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瘤胃混合微生物对[U-(13)C]油酸和[1-(13)C]油酸的差异生物氢化和异构化作用。

Differential biohydrogenation and isomerization of [U-(13)C]oleic and [1-(13)C]oleic acids by mixed ruminal microbes.

作者信息

Mosley Erin E, Nudda Anna, Corato Adolfo, Rossi Erica, Jenkins Tom, McGuire Mark A

机构信息

Department of Animal and Veterinary Science, University of Idaho, Moscow, Idaho 83844-2330, USA.

出版信息

Lipids. 2006 May;41(5):513-7. doi: 10.1007/s11745-006-5125-3.

Abstract

The additional mass associated with 13C in metabolic tracers may interfere with their metabolism. The comparative isomerization and biohydrogenation of oleic, [1-(13)C]oleic, and [U-13C]oleic acids by mixed ruminal microbes was used to evaluate this effect. The percent of stearic, cis-14 and -15, and trans-9 to -16 18:1 originating from oleic acid was decreased for [U-(13)C]oleic acid compared with [1-(13)C]oleic acid. Conversely, microbial utilization of [U-(13)C]oleic acid resulted in more of the 13C label in cis-9 18:1 compared with [1-(13)C]oleic acid (53.7 vs. 40.1%). The isomerization and biohydrogenation of oleic acid by ruminal microbes is affected by the mass of the labeled tracer.

摘要

代谢示踪剂中与13C相关的额外质量可能会干扰其代谢。通过瘤胃混合微生物对油酸、[1-(13)C]油酸和[U-13C]油酸进行比较异构化和生物氢化,以评估这种影响。与[1-(13)C]油酸相比,[U-(13)C]油酸中源自油酸的硬脂酸、顺式-14和-15以及反式-9至-16 18:1的百分比降低。相反,与[1-(13)C]油酸相比,[U-(13)C]油酸的微生物利用导致顺式-9 18:1中13C标记更多(53.7%对40.1%)。瘤胃微生物对油酸的异构化和生物氢化受标记示踪剂质量的影响。

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