• 제목/요약/키워드: Rumen Microflora

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Role and Potential of Ruminal Fungi in Fiber Digestion - Review -

  • Ushida, K.;Matsui, H.;Fujino, Yuko;Ha, J.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제10권6호
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    • pp.541-550
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    • 1997
  • Anaerobic chytridiomycete fungi are now well recognized as one of the major components of rumen microflora. Since the discovery of anaerobic fungi, the knowledge upon their morphology and physiology has been accumulated. It is certain that they gave roles in ruminal fiber digestion, although their quantitative contribution to rumen digestion is still unclear. Their role in fiber digestion is complicated by the dietary factors and the interaction with other microorganisms. We aim at reviewing such information in this article. Considerable attention gas been paid to the polysaccharidase of these fungi. Analysis on the fungal genes encoding these enzymes has been performed in several laboratories. This article also covers the genetical analysis of fungal polysaccharidases.

Characteristics of Digestion Dynamics of Rice and Oat Straw Relating to Microbial Digestion in the Rumen of Sheep Given High-Concentrate Diets

  • Goto, M.;Morio, T.;Kojima, E.;Nagano, Y.;Yamada, Y.;Horigane, A.;Yamada, H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권9호
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    • pp.1219-1227
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    • 2000
  • Rumination behavior, in vivo digestibility of cell wall constituents, particle size reduction in the rumen, and retention time in the digestive tract of sheep were examined using rice and oat straw as roughage sources. The in sacco digestibility, rumen fermentation, and microbial population and internal adenosine 5-triphosphate (ATP) content were also determined under feeding conditions of high-roughage and high-concentrate diets. Chewing number and time in rumination behavior were higher with rice straw than with oat straw, while the in sacco and in vivo DMD of rice straw were consistently lower than those of oat straw. Rice straw also showed higher frequency of thinner and longer particles in the rumen contents and lower retention time in the whole digestive tract as compared to those of oat straw. Rice straw was more effective to maintain the ruminal pH than oat straw, being reflected in higher internal ATP content of large-type protozoa on the high- concentrate diet. Changes in the ruminal microflora by shifting from the low- to the high- concentrate diet were also different between rice and oat straw.

저지종 젖소의 반추위 내 미생물 균총 변화와 고창증 발병간의 상관관계 연구 (The Study on the Relationship between Changes of Rumen Microflora and Bloat in Jersey Cow)

  • 김상범;오종석;정하연;정영훈;박범영;하승민;임석기;이성실;박지후;박성민;김언태
    • 한국초지조사료학회지
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    • 제38권2호
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    • pp.106-111
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    • 2018
  • 본 연구는 고창증 발병으로 폐사된 저지종 젖소의 반추위액과 캐놀라가 장착한 저지종 젖소의 반추위액을 샘플링하여 반추위 내 미생물 균총의 급작스런 변화에 따른 반추위 발효와 고창증 발병간에 연관성을 알아보고자 진행되었다. 채취한 반추위액 샘플은 PowerMax Soil DNA Isolation Kit (MO BIO Inc., CA, USA)를 이용하여 DNA를 추출한 후 PicoGreen (Turner BioSystems, Inc., CA, USA)과 Nanodrop spectrophotometer (ND-1000, NanoDrop Technologies Inc., DE, USA)를 이용하여 260/280 nm와 260/230 nm 흡광도 값을 측정하였다. DNA를 정량분석하고 $MiSeq^{TM}$ platform (Illumina, CA, USA)을 이용한 장내 미생물 균총의 다양성 분석을 마크로젠(Macrogen Inc., Seoul)에 의뢰하여 실시하였다. 반추위액 내 미생물 균총 분석 결과, 전분 분해균의 경우 고창증 발병으로 인한 폐사우의 반추위 내에서 R. bromii가 우점 하였으며, R. bromii, B. pseudolongum, B. merycicum 및 B. fibrisolvens 등과 같은 전분 분해균들이 정상우 대비 36배 높았다. 반면 반추위 발효와 밀접한 관련이 있는 F. succinogenes, R. albus 및 R. flavefaciens 등과 같은 대표적인 섬유소 분해균 비율은 정상우에서 고창증 발병으로 인한 폐사우 대비 12배 높았다. 이와 같은 결과를 볼 때, 반추위 내 균총 가운데 R. bromii, B. pseudolongum, B. merycicum 및 B. fibrisolvens 등과 같은 전분 분해균들의 급격한 증가가 반추위 내 pH 저하 및 가스 생성 증가를 초래했고 이는 저지종 젖소의 고창증 발병으로 인한 폐사와 밀접한 연관이 있었을 것으로 판단된다.

FEEDING OF BYPASS PROTEIN TO CROSS BRED COWS IN INDIA ON STRAW BASED RATION

  • Kunju, P.J.G.;Mehta, A.K.;Garg, M.R.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권1호
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    • pp.107-112
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    • 1992
  • Feeding of bypass protein to lactating animals have been suggested by many research scientists as a way to increase the nutrient supply at the intestinal level thereby enhance animal production in ruminant animals. A feeding trial with a formulated bypass protein feed on straw based ration was carried out by using lactating cross bred cows at the stage of 4th month of their lactation. Bypass protein feed was fed at 5 different levels. Urea Molasses Block was used as a nitrogen source to the rumen microflora. In order to reduce the heat increment straw intake was restricted to all the animals. Urea Molasses Block intake was noticed varying in proportion with the bypass protein feed intake. Milk production was observed increasing in accordance with the level of bypass protein feed intake. However, the maximum response was noticed in cows that were fed 3 kg bypass protein feed. The nutrient availability at this stage was below the NRC (1988) requirements. Other remarkable finding was that the cows maintained the persistency of milk production even after 3rd month of lactation when the ambient temperature was $40^{\circ}C$.

Anaerobic Bacterial Degradation for the Effective Utilization of Biomass

  • Ohmiya, Kunio;Sakka, Kazuo;Kimura, Tetsuya
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권6호
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    • pp.482-493
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    • 2005
  • Biomass is originally photosynthesized from inorgainic compounds such as $CO_2$, minerals, water and solar energy. Recent studies have shown that anaerobic bacteria have the ability to convert recalcitrant biomass such as cellullosic or chitinoic materials to useful compounds. The biomass containing agricultural waste, unutilized wood and other garbage is expected to utilize as feed, food and fuel by microbial degradation and other metabolic functions. In this study we isolated several anaerobic, cellulolytic and chitinolytic bacteria from rumen fluid, compost and soil to study their related enzymes and genes. The anaerobic and cellulolytic bacteria, Clostridium thermocellum, Clostridium stercorarium, and Clostridium josui, were isolated from compost and the chitinolytic Clostridium paraputrificum from beach soil and Ruminococcus albus was isolated from cow rumen. After isolation, novel cellulase and xylanase genes from these anaerobes were cloned and expressed in Escherichia coli. The properties of the cloned enzymes showed that some of them were the components of the enzyme (cellulase) complex, i.e., cellulosome, which is known to form complexes by binding cohesin domains on the cellulase integrating protein (Cip: or core protein) and dockerin domains on the enzymes. Several dockerin and cohesin polypeptides were independently produced by E. coli and their binding properties were specified with BIAcore by measuring surface plasmon resonance. Three pairs of cohesin-dockerin with differing binding specificities were selected. Two of their genes encoding their respective cohesin polypeptides were combined to one gene and expressed in E. coli as a chimeric core protein, on which two dockerin-dehydrogenase chimeras, the dockerin-formaldehyde dehydrogenase and the dockerin-NADH dehydrogenase are planning to bind for catalyzing $CO_2$ reduction to formic acid by feeding NADH. This reaction may represent a novel strategy for the reduction of the green house gases. Enzymes from the anaerobes were also expressed in tobacco and rice plants. The activity of a xylanase from C. stercorarium was detected in leaves, stems, and rice grain under the control of CaMV35S promoter. The digestibility of transgenic rice leaves in goat rumen was slightly accelerated. C. paraputrificum was found to solubilize shrimp shells and chitin to generate hydrogen gas. Hydrogen productivity (1.7 mol $H_2/mol$ glucos) of the organism was improved up to 1.8 times by additional expression of the own hydrogenase gene in C. paraputrficum using a modified vector of Clostridiu, perfringens. The hydrygen producing microflora from soil, garbage and dried pelletted garbage, known as refuse derived fuel(RDF), were also found to be effective in converting biomass waste to hydrogen gas.

Rumen fermentation, methane production, and microbial composition following in vitro evaluation of red ginseng byproduct as a protein source

  • Hamid, Muhammad Mahboob Ali;Moon, Joonbeom;Yoo, Daekyum;Kim, Hanbeen;Lee, Yoo Kyung;Song, Jaeyong;Seo, Jakyeom
    • Journal of Animal Science and Technology
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    • 제62권6호
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    • pp.801-811
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    • 2020
  • The main objective of this in vitro study was to evaluate red ginseng byproduct (RGP) as a protein resource and its effects on rumen fermentation characteristics, microflora, CO2, and CH4 production in ruminants. Four treatments for in vitro fermentation using buffered rumen fluid over a 48 h incubation period were used: 1, RGP; 2, corn gluten feed (CGF); 3, wheat gluten (WG); and 4, corn germ meal. In vitro dry matter digestibility (IVDMD), in vitro neutral detergent fiber digestibility (IVNDFD), in vitro crude protein digestibility (IVCPD), volatile fatty acids, pH, and ammonia nitrogen (NH3-N) were estimated after 48 h incubation. Gas production was investigated after 3, 6, 12, 24, 36 and 48 h. The CO2 and CH4 were evaluated after 12, 24, 36, and 48 h. A significant difference in total gas production and CO2 emissions was observed (p < 0.01) at all incubation times. CH4 production in RGP were higher (p < 0.05) than that in other treatments but a higher CH4 portion in the total gas production was observed in WG (p < 0.05) at 48 h incubation. The IVDMD, IVNDFD, and IVCPD of RGP was lower than those of other conventional ingredients (p < 0.01). The RGP had the lowest NH3-N value among the treatments (p < 0.01). The RGP also had the lowest total VFA concentration (p < 0.01), but presented the highest acetate proportion and acetate to propionate ratio among the treatments (both, p < 0.01). The abundance of Prevotella ruminicola was higher in RGP than in WG (p < 0.01), whereas RGP has lower methanogenic archaea (p < 0.01). In conclusion, based on the nutritive value, IVDMD, low NH3-N, and decreased methanogenic archaea, RGP inclusion as a protein source in ruminant diets can be an option in replacing conventional feed sources.