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- W125403701 abstract "Publisher Summary Ammonia has been recognized as both a rumen fermentation product and a substrate for microbial growth for more than 40 years. Nonprotein nitrogen sources such as urea are rapidly converted to rumen ammonia, but much of the ruminal ammonia arises from the fermentation of dietary protein. Large quantities can accumulate because the production rate of ammonia often exceeds the capacity of ammonia-utilizing species. Excess ammonia is absorbed across the rumen wall and is converted to urea. There is considerable interest in reducing ruminal protein degradation as proteins are the most expensive ingredient in ruminant diets. Protein degradation is a multistep process involving solubilization, extracellular hydrolysis, transport, deamination, and the formation of end products. It has been observed that (1) there are large differences in the amounts of nitrogen that can be precipitated from ruminal fluid by trichloroacetic and tungstic acids, (2) mixed cultures produces more ammonia than the best ammonia-producing isolates, and (3) ionophores decrease ammonia production as they have less effect on the most active ammonia-producing ruminal bacteria." @default.
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- W125403701 date "1991-01-01" @default.
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- W125403701 title "Ruminal Protein Fermentation: New Perspectives on Previous Contradictions" @default.
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- W125403701 doi "https://doi.org/10.1016/b978-0-12-702290-1.50034-5" @default.
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