• 제목/요약/키워드: Ruminococcus Albus F-40

검색결과 5건 처리시간 0.02초

Cellulosome-Like Structures in Ruminal Cellulolytic Bacterium Ruminococcus albus F-40 as Revealed by Electron Microscopy

  • Kim, Y.S.;Singh, A.P.;Wi, S.G.;Myung, K.H.;Karita, S.;Ohmiya, K.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제14권10호
    • /
    • pp.1429-1433
    • /
    • 2001
  • This study provides electron microscopic evidence for the presence of cellulosome-like structures on the cell surface of Ruminococcus albus F-40. Electron microscopy showed that clusters of tightly packed spherical particles were located on the cell surface of R. albus. The protuberant structures present mainly on the bacterial surface and also bound to the cellulose substrate appeared to be the site of cellulosome-like structures. From the evidence presented, we suggest that the structures described here might be a characteristic feature of some ruminal cellulolytic bacteria.

혐기성 세균 Ruminococcus albus F-40에 의한 목재 cellulose의 분해특성 (Degradation Characteristics of Wood Cellulose by Ruminal Cellulolytic Anaerobic Bacterium Ruminococcus albus F-40)

  • 김윤수;위승곤;명규호
    • Journal of the Korean Wood Science and Technology
    • /
    • 제25권3호
    • /
    • pp.83-95
    • /
    • 1997
  • The degradation mode of lignocellulose by anaerobic ruminal cellulolytic bacterium Ruminococcus albus F-40 was investigated. Birchwood holocellulose and filter paper were incubated as the sole carbohydrate sources with using the Hungate techniques. After 2 or 4 days of incubation, samples were employed for chemical and electron microscopic evaluations. The degradation rate of cellulosic substrates and the adhesion rate of bacteria to the substrates increased proportionally with the decrease of relative crystallinity of cellulose, indicating the preferential breakdown of amorphous cellulose, by this bacterium. X-ray diffraction analyses and polarized light microscopy showed, however, that crystalline cellulose was also degraded by R. albus. FT-IR spectra indicated that not only cellulose but hemicellulose was also degraded by this bacterium. Electron microscopic investigations showed the protuberant structures on the surface of R. albus. These structures were much more significant when bacterial cells were grown in the media containing insoluble substrates, such as cellulose, indicating clearly that bacterial protuberant structures were induced by the substrates. Protuberant structures extended from the bacterial cells adhered tightly to the substrates and numerous vesicles covered the surface of cellulosic substrates affected. Cellulosome-like structures were distributed on the cellulose matrix. Electron microscopic works showed that diverse surface organells of R. albus were involved in the degradation of cellulosic materials. SEM examinations showed the breakdown of cellulose by R. albus was proceeded by severeal routes : short fiber formation, defibrillation and destrafication of cellulose microfibril.

  • PDF

EFFECTS OF CHEMICAL TREATMENTS OF BARLEY STRAW ON LEACHING, AND DIGESTIBILITY BY RUMEN FLUID AND CELLULOLYTIC BACTERIA

  • Kudo, H.;Cheng, K.J.;Rode, L.M.;Abdullah, N.;Ho, Y.W.;Hussain, H.Y.;Jalaludin, S.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제7권3호
    • /
    • pp.389-396
    • /
    • 1994
  • Effects of chemical treatments on in sacco and in vitro digestibility of barley straw by rumen fluid and pure cultures of cellulolytic bacteria were studied to evaluate the pretreatment and to improve the poor quality feed. Chemicals were applied by dissolving them in water equivalent to 40% of the weight of the straw (dry matter basis). Pretreatment with 5% NaOH yielded the largest increase in sacco digestion followed by pretreatment with 2% $(NH_4)_2SO_3$, 2.6% $NH_4OH$, 1.6% $NaHSO_3$ and untreated straw (control). In sacco dry matter digestibility of straw treated with NaOH and $(NH_4)_2SO_3$ continued to increase as the concentration of chemical increased (1 to 7.5%), as it was the in vitro dry matter loss by leaching. Treatment of barley straw with 5% NaOH enhanced significantly (p < 0.01) in vitro digestibility by rumen fluid, Fibrobacter suceinogenes and Ruminococcus albus though the fermentation products by cellulolytic bacteria were low, whereas the treatment with 5% $(NH_4)_2SO_3$ inhibited in vitro digestibility by F. succinogenes and R. albus together with lower fermentation products. Dry matter loss by leaching and bacterial digestion from barley straw treated with NaOH and $(NH_4)_2SO_3$ suggested the effect of pretreatment with these chemicals were based on leaching, and the cellulolytic bacteria had little to do with digestion.

Influence of Yeast Fermented Cassava Chip Protein (YEFECAP) and Roughage to Concentrate Ratio on Ruminal Fermentation and Microorganisms Using In vitro Gas Production Technique

  • Polyorach, S.;Wanapat, M.;Cherdthong, A.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제27권1호
    • /
    • pp.36-45
    • /
    • 2014
  • The objective of this study was to determine the effects of protein sources and roughage (R) to concentrate (C) ratio on in vitro fermentation parameters using a gas production technique. The experimental design was a $2{\times}5$ factorial arrangement in a completely randomized design (CRD). Factor A was 2 levels of protein sources yeast fermented cassava chip protein (YEFECAP) and soybean meal (SBM) and factor B was 5 levels of roughage to concentrate (R:C) ratio at 80:20, 60:40, 40:60, 20:80, and 0:100, respectively. Rice straw was used as a roughage source. It was found that gas production from the insoluble fraction (b) of YEFECAP supplemented group was significantly higher (p<0.05) than those in SBM supplemented group. Moreover, the intercept value (a), gas production from the insoluble fraction (b), gas production rate constants for the insoluble fraction (c), potential extent of gas production (a+b) and cumulative gas production at 96 h were influenced (p<0.01) by R:C ratio. In addition, protein source had no effect (p>0.05) on ether in vitro digestibility of dry matter (IVDMD) and organic (IVOMD) while R:C ratio affected the IVDMD and IVOMD (p<0.01). Moreover, YEFECAP supplanted group showed a significantly increased (p<0.05) total VFA and $C_3$ while $C_2$, $C_2:C_3$ and $CH_4$ production were decreased when compared with SBM supplemented group. In addition, a decreasing R:C ratio had a significant effect (p<0.05) on increasing total VFA, $C_3$ and $NH_3$-N, but decreasing the $C_2$, $C_2:C_3$ and CH4 production (p<0.01). Furthermore, total bacteria, Fibrobacter succinogenes, Ruminococcus flavefaciens and Ruminococcus albus populations in YEFECAP supplemented group were significantly higher (p<0.05) than those in the SBM supplemented group while fungal zoospores, methanogens and protozoal population remained unchanged (p>0.05) as compared between the two sources of protein. Moreover, fungal zoospores and total bacteria population were significantly increased (p<0.01) while, F. succinogenes, R. flavefaciens, R. albus, methanogens and protozoal population were decreased (p<0.01) with decreasing R:C ratio. In conclusion, YEFECAP has a potential for use as a protein source for improving rumen fermentation efficiency in ruminants.

혼합 메탄균과 반추위 섬유소 분해균 첨가가 메탄발생에 미치는 영향 (Effects of Supplementation of Mixed Methanogens and Rumen Cellulolytic Bacteria on Biochemical Methane Potential)

  • 김지애;윤영만;김창현
    • 한국토양비료학회지
    • /
    • 제45권4호
    • /
    • pp.515-523
    • /
    • 2012
  • 본 연구는 메탄생성에 직접적으로 관여하는 혼합 메탄균과 셀롤로스 등의 고분자 물질의 가수분해 반응에 활성이 뛰어난 반추위 내 혐기성 섬유소분해균 중에서 대표적인 Fibrobacter succinogenes, Ruminococcus flavefaciens 및 Ruminococcus albus를 biochemical methane potential (BMP) 시험에 첨가하였을 때 메탄 발생에 미치는 영향을 조사하고자 수행되었다. BMP시험은 멸균증류수를 첨가한 control과 각각의 미생물 배양액을 첨가한 혼합 메탄균 첨가구 (M), F. succinogenes 첨가구 (FS) R. flavefaciens 첨가구 (RF), R. albus 첨가구 (RA) 및 RA+FS 혼합첨가구와 M+RA+FS 혼합 첨가구로 총 7개 처리구로 각 처리구별 3반복으로 진행되었다. 미생물 배양액의 첨가량은 식종액과 기초혐기배지 (anaerobic basic medium) 혼합액 50 mL에 1% (0.5 mL), 3% (1.5 mL) 및 5% (2.5 mL) 씩 첨가 하였고 배양을 위한 기질로는 cellulose ($2.0g\;VS\;L^{-1}$)이 이용되었다. BMP 시험을 위해 40일간 배양이 지속되었고 중온소화를 위해 $38^{\circ}C$의 배양기에서 수행되었다. 실험의 결과 총 바이오가스 및 메탄 발생량은 5% FS에서 다른 처리구와 비교하여 각각 10.4~22.7% 및 17.4~27.5% 높았다 (p<0.05). 총고형물 (TS) 분해율도 가스발생 결과와 유사하였는데, 전반적으로 FS가 높게 나타났으며, 5% FS에서 64.2%로 가장 높았다. 휘발성 고형물 (VS) 분해율은 5% FS와 5% RF가 각각 68.4 및 71.0%로 가장 높았다. BMP 종료시 배양액내 pH는 모든 처리구가 6.4이상으로 메탄발효에 큰 영향을 주지 않았음을 알 수 있었다. 결론적으로 본 실험의 결과 혐기소화에 대한 회분식 배양에서는 메탄생성단계보다는 가수분해단계에서 특히, F. succinogenes 배양액의 첨가량이 증가할수록 메탄의 생성량을 증가시킴을 알 수 있었다.