• Title/Summary/Keyword: Zn-methione

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Effect of Bromelain and Zn-Methionine on Milk Yield and Somatic Cell Counts of Dairy Cows (Bromelain과 Zn-Methionine 혼합 급여가 젖소의 산유량 및 체세포수에 미치는 영향)

  • Jeong, Yu-Jin;Kim, Yong-Kook
    • Korean Journal of Agricultural Science
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    • v.34 no.2
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    • pp.135-142
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    • 2007
  • Holstein cows(n=8) were assigned to control diet(n=4) and treatment diet(n=4) containing products of Bromelain(50g/kg) and Zn-methionine (133g/kg). Basal diet was mixed as total mixed rations with 60% concentrate and 40% roughage(rice straw) and fed for 8 weeks. The milk production, somatic cell counts in milk were measured and determined. The results were summarized as follow. Average milk production was higher for cows fed treatment diet(30.2kg/d) than cows fed control diet(29.6kg/d) (P<0.05). The somatic cell counts was significantly lower for cows fed treatment diet ($179.8{\times}10^3/ml$) than cows fed control diet ($260.8{\times}10^3/ml$)(P<0.05). In conclusion, supplementation of both Bromelain and Zn-methionine increased milk production and reduced somatic cell counts in milk.

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Meat Quality and Nutritional Properties of Hanwoo and Imported Australian Beef (한우고기와 호주산 냉장수입육의 육질 및 영양성분 비교)

  • Cho, Soo-Hyun;Seong, Pil-Nam;Kang, Geun-Ho;Park, Beom-Young;Jung, Seok-Geun;Kang, Sun-Moon;Kim, Young-Chun;Kim, Jong-In;Kim, Dong-Hun
    • Food Science of Animal Resources
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    • v.31 no.5
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    • pp.772-781
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    • 2011
  • This study was conducted to investigate the proximate composition, meat color, Warner-Bratzler shear force (WBS), total collagen content (%), cooking loss (CL), fatty acid composition, amino acid composition, and mineral content of loin, strip loin, top round, and chuck tender Hanwoo beef and imported Australian beef. Protein content was significantly lower for strip loin and loin of Hanwoo QG $1^+$ and 1 beef when compared to that of Australian black Angus or cross beef (p < 0.05), whereas it was not significantly different for top round and chuck tender. Intramuscular fat content was higher for QG $1^+$ Hanwoo beef strip loin (15.48%) than that in Australian cross beef (8.83%) and it was also higher in loin for QG $1^+$ (17%) and 1 (15.52%) Hanwoo beef than that in Australian Angus beef (10.59%) and cross beef (9.21%) (p < 0.05). The CIE $L^*$ value was significantly higher for Australian cross beef strip loin than that of Hanwoo beef but the CIE $a^*$ value was not significantly different between the same cuts from different origins. However, CIE $b^*$ values were significantly higher for the Australian cross beef than those for four cuts of Hanwoo beef and Australian Angus beef (p < 0.05). No significant difference in WBS of loin, top round, or chuck tender was observed among the different beef sample origins except that strip loin had significant higher WBS for Australian cross beef (3.02 kg) but lower for Australian Angus beef (2.13 kg). Australian cross beef contained significantly higher palmitic acid, stearic acid, linolenic acid, but lower palmitoleic acid, oleic acid, eicosenoic acid content in strip loin, loin, and top round than those of QG $1^+$ and 1 Hanwoo beef (p < 0.05). QG $1^+$ Hanwoo beef had significant lower saturated fatty acid and higher monounsaturated fatty acid content than those in Australian cross beef (p < 0.05). Hanwoo $1^+$ beef had more glycine in top round and chuck tender, whereas Hanwoo QG 1 beef and Australian Angus beef had higher cysteine, methione, and glycine levels in strip loin and loin and valine and leucine in top round and chuck tender than the same cuts of Hanwoo $1^+$ beef (p < 0.05). No significant differences were observed for Ca, Fe, or Zn content among the different beef samples.