Asian-Australasian Journal of Animal Sciences · 2014 · 44 citations · 26 references
Chemical CompositionGrain QualityBarley ForageFood ChemistryAgricultural ChemistryBiochemical EngineeringFood MicrobiologyMicrobial EcologyFood AdditiveHealth SciencesFood FermentationIn Vitro FermentationFermentation CharacteristicsBiomanufacturingFermentation IndicesMicrobial AdditivesFood BioprocessingMicrobiologyMedicine
This study examined the effects of bacterial inoculants on chemical composition and fermentation indices of barley silage. Barley forage (Youngyang) was harvested at 24% dry matter (DM) and wilted to 47.9% DM. The wilted barley forage was chopped to 3-5 cm length and applied with no inoculant (CON), L. plantarum (1×10(10) cfu/g, LP) or Effective Microorganisms (0.5×10(9) cfu/g, EM). Then the forages were ensiled in four replications for each treatment in 20 L mini silos and stored for 100 days. The contents of crude protein and ether extract were higher in CON silage ensiled for 100-d, while the contents of DM and crude ash were higher in EM silage (p<0.05). The contents of ADF, NDF and hemicellulose as well as the in vitro DM digestibility were not affected by microbial inoculation (p>0.05). The pH, ammonia-N concentration and lactate to acetate ratio were higher (p<0.05) in CON silage, while lactate concentrations were higher (p<0.05) in CON and LP silage. Acetate concentration and lactic acid bacteria was increased (p<0.05) by both inoculants (LP and EM), but propionate concentration and yeast was increased (p<0.05) by EM and LP, respectively. These results indicated that the fermentation quality of barley silage was improved by the application of bacterial inoculants.
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Official Methods of Analysis of
Analytical Chemistry · 1980 · 59.5K citations
A TWO‐STAGE TECHNIQUE FOR THE <i>IN VITRO</i> DIGESTION OF FORAGE CROPS
J. M. A. Tilley, R. A. Terry · Grass and Forage Science · 1963 · 6.5K citations
Nutrition, Engineering, Botany +17