Literature DB >> 21562931

Identification and ruminal outflow of long-chain fatty acid biohydrogenation intermediates in cows fed diets containing fish oil.

Piia Kairenius1, Vesa Toivonen, Kevin J Shingfield.   

Abstract

The abundance of 20- to 24-carbon fatty acids in omasal digesta of cows fed grass silage-based diets supplemented with 0 (Control) and 250 g/day of fish oil (FO) was examined to investigate the fate of long-chain unsaturated fatty acids in the rumen. Complimentary argentation thin-layer chromatography and gas-chromatography mass-spectrometry analysis of fatty acid methyl esters and corresponding 4,4-dimethyloxazoline derivatives prepared from fish oil and omasal digesta enabled the structure of novel 20- to 22-carbon fatty acids to be elucidated. Compared with the Control, the FO treatment resulted in the formation and accumulation of 27 novel 20- and 22-carbon biohydrogenation intermediates containing at least one trans double bond and the appearance of cis-14 20:1, 20:2n-3, 21:4n-3 and 22:3n-6 not contained in fish oil. No conjugated ≥ 20-carbon fatty acids were detected in Control or FO digesta. In conclusion, fish oil in the diet results in the formation of numerous long-chain biohydrogenation intermediates in the rumen of lactating cows. Comparison of the intake and flow of 20-, 21- and 22-carbon fatty acids at the omasum in cows fed the Control and FO treatments suggests that the first committed steps of 20:5n-3, 21:5n-3 and 22:6n-3 hydrogenation in the rumen involve the reduction and/or isomerisation of double bonds closest to the carboxyl group.

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Year:  2011        PMID: 21562931     DOI: 10.1007/s11745-011-3561-1

Source DB:  PubMed          Journal:  Lipids        ISSN: 0024-4201            Impact factor:   1.880


  41 in total

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3.  Effect of fish oil on ruminal biohydrogenation of C18 unsaturated fatty acids in steers fed grass or red clover silages.

Authors:  M R F Lee; K J Shingfield; J K S Tweed; V Toivonen; S A Huws; N D Scollan
Journal:  Animal       Date:  2008-12       Impact factor: 3.240

4.  Quantitative analysis of long-chain trans-monoenes originating from hydrogenated marine oil.

Authors:  R Wilson; K Lyall; J A Payne; R A Riemersma
Journal:  Lipids       Date:  2000-06       Impact factor: 1.880

5.  Dynamic features of the rumen metabolism of linoleic acid, linolenic acid and linseed oil measured in vitro.

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Journal:  Lipids       Date:  2007-03-08       Impact factor: 1.880

6.  Effect of incremental amounts of fish oil in the diet on ruminal lipid metabolism in growing steers.

Authors:  K J Shingfield; M R F Lee; D J Humphries; N D Scollan; V Toivonen; C K Reynolds; D E Beever
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7.  Comparison of two gas-liquid chromatograph columns for the analysis of fatty acids in ruminant meat.

Authors:  Susana P Alves; Rui J B Bessa
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9.  Conversion of oleic acid to 10-hydroxystearic acid by two species of ruminal bacteria.

Authors:  J A Hudson; C A MacKenzie; K N Joblin
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10.  Isomers of conjugated linoleic acids are synthesized via different mechanisms in ruminal digesta and bacteria.

Authors:  R John Wallace; Nest McKain; Kevin J Shingfield; Estelle Devillard
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  12 in total

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Authors:  S P Alves; M R G Maia; R J B Bessa; A J M Fonseca; A R J Cabrita
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6.  Biohydrogenation of C20 polyunsaturated fatty acids by anaerobic bacteria.

Authors:  Haruko Sakurama; Shigenobu Kishino; Kousuke Mihara; Akinori Ando; Keiko Kita; Satomi Takahashi; Sakayu Shimizu; Jun Ogawa
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7.  The scope for manipulating the polyunsaturated fatty acid content of beef: a review.

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8.  Detailed dimethylacetal and fatty acid composition of rumen content from lambs fed lucerne or concentrate supplemented with soybean oil.

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9.  Biohydrogenation of 22:6n-3 by Butyrivibrio proteoclasticus P18.

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Review 10.  Supplementation with plant-derived oils rich in omega-3 polyunsaturated fatty acids for lamb production.

Authors:  Don V Nguyen; Bunmi S Malau-Aduli; John Cavalieri; Peter D Nichols; Aduli E O Malau-Aduli
Journal:  Vet Anim Sci       Date:  2018-08-02
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