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Position: Home > Articles > Dynamics of methanogenesis, ruminal fermentation and fiber digestibility in ruminants following elimination of protozoa: a meta-analysis Journal of Animal Science and Biotechnology 2018,9

Dynamics of methanogenesis, ruminal fermentation and fiber digestibility in ruminants following elimination of protozoa: a meta-analysis

作  者:
Zongjun Li;Qi Deng;Yangfan Liu;Tao Yan;Fĕi Li;Yangchun Cao;Junhu Ya
单  位:
College of Pastoral Agricultural Science and Technology, Lanzhou University, Lanzhou, China;College of Animal Science and Technology, Northwest A&F University, Yangling, China;College of Animal Science and Technology, Northwest A&F University, Yangling, Chin; State Key Laboratory of Genetic Resources and Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China
关键词:
Defaunation;Fiber digestibility;Meta-analysis;Methane production;Rumen fermentatio
摘  要:
BackgroundRuminal microbes are vital to the conversion of lignocellulose-rich plant materials into nutrients for ruminants. Although protozoa play a key role in linking ruminal microbial networks, the contribution of protozoa to rumen fermentation remains controversial; therefore, this meta-analysis was conducted to quantitatively summarize the temporal dynamics of methanogenesis, ruminal volatile fatty acid (VFA) profiles and dietary fiber digestibility in ruminants following the elimination of protozoa (also termed defaunation). A total of 49 studies from 22 publications were evaluated.ResultsThe results revealed that defaunation reduced methane production and shifted ruminal VFA profiles to consist of more propionate and less acetate and butyrate, but with a reduced total VFA concentration and decreased dietary fiber digestibility. However, these effects were diminished linearly, at different rates, with time during the first few weeks after defaunation, and eventually reached relative stability. The acetate to propionate ratio and methane production were increased at 7 and 11 wk after defaunation, respectively.ConclusionsElimination of protozoa initially shifted the rumen fermentation toward the production of more propionate and less methane, but eventually toward the production of less propionate and more methane over time.
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