• 제목/요약/키워드: Urea-ammonia Treatment

검색결과 96건 처리시간 0.017초

Effects of Three Feeding Systems on Production Performance, Rumen Fermentation and Rumen Digesta Particle Structure of Beef Cattle

  • Liu, Y.F.;Sun, F.F.;Wan, F.C.;Zhao, H.B.;Liu, X.M.;You, W.;Cheng, H.J.;Liu, G.F.;Tan, X.W.;Song, E.L.
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권5호
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    • pp.659-665
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    • 2016
  • The effects of three different feeding systems on beef cattle production performance, rumen fermentation, and rumen digesta particle structure were investigated by using 18 Limousin (steers) with a similar body weight ($575{\pm}10kg$) in a 80-d experiment. The animals were equally and randomly divided into three treatment groups, namely, total mixed ration group (cattle fed TMR), SI1 group (cattle fed concentrate firstly then roughage), and SI2 group (cattle fed roughage firstly then concentrate). The results showed that the average daily gain was significantly higher in cattle receiving TMR than in those receiving SI1 and SI2 (p<0.05). Consumption per kg weight gain of concentrate, silage, and combined net energy (NEmf) were significantly decreased when cattle received TMR, unlike when they received SI1 and SI2 (p<0.05), indicating that the feed efficiency of TMR was the highest. Blood urea nitrogen (BUN) was significantly decreased when cattle received TMR compared with that in cattle receiving SI1 (p<0.05), whereas there was no difference compared with that in cattle receiving SI2. Ammonia nitrogen concentration was significantly lower in cattle receiving TMR than in those receiving SI1 and SI2 (p<0.05). The rumen area of cattle that received TMR was significantly larger than that of cattle receiving SI1 (p<0.05), but there was no difference compared with that of cattle receiving SI2. Although there was no significant difference among the three feeding systems in rumen digesta particle distribution, the TMR group trended to have fewer large- and medium-sized particles and more small-sized particles than those in the SI1 and SI2 groups. In conclusion, cattle with dietary TMR showed increased weight gain and ruminal development and decreased BUN. This indicated that TMR feeding was more conducive toward improving the production performance and rumen fermentation of beef cattle.

Evaluation of Coarsely Ground Wheat as a Replacement for Ground Corn in the Diets of Lactating Dairy Cows

  • Guo, Y.Q.;Zou, Y.;Cao, Z.J.;Xu, X.F.;Yang, Z.S.;Li, Shengli
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권7호
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    • pp.961-970
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    • 2013
  • Eight multiparous Holstein cows ($569{\pm}47$ kg of BW; $84{\pm}17$ DIM) were used to evaluate the effects of different levels of coarsely ground wheat (CGW) as replacements for ground corn (GC) in diets on feed intake and digestion, ruminal fermentation, lactation performance, and plasma metabolites profiles in dairy cows. The cows were settled in a replicated $4{\times}4$ Latin square design with 3-wk treatment periods; four cows in one of the replicates were fitted with rumen cannulas. The four diets contained 0, 9.6, 19.2, and 28.8% CGW and 27.9, 19.2, 9.6, and 0% GC on dry matter (DM) basis, respectively. Increasing dietary levels of CGW, daily DM intake tended to increase quadratically (p = 0.07); however, apparent digestibility of neutral detergent fiber (NDF) and acid detergent fiber (ADF) were significantly decreased (p<0.01) in cows fed the 28.8% CGW diets. Ruminal pH remained in the normal physiological range for all dietary treatments at all times, except for the 28.8% CGW diets at 6 h after feeding; moreover, increasing dietary levels of CGW, the daily mean ruminal pH decreased linearly (p = 0.01). Increasing the dietary levels of CGW resulted in a linear increase in ruminal propionate (p<0.01) and ammonia nitrogen ($NH_3$-N) (p = 0.06) concentration, while ruminal acetate: propionate decreased linearly (p = 0.03) in cows fed the 28.8% CGW diets. Milk production was not affected by diets; however, percentage and yield of milk fat decreased linearly (p = 0.02) when the level of CGW was increased. With increasing levels of dietary CGW, concentrations of plasma beta-hydroxybutyric acid (BHBA) (p = 0.07) and cholesterol (p<0.01) decreased linearly, whereas plasma glucose (p = 0.08), insulin (p = 0.02) and urea nitrogen (p = 0.02) increased linearly at 6 h after the morning feeding. Our results indicate that CGW is a suitable substitute for GC in the diets of dairy cows and that it may be included up to a level of 19.2% of DM without adverse effects on feed intake and digestion, ruminal fermentation, lactation performance, and plasma metabolites if the cows are fed fiber-sufficient diets.

Effect of Carbohydrate Sources and Levels of Cotton Seed Meal in Concentrate on Feed Intake, Nutrient Digestibility, Rumen Fermentation and Microbial Protein Synthesis in Young Dairy Bulls

  • Wanapat, Metha;Anantasook, N.;Rowlinson, P.;Pilajun, R.;Gunun, P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권4호
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    • pp.529-536
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    • 2013
  • The objective of this study was to investigate the effect of levels of cottonseed meal with various carbohydrate sources in concentrate on feed intake, nutrient digestibility, rumen fermentation and microbial protein synthesis in dairy bulls. Four, 6 months old dairy bulls were randomly assigned to receive four dietary treatments according to a $2{\times}2$ factorial arrangement in a $4{\times}4$ Latin square design. Factor A was carbohydrate source; cassava chip (CC) and cassava chip+rice bran in the ratio of 3:1 (CR3:1), and factor B was cotton seed meal levels in the concentrate; 109 g CP/kg (LCM) and 328 g CP/kg (HCM) at similar overall CP levels (490 g CP/kg). Bulls received urea-lime treated rice straw ad libitum and were supplemented with 10 g of concentrate/kg BW. It was found that carbohydrate source and level of cotton seed meal did not have significant effects on ruminal pH, ammonia nitrogen concentration, microbial protein synthesis or feed intake. Animals which received CC showed significantly higher BUN concentration, ruminal propionic acid and butyric acid proportions, while dry matter, organic matter digestibility, populations of total viable bacteria and proteolytic bacteria were lower than those in the CR3:1 treatment. The concentration of total volatile fatty acids was higher in HCM than LCM treatments, while the concentration of butyric acid was higher in LCM than HCM treatments. The population of proteolytic bacteria with the LCM treatments was higher than the HCM treatments; however other bacteria groups were similar among the different levels of cotton seed meal. Bulls which received LCM had higher protein digestibility than those receiving HCM. Therefore, using high levels of cassava chip and cotton seed meal might positively impact on energy and nitrogen balance for the microbial population in the rumen of the young dairy bull.

한우 복강 및 피하지방 감소 다클론 항체가 반추위 발효패턴 및 혈액 대사물질에 미치는 영향 (Effects of Polyclonal Antibodies to Abdominal and Subcutaneous Adipocytes on Ruminal Fermentation Patterns and Blood Metabolites in Korean Native Steers)

  • 최창원;백경훈;김성진;오영균;홍성구;권응기;송만강;최창본
    • Journal of Animal Science and Technology
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    • 제51권3호
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    • pp.231-240
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    • 2009
  • 본 연구는 반추위 캐뉼라가 장착된 거세한우 16두 ($626.2\pm47.72$ kg)를 이용하여 한우 복강 및 피하지방 감소 항체를 생체 주사 처리 시 사료섭취량, 반추위 발효패턴 및 혈액 대사물질 등 영양생리대사에 미치는 영향을 조사하고자 실시하였다. Choi 등(2008)에서 개발된 한우복강(AAb) 및 피하지방 감소 항체(SAb)을 피하 주사하였을 때, 주사 후 2주차에서 수치적으로 체중의 감소가 발생했으나, 무처리구 및 비면역항체처리구에서도 체중의 감소가 발생해 항체 주사에 의한 처리의 영향이라기 보다는 다른 요인(혈액채취 등)에 의한 스트레스에서 기인하는 것으로 판단된다. 항체 주사 처리 시 반추위 pH 패턴, 휘발성 지방산 및 암모니아 농도에는 유의적 변화(P > 0.05)가 나타나지 않았고, 그 수준 또한 일반적인 수준 범위에서 벗어나지 않았다. 혈액 대사물질의 변화에서는 항체 주사 처리 전 BUN 농도에서 무처리구 기준, AAb 처리구는 낮게, 반면에 SAb 처리구는 높게 나타났으나(P < 0.05), 오히려 항체 주사 처리 후에서 유의적 차이가 나타나지 않았다(P > 0.05). 혈액 내 glucose 농도 역시 항체 주사 처리 전 비면역혈청처리구에서만 유의적 차이를 보였고(P < 0.05), 항체 주사 처리 후에서는 처리구별 유의적 영향은 없었다. 혈액 내 중성지방의 농도는 항체 주사 처리에 의한 유의적 차이는 나타나지 않았고, 그 농도도 11.4~19.9 mg/$d{\ell}$로 일반적인 농후사료 위주의 사료 급여시 거세한우의 혈액 내 중성지방의 수준으로 판단되었다. 따라서, 이상의 결과를 볼 때, 본 연구에서 이용된 AAb 및 SAb는 in vivo 영양생리대사에 부정적 영향을 미치지 않는 안전한 항체로 사료된다.

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 ($ME_{lakt}/ME_{m}=1.46$).

비섬유탄수화물과 반추위분해단백질의 다른 비율이 In Vitro 발효와 젖소의 산유성적에 미치는 영향 (Effects of Different Ratios of Nonfibrous Carbohydrate to Ruminally Degradable Protein on In Vitro Fermentation and Lactation Performance of Dairy Cows)

  • 서인준;이도형;이성훈
    • Journal of Animal Science and Technology
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    • 제47권4호
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    • pp.625-636
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    • 2005
  • 본 연구는 비섬유탄수화물(NFC)과 반추위분 해단백질(RDP)을 젖소사료에 다양하게 배합하여 NFC : RDP의 비율을 3.5, 3.0 및 2.5로 다양하게 조정하였을 때, in vitro 발효성상 및 젖소의 산유성적에 미치는 영향을 조사하여 적정 NFC : RDP비율을 결정하고자 실시하였다. In vitro 발효시험은 반추위 cannulae가 장착된 Holstein 젖소로부터 반추위액을 얻어 3, 6, 9, 12시간 동 안 배양하였다. 반추위내 pH는 NFC비율이 증가함에 따라 유의한 영향을 받지 않았고, 암모 니아질소농도는 배양 6시간까지 처리군간에 유의한 차이가 나타나지 않았으나, 9시간과 12 시간에서는 NFC : RDP비율이 증가함에 따라 유의하게 감소하였다(P < 0.05). 휘발성지방산생산 량은 acetate 및 propionate농도가 발효 3시간에 NFC함량이 증가함에 따라 유의하게 증가하였 으나(P < 0.05), 나머지 시간대에서는 유의차가 나타나지 않았다. Valerate 및 A : P비율은 NFC : RDP비율에 의하여 영향을 받지 않았고, iso- acids 및 총 휘발성지방산은 전반적으로 NFC함 량이 증가함에 따라 유의하게 증가하였으며(P < 0.05), 3.0비율구가 가장 높은 값을 나타내었다(P < 0.01). 한편, 사양시험은 18 두의 착유우를 공시하여 처리구당 6 두씩 배치하여 총 24주간 실시하였 다. 건물 및 에너지섭취량은 NFC : RDP비율이 증가함에 따라 유의하게 증가하였고(P < 0.01), 섬 유소섭취량은 NFC : RDP비율이 감소함에 따라 직선적으로 증가하였다(P < 0.01). 산유량은 3.5(32.7 kg)비율구가 다른 처리구보다 유의하게 높았다(P < 0.05). 유지방율은 3.0(3.79 %) 및 2.5(3.79 %)비율구가 3.5(3.48 %)비율구보다 유의하 게 높았고(P < 0.05), 유지방생산량은 처리구간 에 차이가 나타나지 않았다. 유단백질과 무지 고형분은 NFC : RDP비율이 증가함에 따라 직선 적으로 증가하였다(P < 0.01). 그러나 우유중 요소태질소농도는 NFC함량이 증가함에 따라 유 의하게 감소하였다(P < 0.05). 이상의 결과로부터 사료내 증가하는 수준의 NFC는 반추위발효, 질소이용효율 및 산유량을 향상시켰고, 사료중 NFC : RDP비율이 3.0이상일 때 반추위발효뿐만 아니라 산유성적이 최대화되는 것으로 나타났다.