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体外瘤胃微生物在硬脂酸生物氢化过程中形成的C18中间体的鉴定。

Identification of C18 intermediates formed during stearidonic acid biohydrogenation by rumen microorganisms in vitro.

作者信息

Alves S P, Maia M R G, Bessa R J B, Fonseca A J M, Cabrita A R J

机构信息

INRB, Instituto Nacional dos Recursos Biológicos, Unidade de Produção Animal, 2005-048, Fonte-Boa, Vale de Santarém, Portugal.

出版信息

Lipids. 2012 Feb;47(2):171-83. doi: 10.1007/s11745-011-3621-6. Epub 2011 Oct 30.

DOI:10.1007/s11745-011-3621-6
PMID:22038686
Abstract

In vitro batch incubations were used to study the rumen biohydrogenation of unsaturated fatty acids. An earlier study using increasing supplementation levels of stearidonic acid (18:4n-3), revealed that the rumen microbial population extensively biohydrogenates 18:4n-3 after 72 h of in vitro incubation, though several intermediates formed were not completely characterized. Therefore, in the present study, samples were reanalyzed in order to identify the 18:2, 18:3 and 18:4 biohydrogenation intermediates of 18:4n-3. Gas-liquid chromatography coupled to mass spectrometry was used to characterize these intermediates. The acetonitrile chemical ionization mass spectrometry of the fatty acid methyl esters derivatives enabled the discrimination of fatty acids as non-conjugated or conjugated biohydrogenation intermediates. In addition, the acetonitrile covalent adduct chemical ionization tandem mass spectrometry yielded prominent ions indicative of the double bond position of the major 18:3 isomers, i.e. Δ5,11,15 18:3. Furthermore, the 4,4-dimethyloxazoline derivatives prepared from the fatty acid methyl esters enabled the structure of novel 18:2, 18:3 and 18:4 biohydrogenation intermediates to be elucidated. The intermediates accumulated in the fermentation media after 72 h of incubation of 18:4n-3 suggest that similar to the biohydrogenation pathways of linoleic (18:2n-6) and α-linolenic (18:3n-3) acids, the pathway of the 18:4n-3 also proceeds with the formation of conjugated fatty acids followed by hydrogenation, although no conjugated dienes were found. The formation of the novel biohydrogenation intermediates of 18:4n-3 seems to follow an uncommon isomerization pattern with distinct double bond migrations.

摘要

采用体外批次培养法研究不饱和脂肪酸的瘤胃生物氢化作用。一项较早的研究使用逐步增加的十八碳四烯酸(18:4n-3)添加水平,结果显示,体外培养72小时后,瘤胃微生物群体对18:4n-3进行了广泛的生物氢化作用,不过所形成的几种中间产物并未得到完全鉴定。因此,在本研究中,对样品进行了重新分析,以鉴定18:4n-3的18:2、18:3和18:4生物氢化中间产物。采用气相色谱-质谱联用技术对这些中间产物进行表征。脂肪酸甲酯衍生物的乙腈化学电离质谱能够区分脂肪酸是共轭还是非共轭生物氢化中间产物。此外,乙腈共价加合物化学电离串联质谱产生了指示主要18:3异构体(即Δ5,11,15 18:3)双键位置的显著离子。此外,由脂肪酸甲酯制备的4,4-二甲基恶唑啉衍生物能够阐明新型18:2、18:3和18:4生物氢化中间产物的结构。18:4n-3培养72小时后在发酵培养基中积累的中间产物表明,与亚油酸(18:2n-6)和α-亚麻酸(18:3n-3)的生物氢化途径相似,18:4n-3的途径也是先形成共轭脂肪酸,然后进行氢化,尽管未发现共轭二烯。18:4n-3新型生物氢化中间产物的形成似乎遵循一种不常见的异构化模式,具有明显的双键迁移。

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反式-10,顺式-15 十八碳二烯酸:反式-10 移位瘤胃生物氢化途径的一个缺失中间体?
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Biohydrogenation of linolenic acid to stearic acid by the rumen microbial population yields multiple intermediate conjugated diene isomers.瘤胃微生物种群将亚油酸生物氢化生成硬脂酸时会产生多种中间共轭二烯异构体。
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