Literature DB >> 25497802

Kinetics of microbial methionine metabolism in continuous cultures administered different methionine sources.

J L Firkins1, C M Fowler2, E Devillard3, B J Bequette4.   

Abstract

The Met precursor 2-hydroxy-4-(methylthio) butanoic acid (HMB) is expected to be more extensively degraded in the rumen than its isopropyl ester (HMBi). A control and 3 isomolar treatments-0.097% dl-methionine, 0.11% HMBi (HMBi), and 0.055% HMBi plus 0.048% Met (Met + HMBi)-were dosed every 8h simultaneously with 3-times-daily feeding into continuous cultures. Starting on d 9, for 6 consecutive doses, both [1-(13)C]-l-Met and [methyl-(2)H3]-l-Met replaced part of the unlabeled dl-Met, [(13)C5]-dl-HMBi replaced a portion of the unlabeled dl-HMBi, and [1-(13)C]-l-Met plus [(13)C5]-dl-HMBi replaced a portion of the respective unlabeled doses for the Met + HMBi treatment. After the sixth dose (d 11), unlabeled Met or HMBi provided 100% of the doses to follow elimination kinetics of the labels in HMBi, free Met, and bacterial Met compartments. The free [1-(13)C]-l-Met recycled more and was recovered in bacterial Met to a lesser extent than was the free [methyl-(2)H3]-l-Met recycling and that was recovered in bacterial Met. Increasing HMBi inclusion (0, 50, and 100% substitution of the exogenously dosed Met on a molar equivalent basis) tended to increase HMBi escape from 54.7 to 71.3% for the 50 and 100% HMBi treatments, respectively. Despite HMBi substituting for and decreasing the dosage of Met, increasing HMBi increased accumulation of free Met in fermenter fluid. The HMBi (after de-esterification of the isopropyl group) presumably produces Met through the intermediate α-ketomethylthyiobutyrate with an aminotransferase that also has high affinity for branched-chain AA. We provide evidence that the HMBi-derived Met is likely released from bacterial cells and accumulates rather than being degraded, potentially as a result of lagging d-stereoisomer metabolism. More research is needed to evaluate racemization and metabolism of stereoisomers of HMBi, Met, and other AA in ruminal microbes.
Copyright © 2015 American Dairy Science Association. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  hydroxymethylthiobutanoic acid; methionine; microbial methionine metabolism

Mesh:

Substances:

Year:  2014        PMID: 25497802     DOI: 10.3168/jds.2014-8694

Source DB:  PubMed          Journal:  J Dairy Sci        ISSN: 0022-0302            Impact factor:   4.034


  5 in total

1.  2-Hydroxy-4-(Methylthio) Butanoic Acid Isopropyl Ester Supplementation Altered Ruminal and Cecal Bacterial Composition and Improved Growth Performance of Finishing Beef Cattle.

Authors:  Xiaoli Qin; Depeng Zhang; Xinjun Qiu; Kai Zhao; Siyu Zhang; Chunlan Liu; Lianqiang Lu; Yafang Cui; Changxiao Shi; Zhiming Chen; Rikang Hao; Yingqi Li; Shunran Yang; Lina Wang; Huili Wang; Binghai Cao; Huawei Su
Journal:  Front Nutr       Date:  2022-05-04

Review 2.  Maximizing efficiency of rumen microbial protein production.

Authors:  Timothy J Hackmann; Jeffrey L Firkins
Journal:  Front Microbiol       Date:  2015-05-15       Impact factor: 5.640

3.  Dynamic Alterations in Yak Rumen Bacteria Community and Metabolome Characteristics in Response to Feed Type.

Authors:  Chang Liu; Hao Wu; Shujie Liu; Shatuo Chai; Qingxiang Meng; Zhenming Zhou
Journal:  Front Microbiol       Date:  2019-05-22       Impact factor: 6.064

4.  Effects of different protein sources on nutrient disappearance, rumen fermentation parameters and microbiota in dual-flow continuous culture system.

Authors:  Hui Mi; Ao Ren; Jinjia Zhu; Tao Ran; Weijun Shen; Chuanshe Zhou; Bin Zhang; Zhiliang Tan
Journal:  AMB Express       Date:  2022-02-10       Impact factor: 3.298

5.  The effects of Clostridium butyricum on Ira rabbit growth performance, cecal microbiota and plasma metabolome.

Authors:  Xiao Xing Ye; Ke Yao Li; Ya Fei Li; Jia Ning Lu; Ping Ting Guo; Hao Yu Liu; Li Wen Zhou; Shuai Shuai Xue; Cai Yun Huang; Shao Ming Fang; Qian Fu Gan
Journal:  Front Microbiol       Date:  2022-09-29       Impact factor: 6.064

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.