Literature DB >> 28888612

Evaluation of a gas in vitro system for predicting methane production in vivo.

Rebecca Danielsson1, Mohammad Ramin2, Jan Bertilsson3, Peter Lund4, Pekka Huhtanen5.   

Abstract

Methane production from ruminant livestock varies with the diet as a result of factors such as dry matter intake, diet composition, and digestibility. To estimate the effect of dietary composition and feed additives, CH4 production can be measured in vitro as a first step because large numbers of samples can be incubated and analyzed at the same time. This study evaluated a recently developed in vitro method for prediction of in vivo CH4 production by examining the relationship between predicted and observed CH4 production values. A total of 49 different diets (observations), used in previous 13 in vivo studies, were selected to include diets varying in nutrient composition. Methane production was measured in all in vivo studies by respiration chambers or the GreenFeed system (C-Lock Inc., Rapid City, SD). Overall, the in vitro system predicted CH4 production well (R2 = 0.96), but the values obtained were slightly underestimated compared with observed in vivo values (mean 399 L/d compared with 418 L/d: root mean square prediction error = 51.6 L/d or 12.3% of observed mean). Further analysis of the effect on residuals showed no significant relationship between CH4 production and most factors known to affect CH4 production such as dry matter intake, digestibility, and dietary concentrations of fat and starch. However, some factors included in the model were not well predicted by the system, with residuals negatively related to neutral detergent fiber concentration and positively related to concentrate proportion. The in vitro system can thus be useful for screening diets and evaluation of feed additives as a first step that can be best interpreted when feeding cows at maintenance level. The Authors. Published by the Federation of Animal Science Societies and Elsevier Inc. on behalf of the American Dairy Science Association®. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).

Entities:  

Keywords:  in vitro; in vivo; predicting methane production

Mesh:

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Year:  2017        PMID: 28888612     DOI: 10.3168/jds.2017-12675

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


  5 in total

1.  Interaction between feed use efficiency and level of dietary crude protein on enteric methane emission and apparent nitrogen use efficiency with Norwegian Red dairy cows1.

Authors:  Alemayehu Kidane; Margareth Øverland; Liv Torunn Mydland; Egil Prestløkken
Journal:  J Anim Sci       Date:  2018-09-07       Impact factor: 3.159

Review 2.  Quantification of methane emitted by ruminants: a review of methods.

Authors:  Luis Orlindo Tedeschi; Adibe Luiz Abdalla; Clementina Álvarez; Samuel Weniga Anuga; Jacobo Arango; Karen A Beauchemin; Philippe Becquet; Alexandre Berndt; Robert Burns; Camillo De Camillis; Julián Chará; Javier Martin Echazarreta; Mélynda Hassouna; David Kenny; Michael Mathot; Rogerio M Mauricio; Shelby C McClelland; Mutian Niu; Alice Anyango Onyango; Ranjan Parajuli; Luiz Gustavo Ribeiro Pereira; Agustin Del Prado; Maria Paz Tieri; Aimable Uwizeye; Ermias Kebreab
Journal:  J Anim Sci       Date:  2022-07-01       Impact factor: 3.338

3.  Enteric and Fecal Methane Emissions from Dairy Cows Fed Grass or Corn Silage Diets Supplemented with Rapeseed Oil.

Authors:  Mohammad Ramin; Juana C Chagas; Hauke Smidt; Ruth Gomez Exposito; Sophie J Krizsan
Journal:  Animals (Basel)       Date:  2021-05-05       Impact factor: 2.752

4.  In Vitro Evaluation of Different Dietary Methane Mitigation Strategies.

Authors:  Juana C Chagas; Mohammad Ramin; Sophie J Krizsan
Journal:  Animals (Basel)       Date:  2019-12-11       Impact factor: 2.752

5.  Condensed Tannins in White Clover (Trifolium repens) Foliar Tissues Expressing the Transcription Factor TaMYB14-1 Bind to Forage Protein and Reduce Ammonia and Methane Emissions in vitro.

Authors:  Marissa B Roldan; Greig Cousins; Stefan Muetzel; Wayne E Zeller; Karl Fraser; Juha-Pekka Salminen; Alexia Blanc; Rupinder Kaur; Kim Richardson; Dorothy Maher; Zulfi Jahufer; Derek R Woodfield; John R Caradus; Christine R Voisey
Journal:  Front Plant Sci       Date:  2022-01-06       Impact factor: 5.753

  5 in total

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