• 제목/요약/키워드: In Vitro Degradability

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Microencapsulation of Mitragyna leaf extracts to be used as a bioactive compound source to enhance in vitro fermentation characteristics and microbial dynamics

  • Maharach Matra;Srisan Phupaboon;Pajaree Totakul;Ronnachai Prommachart;Assar Ali Shah;Ali Mujtaba Shah;Metha Wanapat
    • Animal Bioscience
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    • 제37권1호
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    • pp.74-83
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    • 2024
  • Objective: Mitragyna speciosa Korth is traditionally used in Thailand. They have a high level of antioxidant capacities and bioactive compounds, the potential to modulate rumen fermentation and decrease methane production. The aim of the study was to investigate the different levels of microencapsulated-Mitragyna leaves extracts (MMLE) supplementation on nutrient degradability, rumen ecology, microbial dynamics, and methane production in an in vitro study. Methods: A completely randomized design was used to assign the experimental treatments, MMLE was supplemented at 0%, 4%, 6%, and 8% of the total dry matter (DM) substrate. Results: The addition of MMLE significantly increased in vitro dry matter degradability both at 12, 24, and 48 h, while ammonia-nitrogen (NH3-N) concentration was improved with MMLE supplementation. The MMLE had the greatest propionate and total volatile fatty acid production when added with 6% of total DM substrate, while decreased the methane production (12, 24, and 48 h). Furthermore, the microbial population of cellulolytic bacteria and Butyrivibrio fibrisolvens were increased, whilst Methanobacteriales was decreased with MMLE feeding. Conclusion: The results indicated that MMLE could be a potential alternative plant-based bioactive compound supplement to be used as ruminant feed additives.

쌀, 보리, 옥수수의 반추위내 In situ 및 In vitro 분해율, 미생물 성장과 Gas 발생량에 대한 연구 (Studies on In situ and In vitro Degadabilities, Microbial Growth and Gas Production of Rice, Barley and Corn)

  • 이상민;강태원;이신자;옥지운;문여황;이성실
    • Journal of Animal Science and Technology
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    • 제48권5호
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    • pp.699-708
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    • 2006
  • 본 시험은 반추위 누관이 시술된 한우 수소 3두를 이용하여 쌀, 옥수수 및 보리의 in situ 분해율과 in vitro 시험으로서 영양소 분해율, 미생물 성장량, pH 변화 및 gas 발생량을 비교분석함으로써 쌀의 사료적 이용성을 평가해 보고자 수행되었다.In situ 건물 및 유기물 소실율은 반추위내 24시간 발효 시, 보리와 쌀은 거의 대부분이 소실된 반면, 옥수수는 약 67%만 소실되어 분해 속도가 매우 느린 것으로 나타났다. 수용성 물질인 ‘a’ 부분은 옥수수, 쌀, 보리 순으로 많았으며, 천천히 분해되는 ‘b’ 부분은 ‘a’ 부분과 정 반대의 경향으로서 ‘b’ 부분의 분해 상수(‘c’ 부분)로부터 시간당 건물과 유기물의 분해속도는 보리의 경우 각각 38.3%, 37.2%로서 쌀(7.7%, 5.6%)이나 옥수수(4.1%, 1.3%)에 비해 매우 빠르게 일어났다. In vitro 건물 및 유기물 분해율은 in situ 분해율에 비해 수준은 현저히 낮았으나, 보리, 쌀, 옥수수 순으로 높아 곡류 간 순서는 일치하였다. In vitro 미생물 성장은 쌀이 옥수수나 보리보다 상대적으로 낮았으나, 가스 발생량은 높게 나타났으며, pH는 발효시간에 따른 저하속도가 쌀에서 가장 느린 것으로 나타났다. 발효시간에 따른 미생물 성장량은 발효 12시간까지 높아졌다가 이후로 감소하였고, 배양액의 pH는 발효초기에는 높았다가 이후로 점차 감소하였으며, gas 발생량은 발효 9시간까지는 빠르게 증가하였다가 이후로 증가폭이 둔화되었다.이상의 결과에서 반추위내 건물과 유기물의 분해율과 발효시간의 경과에 따른 pH의 저하속도 등을 고려하면, 쌀은 옥수수와 함께 반추위내 발효 안정을 위한 에너지원으로서 사용 할 수 있을 것으로 사료된다.

Molecular Weight, Protein Binding Affinity and Methane Mitigation of Condensed Tannins from Mangosteen-peel (Garcinia mangostana L)

  • Paengkoum, P.;Phonmun, T.;Liang, J.B.;Huang, X.D.;Tan, H.Y.;Jahromi, M.F.
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권10호
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    • pp.1442-1448
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    • 2015
  • The objectives of this study were to determine the molecular weight of condensed tannins (CT) extracted from mangosteen (Garcinia mangostana L) peel, its protein binding affinity and effects on fermentation parameters including total gas, methane ($CH_4$) and volatile fatty acids (VFA) production. The average molecular weight ($M_w$) of the purified CT was 2,081 Da with a protein binding affinity of 0.69 (the amount needed to bind half the maximum bovine serum albumin). In vitro gas production declined by 0.409, 0.121, and 0.311, respectively, while CH4 production decreased by 0.211, 0.353, and 0.549, respectively, with addition of 10, 20, and 30 mg CT/500 mg dry matter (DM) compared to the control (p<0.05). The effects of CT from mangosteen-peel on in vitro DM degradability (IVDMD) and in vitro N degradability was negative and linear (p<0.01). Total VFA, concentrations of acetic, propionic, butyric and isovaleric acids decreased linearly with increasing amount of CT. The aforementioned results show that protein binding affinity of CT from mangosteen-peel is lower than those reported for Leucaena forages, however, the former has stronger negative effect on IVDMD. Therefore, the use of mangosteen-peel as protein source and $CH_4$ mitigating agent in ruminant feed requires further investigations.

Cnidoscolus aconitifolius leaf pellet can manipulate rumen fermentation characteristics and nutrient degradability

  • Totakul, Pajaree;Matra, Maharach;Sommai, Sukruthai;Wanapat, Metha
    • Animal Bioscience
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    • 제34권10호
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    • pp.1607-1615
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    • 2021
  • Objective: Chaya (Cnidoscolus aconitifolius) leaf has been found to be an important source of protein, vitamins, minerals, as well as phytonutrients. The present study aimed to evaluate the effect of Chaya leaf pellet (CHYP) with various level of crude protein (CP) in the concentrate on rumen fermentation characteristics and nutrient degradability in in vitro gas production technique. Methods: In an in vitro rumen fermentation study the dietary treatments were arranged according to a 3×5 factorial arrangement in a completely randomized design, consisting of Factor A: three levels of CP of concentrate mixtures (14%, 16%, and 18% CP, respectively) and Factor B: five levels of CHYP supplementation (at 0%, 2%, 4%, 6%, and 8% of dry matter substrates). Results: The gas production kinetics, fraction (a) and fraction (b) were lower (p<0.05) with an increasing CHYP addition. Additionally, the fraction (a+b) was found to yield a significant interaction (p<0.05) while the fraction (c) was not impacted by CHYP addition. However, in vitro DM degradability was enhanced and interactive (p<0.05), using 16% CP of concentrate with 6% and 8% CHYP, when compared with 18% CP in the non-addition. Additionally, the treatment with higher CP of the concentrate was higher in NH3-N concentration (p<0.001) and by CHYP supplementation group (p<0.05). Nevertheless, protozoal counts in the rumen were remarkably decreased (p<0.05) with increasing level of CHYP supplementation. Furthermore, rumen C2 concentration was lower (p<0.05) in the treatments with CHYP supplementation, while C3 was significantly increased and interactive (p<0.05) between levels of CP and CHYP supplementation especially at 8% CHYP supplementation. Conclusion: Based on this study, the results revealed CHYP as a promising feed supplement to enhance rumen fermentation and to mitigate methane production. However, in vivo feeding experiments should be subsequently conducted to elucidate the effect of CHYP supplementation on rumen fermentation, as well as ruminant production efficiency.

In vitro Evaluation of Phalaris minor Seeds as Livestock Feed

  • Kaur, J.;Pannu, M.S.;Kaushal, S.;Wadhwa, M.;Bakshi, M.P.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권3호
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    • pp.363-367
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    • 2006
  • The nutritional worth of Phalaris minor seeds was assessed in comparison to conventional cereal grains like maize and wheat. P. minor seeds had higher total ash and cell wall constituents as compared to wheat and maize grains. The CP content of P. minor was comparable to wheat grains but higher than maize grains. The in vitro studies revealed that the net gas production and availability of ME from P. minor was comparable to that of maize but the digestibility of nutrients was significantly (p<0.05) lower than that of conventional cereal grains. The digestion kinetic parameters for DM and CP revealed that P. minor had the highest (p<0.05) soluble fraction (a) followed by wheat and maize. Reverse trend was observed for insoluble but potentially degradable fraction (b). The effective and true DM and CP degradability was significantly (p<0.05) higher in wheat grains followed by that in P. minor and maize grains. The digestibility of OM and NDF was not affected by replacing cereal grains in concentrate mixture with P. minor seeds up to 75 per cent level. But the availability of ME from concentrate mixtures was comparable to control only up to 50% level of replacement. Replacement of cereal grains with P. minor did not affect the rapidly soluble fraction and insoluble but potentially degradable fraction of concentrate mixture containing P. minor up to 75 per cent, but it was depressed significantly at 100% replacement level. The effective and true degradability of DM of concentrate mixtures containing P. minor from 50 to 100 per cent was comparable to that of conventional concentrate mixture (CCM). The wheat based concentrate mixtures showed higher net gas production (208 vs. 201 ml/g DM/24 h), digestibility of nutrients and ME availability (9.64 vs. 9.54 MJ/kg DM) as compared to maize based concentrate mixture. The wheat based concentrate mixture had significantly (p<0.05) higher rumen undegradable fraction and effective degradability. The data conclusively revealed that conventional cereal grains could be replaced with P.minor seeds up to 75 per cent without affecting the availability of nutrients.

Nutritive Value of Wheat Straw Treated with Pleurotus Fungi

  • Fazaeli, H.;Mahmodzadeh, H.;Azizi, A.;Jelan, Z.A.;Liang, J.B.;Rouzbehan, Y.;Osman, A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제17권12호
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    • pp.1681-1688
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    • 2004
  • Soaked and pasteurised wheat straw was inoculated with five species of Pleurotus fungi (coded P-21, P-30, P-41, P-60 and P-90), packed in polyethylene bags and incubated in a fermentation chamber for 21 days. The chemical composition, in vitro digestibility and in sacco degradability of the treated and untreated straw were estimated using a complete randomised design consisting of six treatments and four replicates. In a feeding trial, in vivo digestibility and voluntary intake were determined in bulls, using a $3{\times}3$change over design. Dietary treatments were: 1) untreated wheat straw (UWS) as control; 2) fungal treated (P-41) wheat straw before mushroom formation (FTWS); 3) spent wheat straw (SPWS) after mushrooms were harvested. Apart from P-90, fungal treatment significantly (p<0.05) increased the crude protein (CP) and reduced the cell wall components of the straw. The in vitro dry mater and organic mater digestibility significantly (p<0.05) increased in the treated straw particularly with the treatments of P-41 and P-60. The in situ degradability and in vivo digestibility of DM and OM were significantly (p<0.05) increased in treated straws with the highest values observed for treatment P-41. The intake of DM, OM and digestible organic mater (DOM) were significantly (p<0.05) increased in cows fed FTWS.

느타리, 새송이 및 팽이버섯 폐배지의 반추동물 조사료원으로서의 사료 영양적 가치평가 (Evaluation on Feed-Nutritional Value of Spent Mushroom(Pleurotus osteratus, Pleurotus eryngii, Flammulina velutupes) Substrates as a Roughage Source for Ruminants)

  • 배지선;김영일;정세형;오영균;곽완섭
    • Journal of Animal Science and Technology
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    • 제48권2호
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    • pp.237-246
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    • 2006
  • 본 연구에서는 느타리, 새송이 및 팽이버섯 폐배지를 버섯 종류별, 배지에 이용된 주원료별로 나누어 반추가축 사료로서의 영양적 가치를 구명하기 위해서 화학성분, in vitro 소실율 실험 및 in situ darcon bag 실험을 수행하였다. 버섯 폐배지는 고섬유소(NDF 64~78%), 저단백질(CP 7~11%) 조사료원에 속하였다. 주원료별 폐배지는 섬유소 성분이 가장 높은 톱밥 주원료 폐배지와 비교해서 폐면 주원료 폐배지는 NDF 함량이 낮고(P<0.05), NFC와 ash 함량이 높았다(P<0.05). 버섯 폐배지의 화학적 성분은 전반적으로 버섯 종류보다는 주원료 종류에 의해 주로 영향을 받았다. In vitro DM, NDF 소실율은 분석된 배양시간(24, 48, 72시간) 모두에서 옥공이, 폐면, 톱밥 주원료 폐배지 순으로 높게 나타났다. In situ DM, NDF, ADF 소실율은 배양 24시간에서 옥공이, 폐면, 톱밥 주원료 폐배지 순으로 높았다(P<0.05). 톱밥 주원료 폐배지와 비교해서 폐면 주원료 폐배지는 가소화성 분획(NDF, ADF)이 뚜렷이 높고(P<0.05) 비소화성 분획은 현저히 낮았으며(P<0.05), 그 결과 배양 72시간에서의 in situ DM, NDF 소실율(disappearance)과 예상 반추위 분해율(degradability)도 현저히 높았다(P<0.05). 결과적으로 폐면 주원료 폐배지는 톱밥 주원료 폐배지 보다 반추가축 조사료원으로서의 사료영양적 가치가 높아 우선적 이용이 권장된다.

Influence of Temperature and pH on Fermentation Pattern and Methane Production in the Rumen Simulating Fermenter (RUSITEC)

  • Bhatta, R.;Tajima, K.;Kurihara, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권3호
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    • pp.376-380
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    • 2006
  • An experiment was conducted to study the effect of temperature and pH on in vitro nutrient degradability, volatile fatty acid profile and methane production. The fermenter used was the semi-continuous system, known as the rumen simulation technique (RUSITEC). Sixteen cylinders were used at one time with a volume of 800 ml, the dilution rate was set at 3.5%/hour, the infused buffer being McDougall's artificial saliva. Basal diet (9.6 g DM) used in RUSITEC consisted of (DM) 6.40 g Timothy hay, 1.86 g crushed corn and 1.34 g soybean meal. The food for the fermentation vessel was provided in nylon bags, which were gently agitated in the liquid phase. The experiment lasted for 17 d with all the samples taken during the last 5 d. Treatments were allocated at random to four vessels each and were (1) two temperature levels of $39^{\circ}C$ and $41^{\circ}C$ (2) two pH levels of 6.0 and 7.0. The total diet contained ($g\;kg^{-1}$ DM) 957 OM, 115 CP and $167MJ\;kg^{-1}$ (DM) GE. Although increase in temperature from $39^{\circ}C$ to $41^{\circ}C$ reduced degradation of major nutrients in vitro, it was non-significant. Interaction effect of temperature with pH also reflected a similar trend. However, pH showed a significant (p<0.05) negative effect on the degradability of all the nutrients in vitro. Altering the in vitro pH from 7 to 6 caused marked reduction in DMD from 60.2 to 41.8, CPD from 76.3 to 55.3 and GED from 55.3 to 35.1, respectively. Low pH (6) depressed total VFA production (61.9 vs. 34.9 mM) as well as acetate to propionate ratio in vitro (from 2.0 to 1.5) when compared to pH 7. Compared to pH 7, total gas production decreased from 1,841 ml to 1,148 ml at pH 6, $CO_2$ and $CH_4$ production also reduced from 639 to 260 ml and 138 to 45 ml, respectively. This study supported the premise that pH is one of the principal factors affecting the microbial production of volatile fatty acids and gas. Regulating the ruminal pH to increase bacterial activity may be one of the methods to optimize VFA production, reduce methane and, possibly, improve animal performance.

옥수수 가공방법이 In vitro 건물소화율 및 In sacco 건물 분해율에 미치는 영향 (The Effects of Processing Methods of Corn on In vitro DM Digestability and In sacco Degradability in Rumen)

  • 손근남;김용국;이수기;김현섭
    • Journal of Animal Science and Technology
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    • 제45권3호
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    • pp.433-442
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    • 2003
  • 본 연구는 옥수수 알곡의 가공방법(통 옥수수, 분쇄, flake 3.8mm, 2.8mm 및 1.5mm)이 in vitro 상의 건물 소화율 및 in sacco 방법에 있어 반추위 내에서의 건물 분해율에 미치는 영향를 규명하기 위해 반추위에 캐뉼라(cannulae)가 장착된 홀스타인 건유우 3두를 공시축으로 하여 수행하였는데 그 결과를 요약하면 다음과 같다. 옥수수 가공형태별 in vitro 소화율은 in sacco 방법에서와 비슷한 경향을 보였다. 48시간 배양시에 1.5mm flake 및 분쇄한 옥수수가 각각 92.3, 91.2%로서 가장 높았다, 다음으로 2.8mm 및 3.8mm flake가 각각 83.9, 83.4%이였다. 특히, 통 옥수수는 가장 낮았으며, density가 낮은 통 옥수수가 높은 것보다 2배 이상 빠르게 분해되었다. In sacco 방법에 의한 건물 분해율은 48시간대에서 1.5mm flake, 분쇄 옥수수 및 2.8mm flake가 각각 94.4, 88.0 및 87.0%로서 가장 높았고, 3.8mm flake는 61.8%로서 이들보다 유의적으로 낮았다. Density가 낮은 통 옥수수가 높은 것보다 12시간대까지는 많이 분해되는 경향을 보였으나, 유의적인 차이가 없었고, 24, 48시간대에서는 유의하게 높아졌다. 본 연구의 결과를 종합하면, 옥수수를 분쇄하거나, flaking 처리를 하면 통 옥수수에 비하여 반추위 내에서 건물 분해율이 유의하게 증가되었다. 또한 flake의 가공정도를 증진시킬수록 건물 분해율이 유의하게 증가되었으며, 1.5 mm로 얇게 가공한 flake는 반추위 내에서 급속하게 분해되는 경향이었다. 한편, 같은 통 옥수수에서도 density가 낮은 것이 빠르게 분해되었다.

Effect of Defaunation on In Vitro Fermentation Characteristics and Methane Emission When Incubated with Forages

  • Qin, Wei-Ze;Choi, Seong-Ho;Lee, Seung-Uk;Lee, Sang-Suk;Song, Man-Kang
    • 한국초지조사료학회지
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    • 제33권3호
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    • pp.197-205
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    • 2013
  • An in vitro study was conducted to determine the effects of defaunation (removal of protozoa) and forage sources (rice straw, ryegrass and tall fescue) on ruminal fermentation characteristics, methane ($CH_4$) production and degradation by rumen microbes. Sodium lauryl sulfate, as a defaunation reagent, was added into the mixed culture solution to remove ruminal protozoa at a concentration of 0.375 mg/ml. Pure cellulose (0.64 g, Sigma, C8002) and three forage sources were incubated in the bottle of culture solution of mixed rumen microbes (faunation) or defaunation for up to 24 h. The concentration of ammonia-N was high under condition of defaunation compared to that from faunation in all incubations (p<0.001). Total VFA concentration was increased at 3, 6 and 12 h (p<0.05~p<0.01) but was decreased at 24 h incubation (p<0.001) under condition of defaunation. Defaunation decreased acetate (p<0.001) and butyrate (p<0.001) proportions at 6, 12 and 24 h incubation times, but increased propionate (p<0.001) proportion at all incubation times for forages. Effective degradability of dry matter was decreased by defaunation (p<0.001). Defaunation not only decreased total gas (p<0.001) and $CO_2$ (p<0.01~0.001) production at 12 and 24 h incubations, but reduced $CH_4$ production (p<0.001) at all incubation times for all forages. The $CH_4$ production, regardless of defaunation, in order of forage sources were rice straw > tall fescue > ryegrass > cellulose (p<0.001) up to 24 h incubation.