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Effect of Aspergillus oryzae fermentation extract (Amaferm) on in vitro fiber degradation
1Department of Animal Science and Industry, Kansas State University, Manhattan 66506-1600.
Abstract:
The influence of Aspergillus oryzae fermentation extract (Amaferm) on in vitro fiber degradation was determined by incubating eight ground fibrous feed-stuffs with rumen fluid and buffer inoculum. Amaferm was added at 0, .4, .8, or 1.2 g/L of fermentation mixture. Both NDF and ADF degradabilities were determined after 96 h of incubation. Addition of extract had no effect on NDF or ADF degradability of pure cellulose, low endophyte fescue, wheat straw, corn silage, or prairie hay. Addition of Amaferm at .8 or 1.2 g/L increased NDF and ADF degradations of bromegrass hay and alfalfa hay; its addition at .4 or .8 g/L, but not at 1.2 g/L, increased NDF and ADF degradation of high endophyte fescue hay. In a second set of in vitro fermentations, selective antimicrobials (penicillin, streptomycin, and cycloheximide) were used to assess the influence of Amaferm on various microbial groups. The enhanced fiber degradation by Amaferm was attributed to its stimulation of bacterial activity because its addition to whole rumen fluid without or with cycloheximide increased fiber digestion. In contrast, addition of Amaferm to the whole rumen fluid plus penicillin and streptomycin treatment had no effect on fiber degradation, suggesting that fungal or protozoal activity was not affected by treatment. In conclusion, Amaferm increased fiber digestibility of certain feedstuffs, and the increase was mediated via stimulation of rumen bacterial, but not fungal or protozoal, activities.
Insights
Aspergillus oryzae fermentation extract (Amaferm) improved fiber degradation in certain hays by stimulating rumen bacteria. This effect was specific to bacterial activity, not fungal or protozoal.
Area of Science:
- Animal Science
- Microbiology
- Nutritional Science
Background:
- Rumen microorganisms are crucial for fiber degradation in ruminants.
- Understanding feed additives that enhance microbial function is vital for animal nutrition.
Purpose of the Study:
- To investigate the effect of Aspergillus oryzae fermentation extract (Amaferm) on in vitro fiber degradation.
- To determine the microbial groups responsible for Amaferm-mediated fiber digestion enhancement.
Main Methods:
- In vitro incubation of eight fibrous feedstuffs with rumen fluid and Amaferm at varying concentrations.
- Measurement of neutral detergent fiber (NDF) and acid detergent fiber (ADF) degradability after 96 hours.
- Use of selective antimicrobials (penicillin, streptomycin, cycloheximide) to differentiate microbial contributions.
Main Results:
- Amaferm increased NDF and ADF degradability in bromegrass hay, alfalfa hay, and high endophyte fescue hay at specific concentrations.
- Amaferm addition to whole rumen fluid, with or without cycloheximide, enhanced fiber digestion.
- Amaferm did not affect fiber degradation when added to rumen fluid treated with penicillin and streptomycin.
Conclusions:
- Aspergillus oryzae fermentation extract (Amaferm) enhances fiber digestibility in specific feedstuffs.
- The positive effect of Amaferm is mediated by the stimulation of rumen bacterial activity.
- Amaferm does not appear to influence rumen fungal or protozoal activity regarding fiber digestion.