• 제목/요약/키워드: RP data

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Nutrient Utilization, Body Composition and Lactation Performance of First Lactation Bali Cows (Bos sondaicus) on Grass-Legume Based Diets

  • Sukarini, I.A.M.;Sastradipradja, D.;Sutardi, T.;Mahardika, IG.;Budiarta, IG.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권12호
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    • pp.1681-1690
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    • 2000
  • A study on energy and protein utilization, and milk production of Bali cows on grass-legume diets was carried out using 12 first lactation cows (initial BW $263.79{\pm}21.66kg$) during a period of 16 weeks starting immediately post calving. The animals were randomly allotted into 4 dietary treatment groups R1, R2, R3 and R4, receiving from the last 2 months of pregnancy onwards, graded improved rations based on a mixture of locally available grass and legume feed ad libitum. R1 contained on a DM basis 70% elephant grass (PP, Penisetum purpureum) plus 30% Gliricidia sepia leaves (GS), R2 was 30% PP plus 55% GS supplemented with 15% Hibiscus tilliactus leaves (HT, defaunating effect), R3 and R4 were 22.5% PP+41.25% GS+11.25% HT+25% concentrate, where R3 was not and R4 supplemented with zinc di-acetate. TDN, CP and zinc contents of the diets were 58.2%, 12.05% and 18.3 mg/kg respectively for R1, 65.05%, 16.9% and 25.6 mg/kg respectively for R2, 66.03%, 16.71% and 29.02 mg/kg respectively for R3 and 66.03%, 16.71% and 60.47 mg/kg respectively for R4. Milk production and body weight were monitored throughout the experimental period. In vivo body composition by the urea space technique validated by the body density method and supported by carcass data was estimated at the start and termination of the experiment. Nutrient balance and rumen performance characteristics were measured during a balance trial of 7 days during the 3rd and 4th week of the lactation period. Results indicated that quality of ration caused improvement of ruminal total VFA concentration, increments being 52 to 65% for R2, R3 and R4 above R1, with increments of acetate being less (31 to 48%) and propionate being proportionally more in comparison to total VFA increments. Similarly, ammonia concentrations increased to 5.24 to 7.07 mM, equivalent to 7.34 to 9.90 mg $NH_3-N/100ml$ rumen fluid. Results also indicated that feed quality did not affect DE and ME intakes, and heat production (HP), but increased GE, UE, energy in milk and total retained energy (RE total) in body tissues and milk. Intake-, digestible- and catabolized-protein, and retained-protein in body tissues and milk (Rprot) were all elevated increasing the quality of ration. Similar results were obtained for milk yield and components with mean values reaching 2.085 kg/d (R4) versus 0.92 kg/d (R1) for milk yield, and 170.22 g/d (R4) vs 71.69 g/d (R1), 105.74 g/d (R4) vs 45.35 g/d (R1), 101.34 g/d (R4) vs 46.36 g/d (R1) for milk-fat, -protein, and -lactose, respectively. Relatively high yields of milk production was maintained longer for R4 as compared to the other treatment groups. There were no significant effects on body mass and components due to lactation. From the relationship $RE_{total}$ (MJ/d)=12.79-0.373 ME (MJ/d); (r=0.73), it was found that $ME_{m}=0.53MJ/kgW^{0.75}.d$. Requirement of energy to support the production of milk, ranging from 0.5 to 3.0 kg/d, follows the equation: Milk Prod. ($Q_{mp}$, kg/d)=[-2.48+4.31 ME($MJ/kg^{0.75}.d$)]; (r=0.6) or $Q_{mp}$=-3.4+[0.08($ME-RE_{body\;tissue}$)]MJ/d]; (r=0.94). The requirement for protein intake for maintenance ($IP_m$) equals $6.19 g/kg^{0.75}.d$ derived from the relationship RP=-47.4+0.12 IP; (r=0.74, n=9). Equation for protein requirement for lactation is $Q_{nl}$=[($Q_{mp}$)(% protein in milk)($I_{mp}$)]/100, where $Q_{nl}$ is g protein required for lactation, $Q_{mp}$ is daily milk yield, Bali cow's milk-protein content av. 5.04%, and $I_{mp}$ is metabolic increment for milk production ($ME_{lakt}/ME_{m}=1.46$).

비타민 A 보충 식이 및 에탄올의 만성적 급여가 흰쥐의 체내 산화적 손상과 항산화체계에 미치는 영향 (Effect of Dietary Supplementation of Vitamin A and Chronic Consumption of Ethanol on Oxidative Damage and Antioxidant System in Rats)

  • 양경미
    • 한국식품영양과학회지
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    • 제32권2호
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    • pp.278-286
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    • 2003
  • 본 연구는 에탄올을 급여하는 동안 일어나는 지질과산화에 의한 간 손상과 이에 대하여 $\beta$-carotene, retinyl acetate, 13-cis-retinoic acid의 효과를 비교ㆍ검토하고자 실시되었다. 혈 장내 MDA 함량은 에탄올 급여군 중 비타민 A를 결핍시킨 FE군과 $\beta$-carotene을 공급한 DE군에서는 감소되지 않았으나, retinyl acetate와 13-cis-retinoic acid 공급시킨 RE군과 RAE군에서 감소되었다. 간 미토콘드리아내 MDA함량은 에탄을 급여군 중 FE군과 $\beta$E군에서 높은 함량을 보인데 반해 RE군과 RAE군에서는 낮은 수준을 보였다. 에탄올 비급여군인 pair-fed군중에서는 비타민 A를 결핍시킨 FP 군에 비해 $\beta$-carotene과 retinyl acetate를 각각 공급한 5P와 RP군의 MDA 함량은 감소하였는데 반해 retinoic acid를 공급한 RAP군의 MPA 수준은 차이를 보이지 않았다. 혈장내 AP 활성도는 에탄올과 함께 $\beta$-carotene과 retinoic acid를 공급시킨 군에서 각각의 pair-fed군에 비하여 높은 활성도를 보였으며 간 마이크로솜내 G6P 활성도는 에탄올 급여군 중 비타민 A 결핍군만 pair-fed군에 비해 유의적으로 감소되었으며 비타민 A를 보충시켰을 때에는 활성도가 증가되었다. 간 사이토졸내 SOD 활성도는 에탄을 급여와 함께 비타민 A를 결핍시킨 군에 비해 13-ciz-retinoic acid을 공급시킨 군이 가장 높았으며 Pair-fed 군 중에서는 retiny acetate 공급군에서 가장 낮은 높은 활성도를 보였다. 간 사이토졸내 GSH-Px 활성도는 에탄올 급여군과 pair-fed 군 사이에 일정한 경향은 없었으며 간 사이토졸네 GST 활성도는 에탄올 급여군 중 $\beta$-carotene과 retinyl acetate 공급군이 각각의 pair-fed군에 비해 증가되었다. 간조직내 $\beta$-carotene함량은 $\beta$-carotene, 공급군에서만 검출되었고 에탄을 급여군이 pair-fed군에 비해 6배정도 높은 함량을 보였으며 혈장과 간조직 내 retinol 함량은 에탄올 급여로 낮은 함량을 보였으나 비타민 A형태 중 retinyl acetate 공급군이 가장 높았다. 간조직 내 retinoic acid 함량은 에탄을 급여군 중 $\beta$-carotene과 retinyl acetate 공급군이 각각의 Pair-fed 군에 비해 유의적인 감소를 보였다. 상기 연구 결과를 보면 에탄올 급여로 지질과 산화물 함량이 증가되고 관련 항산화 효소계의 활성도 변화로 보아 간 손상에 지질과산화 반응이 관여된 것으로 보여 지며 에탄올의 영향에 대한 비타민 A의 효과에는 retiny1 acetate가 항산화제로 작용하여 간조직의 급격한 손상을 효율적으로 경감시킬 수 있는 것으로 나타났다.