonds positions in C-37-C-40 alkenones after formation of imino derivatives has been evaluated. Cyclopropylamine is the best reagent for its high reaction yields, GC retention time difference between derivatives and precursor compounds, and absence of generation of byproducts. The use of this C-3 amine involves higher sensitivity and ease of application than previously reported C-5 amines. Examination of a large group of alkenones from cultures of Emiliania huxleyi, water particles, and recent and ancient sediments with cyclopropylamine derivatization shows that, in all cases, the double bonds were located at the same carbon atom distance from the carbonyl group, and spaced in intervals of five methylene groups either from the carbonyl or between them, e.g., at sites 7, 14, 21, and 28. This result represents a correction from previous assumptions in which double-bond positions were situated by reference to the methyl end. 4,4-Dimethyloxazoline derivatization of hexatriacontenoates showed that these compounds have also their unsaturations with seven carbon atom spacing and counting by reference to the carboxyl group. The concurrence of both series of isomers in compounds of different oxygen functionalities indicates that the precursor haptophycean algal species have a major biosynthetic pathway leading to the formation of these lipids. The data presented in this work unify the structures of the known alkenones in the present and the recent past under a common metabolic pathway.
机译:已经评估了在形成亚氨基衍生物之后,正丙基胺,异丙基胺和环丙基胺对于C-37-C-40烯酮中双键位置的有用性。环丙胺因其高反应产率,衍生物与前体化合物之间的GC保留时间差以及不产生副产物而成为最佳试剂。与以前报道的C-5胺相比,这种C-3胺的使用具有更高的灵敏度和易用性。用环丙胺衍生化对Emiliaania huxleyi,水颗粒以及近期和古代沉积物中的一大批烯酮进行检测,结果表明,在所有情况下,双键都位于距羰基相同碳原子距离处,并在从羰基或在它们之间(例如,在位点7、14、21和28)的五个亚甲基之间的间隔。此结果表示对先前假设的修正,在该假设中,双键位置通过参考甲基端来定位。六三aco烯酸酯的4,4-二甲基恶唑啉衍生化表明,这些化合物还具有不饱和度,其具有七个碳原子的间隔,并参考羧基进行计数。具有不同氧官能度的化合物中这两个系列异构体的同时存在,表明前生触藻藻类物种具有导致这些脂质形成的主要生物合成途径。这项工作中提供的数据统一了当前和最近已知的烯酮在普通代谢途径下的结构。

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