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      KCI등재 SCIE SCOPUS

      Effects of harvest time and added molasses on nutritional content, ensiling characteristics and in vitro degradation of whole crop wheat

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      https://www.riss.kr/link?id=A105113245

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      다국어 초록 (Multilingual Abstract)

      Objective: Wheat is an alternative to corn silage for ruminant feeding in northern China. This study examined the effects of harvest time and added molasses on nutritional content, ensiling characteristics and in vitro degradation of whole crop wheat ...

      Objective: Wheat is an alternative to corn silage for ruminant feeding in northern China. This study examined the effects of harvest time and added molasses on nutritional content, ensiling characteristics and in vitro degradation of whole crop wheat (WCW).
      Methods: Fresh WCW at the milk-ripe stage was harvested at 0700 h (i.e., in the morning [Mo]) and 1700 h (i.e., in the afternoon [Af]), and then immediately used to prepare silage and make hay. Commercial molasses was added to Af WCW at 0%, 2%, 4%, and 6% (fresh weight) proportions. The WCW treated with molasses was mixed thoroughly prior to ensiling.
      Results: Dry matter (DM), neutral detergent fiber, water soluble carbohydrate (WSC) content (p<0.01), accumulative gas production in 72 h (GP72h, 77.46 mL/g vs 95.15 mL/g) and dry matter disappearance in vitro (69.15% vs 76.77%) were lower (p<0.05), while crude protein (CP) content was higher for WCW silage (WCWS) compared to WCW (p<0.01). The propionic acid and butyric acid concentrations in WCWS from Mo WCW were 1.47% and 0.26%, respectively. However, the propionic and butyric acid concentrations were negligible, while the ammonia nitrogen/total nitrogen (NH3-N/TN, p<0.01) concentration was lower and the rate of gas production at 50% of the maximum (17.05 mL/h vs 13.94 mL/h, p<0.05) was higher for Af WCWS compared to Mo WCWS. The incubation fluid’s NH3-N concentration was lower in WCWS and Af WCW compared to Mo WCW (p<0.05). The CP and WSC content increased with increasing molasses levels (p<0.05). Furthermore, the pH (p<0.01) and time when gas production was 50% of the maximum (2.78 h vs 3.05 h, p<0.05) were lower in silage treated with 4% molasses than silage without molasses.
      Conclusion: Harvesting wheat crops in the afternoon and adding molasses at 4% level to WCW optimally improved ensiling characteristics, leading to well-preserved silage.

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      참고문헌 (Reference)

      1 Nsahlai IV, "The relationships between gas production and chemical composition of 23 browses of the genus Sesbania" 65 : 13-20, 1994

      2 Weinberg ZG, "The quality of commercial wheat silages in Israel" 92 : 638-644, 2009

      3 Menke KH, "The estimation of the digestibility and metabolizable energy content of ruminant feedingstuffs from the gas production when they are incubated with rumen liquor in vitro" 93 : 217-222, 1979

      4 Orskov ER, "The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage" 92 : 499-503, 1979

      5 Baytok E, "The effects of formic acid, molasses and inoculant as silage additives on corn silage composition and ruminal fermentation characteristics in sheep" 29 : 469-474, 2005

      6 Barker SB, "The colorimetric determination of lactic acid in biological material" 138 : 535-554, 1941

      7 McDonald P, "The biochemistry of silage, 2nd edn" Chalcombe Publications 340-, 1991

      8 Bolsen KK, "Silage fermentation and silage additives - review -" 9 : 483-494, 1996

      9 Dolezal P, "Quality of silages and silage additives" 16-20, 2001

      10 Ennahar S, "Phylogenetic diversity of lactic acid bacteria associated with paddy rice silage as determined by 16S ribosomal DNA analysis" 69 : 444-451, 2003

      1 Nsahlai IV, "The relationships between gas production and chemical composition of 23 browses of the genus Sesbania" 65 : 13-20, 1994

      2 Weinberg ZG, "The quality of commercial wheat silages in Israel" 92 : 638-644, 2009

      3 Menke KH, "The estimation of the digestibility and metabolizable energy content of ruminant feedingstuffs from the gas production when they are incubated with rumen liquor in vitro" 93 : 217-222, 1979

      4 Orskov ER, "The estimation of protein degradability in the rumen from incubation measurements weighted according to rate of passage" 92 : 499-503, 1979

      5 Baytok E, "The effects of formic acid, molasses and inoculant as silage additives on corn silage composition and ruminal fermentation characteristics in sheep" 29 : 469-474, 2005

      6 Barker SB, "The colorimetric determination of lactic acid in biological material" 138 : 535-554, 1941

      7 McDonald P, "The biochemistry of silage, 2nd edn" Chalcombe Publications 340-, 1991

      8 Bolsen KK, "Silage fermentation and silage additives - review -" 9 : 483-494, 1996

      9 Dolezal P, "Quality of silages and silage additives" 16-20, 2001

      10 Ennahar S, "Phylogenetic diversity of lactic acid bacteria associated with paddy rice silage as determined by 16S ribosomal DNA analysis" 69 : 444-451, 2003

      11 AOAC, "Official methods of analysis of the AOAC International, 17th edn" 2000

      12 Kilic U, "Nutritive values of whole-crop wheat hay and silage and effect of microbial inoculants on in vitro gas production" 37 : 67-71, 2010

      13 Rezaei J, "Nutritive value of fresh and ensiled amaranth (Amaranthus hypochondriacus) treated with different levels of molasses" 151 : 153-160, 2009

      14 Adamson AH, "Nutritional evaluation of whole-crop wheat;Whole-crop cereals" Chalcombe Publications 85-96, 1992

      15 Kuikui Ni, "Natural Lactic Acid Bacteria Population and Silage Fermentation of Whole-crop Wheat" 아세아·태평양축산학회 28 (28): 1123-1132, 2015

      16 Van-Soest PJ, "Methods for dietary fiber, neutral detergent fiber, and non-starch polysaccharides in relation to animal nutrition" 74 : 3583-3597, 1991

      17 Chamberlain AT, "Feeding the dairy cow, 2nd edition" Chalcombe Publications 2000

      18 Weinberg ZG, "Ensiling whole wheat for ruminant feeding at different stages of maturity" 32 : 313-320, 1991

      19 Williams CC, "Effects of inoculation and wilting on the preservation and utilization of wheat forage" 78 : 1755-1765, 1995

      20 Bal EBB, "Effects of chemical additives and ensiling time on whole plant wheat silage microbial profiles inferred by phenotypic and 16S ribosomal DNA analyses" 28 : 767-776, 2012

      21 Shao T, "Effects of addition of glucose and sorbic acid on the fermentation quality of guineagrass (Panicum maximum Jacq.) silages" 47 : 351-358, 2003

      22 Tong YY, "Effect of simulated solar radiation on mixed outdoor atmospheric bacterial populations" 26 : 311-316, 1998

      23 Broderick GA, "Effect of molasses supplementation on the production of lactating dairy cows fed diets based on alfalfa and corn silage" 87 : 2997-3009, 2004

      24 Lima R, "Effect of combined ensiling of sorghum and soybean with or without molasses and lactobacilli on silage quality and in vitro rumen fermentation" 155 : 122-131, 2010

      25 Tao Shao, "Effect of Additives on the Fermentation Quality and Residual Mono- and Di-saccharides Compositions of Forage Oats (Avena sativa L.) and Italian Ryegrass (Lolium multiflorum Lam.) Silages" 아세아·태평양축산학회 18 (18): 1582-1588, 2005

      26 Chase LE, "Controlling silage quality;Cornell nutrition conference for feed manufacture" 1988

      27 Reponen TA, "Characteristics of airborne actinomycete spores" 64 : 3807-3812, 1998

      28 Broderick GA, "Automated simultaneous determination of ammonia and total amino acids in ruminal fluid and in vitro media" 63 : 64-75, 1980

      29 Fenton MP, "An investigation into the sources of lactic acid bacteria in grass silage" 62 : 181-188, 2008

      30 Weddell JR, "Add-SaFe as a silage additive for big bale silage" 25 : 228-229, 1991

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.03 0.23 0.76
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.6 0.5 0.367 0.04
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