• 제목/요약/키워드: cellulolytic bacterium

검색결과 19건 처리시간 0.018초

Characterization of Cellulolytic and Xylanolytic Enzymes of Bacillus licheniformis JK7 Isolated from the Rumen of a Native Korean Goat

  • Seo, J.K.;Park, T.S.;Kwon, I.H.;Piao, M.Y.;Lee, C.H.;Ha, Jong K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권1호
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    • pp.50-58
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    • 2013
  • A facultative bacterium producing cellulolytic and hemicellulolytic enzymes was isolated from the rumen of a native Korean goat. The bacterium was identified as a Bacillus licheniformis on the basis of biochemical and morphological characteristics and 16S rDNA sequences, and has been designated Bacillus licheniformis JK7. Endoglucanase activities were higher than those of ${\beta}$-glucosidase and xylanase at all temperatures. Xylanase had the lowest activity among the three enzymes examined. The optimum temperature for the enzymes of Bacillus licheniformis JK7 was $70^{\circ}C$ for endoglucanase (0.75 U/ml) and $50^{\circ}C$ for ${\beta}$-glucosidase and xylanase (0.63 U/ml, 0.44 U/ml, respectively). All three enzymes were stable at a temperature range of 20 to $50^{\circ}C$. At $50^{\circ}C$, endoglucanse, ${\beta}$-glucosidase, and xylanase had 90.29, 94.80, and 88.69% residual activity, respectively. The optimal pH for the three enzymes was 5.0, at which their activity was 1.46, 1.10, and 1.08 U/ml, respectively. The activity of all three enzymes was stable in the pH range of 3.0 to 6.0. Endoglucanase activity was increased 113% by $K^+$, while $K^+$, $Zn^+$, and tween 20 enhanced ${\beta}$-glucosidase activity. Xylanase showed considerable activity even in presence of selected chemical additives, with the exception of $Mn^{2+}$ and $Cu^{2+}$. The broad range of optimum temperatures (20 to $40^{\circ}C$) and the stability under acidic pH (4 to 6) suggest that the cellulolytic enzymes of Bacillus licheniformis JK7 may be good candidates for use in the biofuel industry.

호알칼리성 섬유소분해세균 Pseudomonas sp.의 분리 및 특성 (Isolation and Characterization of an Alkalophilic Cellulolytic Bacterium Pseudomonas sp.)

  • 임상호;윤민호;최우영
    • 농업과학연구
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    • 제25권1호
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    • pp.124-130
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    • 1998
  • 알칼리성 cellulase를 분비하는 세균을 토양으로 부터 분리하고 그 중 알칼리 환경하에서 생육이 양호하며 CMCase 생성능이 우수한 균주 AC-711를 선발하였다. AC-711 균주의 형태적, 배양적 및 생리학적 특성을 조사한 결과 호알칼리성 Pseudomonas속의 균주로 동정되었으나 염색체 DNA의 G+C함량이 54.43 mol%로서 Pseudomonas속보다 다소 낮은 값이었으며, 세포벽 지방산의 주성분은 15:0 anteiso 및 17:0 anteiso이었다. AC-711 균주의 생육은 $25{\sim}37^{\circ}C$, pH 9.5~10.5에서 좋았으며 효소생산을 위한 최적 조건은 $30^{\circ}C$, pH 10.3 이었다. 또한 효소생산을 위한 배지조성은 $KH_2PO_4$ 0.1%, $CoCl_2$ 0.02%, Tween 80 0.02%, $Na_2CO_3$ 0.5%에 탄소원으로서 CMC 1%, 질소원으로서 yeast extract 0.8%를 사용하였을 때가 가장 좋았다. CMCase의 생산은 3일 배양후 가장 높았으며, 생성된 효소는 filter paer와 avicel과 같은 결정성 섬유소보다는 수용성 섬유소인 CMC에 대한 분해 활성이 현저히 높아서 세제 첨가제로서의 이용 가능성이 주목되었다.

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Herpetosiphon geysericola 균주의 Amylase 부분정제 및 특성 (Partial Purification and Characteristics of Amylases from Herpetosiphon geysericola)

  • 전영수;홍용기;서정훈
    • 한국식품영양과학회지
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    • 제16권2호
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    • pp.128-135
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    • 1987
  • 고온성 cellulose 분해이용세균인 Herpetosiphon geysericola CUM 317 균주가 생성하는 ${\alpha}-amylase$, ${\beta}-amylase$ 및 glucoamylase를 황산암모늄 염석, DEAE-cellulose chromatography, CM-cellulose chromatography 방법으로 각각 부분정제하였다. 이들 ${\alpha}-amylase$, ${\beta}-amylase$ 및 glucoamylase의 감자 전분에 대한 Km치는 $2.31mg/m{\ell}$, $7.69mg/m{\ell}$$8.33mg/m{\ell}$였으며, 각 분자량은 84,000 dalton, 76,000 dalton 및 80,000 dalton의 크기로 나타났다.

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섬유소 분해균 Cellulomonas uda CS 1-1의 분류학적 연구 (Taxonomic Studies on the Cellulolytic Bacterium Cellulomonas uda CS 1-1)

  • 김미석;윤민호;최우영
    • 농업과학연구
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    • 제34권2호
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    • pp.99-109
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    • 2007
  • 섬유소 분해균 Cellulomonas sp. CS 1-1에 대하여 종 수준으로 분류학적 위치를 규명하기 위하여 7개 type strain 균주와 함께 생리적 및 생화학적 특성을 조사하고 DNA 상등성 및 지방산의 조성 등을 분석하여 비교한 결과, CS 1-1의 콜로니 형태는 circular, entire, smooth, convex하며, 담황색을 띤 $0.3{\sim}0.5{\times}0.8{\sim}1.2{\mu}m$ 크기의 간균이었다. 생리학적 특징으로서 비운동성의 통성혐기성 중온균으로서 Gram양성, catalase양성, oxidase음성, 탄수화물 발효성 등의 표현형은 Cellulomonas 속의 타종과 동일하였으며, 특히 D-ribose, raffinose, rhamnose, xylitol, acetate, L-lactate, propionate, aspartate, proline 등 조사한 모든 탄소원의 이용성이 없었으며, 반면에 sacchrose, arabinose 및 amylose의 이용성은 양성으로 판정되었다. G+C 함량 74.76 mol %, 주요 지방산과 quinone 성분은 전형적인 Cellulomonas의 12-methyltetradecanoic acid (anteiso-$C_{15:1}$)과 MK-$9(H_4)$이었으며, DNA의 상동성 비율은 C. uda ATCC 491과 70%, C. fimi ATCC 15724와 54~59 %, C. gelida 및 C. bibula와도 46~48%의 상동성을 나타내었다. 이상의 결과는 CS1-1이 현재 Cellulomonas 속에 인정된 7개의 type species 중 C. uda ATCC 491 균주와 가장 높은 근연성을 나타냄으로서 C. uda에 속하는 novel species로 분류될 수 있다.

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Enhancing Butyrate Production, Ruminal Fermentation and Microbial Population through Supplementation with Clostridium saccharobutylicum

  • Miguel, Michelle A.;Lee, Sung Sill;Mamuad, Lovelia L.;Choi, Yeon Jae;Jeong, Chang Dae;Son, Arang;Cho, Kwang Keun;Kim, Eun Tae;Kim, Sang Bum;Lee, Sang Suk
    • Journal of Microbiology and Biotechnology
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    • 제29권7호
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    • pp.1083-1095
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    • 2019
  • Butyrate is known to play a significant role in energy metabolism and regulating genomic activities that influence rumen nutrition utilization and function. Thus, this study investigated the effects of an isolated butyrate-producing bacteria, Clostridium saccharobutylicum, in rumen butyrate production, fermentation parameters and microbial population in Holstein-Friesian cow. An isolated butyrate-producing bacterium from the ruminal fluid of a Holstein-Friesian cow was identified and characterized as Clostridium saccharobutylicum RNAL841125 using 16S rRNA gene sequencing and phylogenetic analyses. The bacterium was evaluated on its effects as supplement on in vitro rumen fermentation and microbial population. Supplementation with $10^6CFU/ml$ Clostridium saccharobutylicum increased (p < 0.05) microbial crude protein, butyrate and total volatile fatty acids concentration but had no significant effect on $NH_3-N$ at 24 h incubation. Butyrate and total VFA concentrations were higher (p < 0.05) in supplementation with $10^6CFU/ml$ Clostridium saccharobutylicum compared with control, with no differences observed for total gas production, $NH_3-N$ and propionate concentration. However, as the inclusion rate (CFU/ml) of C. saccharobutylicum was increased, reduction of rumen fermentation values was observed. Furthermore, butyrate-producing bacteria and Fibrobacter succinogenes population in the rumen increased in response with supplementation of C. saccharobutylicum, while no differences in the population in total bacteria, protozoa and fungi were observed among treatments. Overall, our study suggests that supplementation with $10^6CFU/ml$ C. saccharobutylicum has the potential to improve ruminal fermentation through increased concentrations of butyrate and total volatile fatty acid, and enhanced population of butyrate-producing bacteria and cellulolytic bacteria F. succinogenes.

Herpetosiphon geysericola 균주의 Amylase 생성 (Production of Amylases from Herpetosiphon geysericola)

  • 전영수;서정훈
    • 한국식품영양과학회지
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    • 제14권2호
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    • pp.188-191
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    • 1985
  • 퇴비 숙성초기에 고온성 cellulose 분해이용균으로 분리된 Herpetosiphon geysericola CUM 317균주는 전분분해 효소인 ${\alpha}-amylase,\;{\beta}-amylase$ 및 glucoamylase를 모두 생성한다. 이 균을 사용하여 그 배양조건을 달리하여 각 amylase의 생성관계를 서로 비교한바 50℃의 밀기울 고체배지나 $40^{\circ}C$의 액체배지상에서 ${\beta}-amylase$는 배양초기 10시간만에 최대의 생성력가를 보였는 반면, ${\alpha}-amylase$와 glucoamylase는 30 내지 40시간 정도의 배양말기에 최대를 이루었다. Polypeptone을 함유한 액체배지에 탄소원의 첨가나 무기질소원의 첨가는 전반적으로 amylase들의 생성이 크게 저하되었으나 cellulose에 의해서 glucoamylase의 경우 150% 정도 증가되었다. 액체배지에 $CuSO_4$를 첨가해 줌으로서 ${\alpha}-amylase$만의 생성증가 효과를 얻었고 $CdSO_4$에 의하여 ${\beta}-amylase$만의 생성증가가 있었으며, 그리고 $CaCl_2$에 의하여 glucoamylase만의 증가효과가 있은 반면, 상대적으로 ${\beta}-amylase$의 급격한 감소가 일어났다. 이들 amylase들의 최적 효소생성 pH는 7.5였으며, 최적온도는 ${\alpha}-amylase$와 glucoamylase의 경우 $40^{\circ}C$였고 ${\beta}-amylase$$30^{\circ}C$였다.

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Selection of plant oil as a supplemental energy source by monitoring rumen profiles and its dietary application in Thai crossbred beef cattle

  • Matsuba, Keiji;Padlom, Apirada;Khongpradit, Anchalee;Boonsaen, Phoompong;Thirawong, Prayad;Sawanon, Suriya;Suzuki, Yutaka;Koike, Satoshi;Kobayashi, Yasuo
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권10호
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    • pp.1511-1520
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    • 2019
  • Objective: The present study was conducted to select a plant oil without inhibitory effects on rumen fermentation and microbes, and to determine the optimal supplementation level of the selected oil in a series of in vitro studies for dietary application. Then, the selected oil was evaluated in a feeding study using Thai crossbred beef cattle by monitoring growth, carcass, blood and rumen characteristics. Methods: Rumen fluid was incubated with substrates containing one of three different types of plant oil (coconut oil, palm oil, and soybean oil) widely available in Thailand. The effects of each oil on rumen fermentation and microbes were monitored and the oil without a negative influence on rumen parameters was selected. Then, the dose-response of rumen parameters to various levels of the selected palm oil was monitored to determine a suitable supplementation level. Finally, an 8-month feeding experiment with the diet supplemented with palm oil was carried out using 12 Thai crossbred beef cattle to monitor growth, carcass, rumen and blood profiles. Results: Batch culture studies revealed that coconut and soybean oils inhibited the most potent rumen cellulolytic bacterium Fibrobacter succinogenes, while palm oil had no such negative effect on this and on rumen fermentation products at 5% or higher supplementation level. Cattle fed the diet supplemented with 2.5% palm oil showed improved feed conversion ratio (FCR) without any adverse effects on rumen fermentation. Palm oil-supplemented diet increased blood cholesterol levels, suggesting a higher energy status of the experimental cattle. Conclusion: Palm oil had no negative effects on rumen fermentation and microbes when supplemented at levels up to 5% in vitro. Thai crossbred cattle fed the palm oil-supplemented diet showed improved FCR without apparent changes of rumen and carcass characteristics, but with elevated blood cholesterol levels. Therefore, palm oil can be used as a beneficial energy source.

셀룰로스분해 신규 해양미생물 Seonamhaeicola sp. S2-3의 분리 및 동정 (Isolation and Characterization of a New Cellulase-producing Marine Bacterium, Seonamhaeicola sp. S2-3)

  • 김다솜;지원재
    • 한국미생물·생명공학회지
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    • 제48권4호
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    • pp.539-546
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    • 2020
  • A cellulolytic bacterial strain, S2-3, was isolated from sea water collected in Jeju island, Republic of Korea. The strain was aerobic and gram negative, and formed yellow colored colonies on marine agar medium. S2-3 cells were long rod-shaped, 0.5 × 0.25 ㎛ (width x length) in size, and did not have flagella. The optimal growth conditions for S2-3 were 30-35℃ and pH 6.5-7.0. Analysis of the 16S rRNA gene sequence of S2-3 revealed that it had the highest identity with those of Seonamhaeicola algicola Gy8 (97.08%), Hyunsoonleella udonensis JG48 (95.01%), and Aestuariibaculum scopimerae I-15 (94.86%). In phylogenetic analysis, S2-3 formed the same clade as S. algicola Gy8, implying that S2-3 belongs to the genus Seonamhaeicola. The major fatty acids (>10%) comprised C15:1 iso G (22.29%), C15:0 iso (17.71%), C17:0 iso 3OH (16.06%), and C15:0 iso 3OH (10.7%), resulting in quite different ratio of the component from those of S. algicola Gy8. Moreover, its biochemical characteristics, including acid production and enzyme activities, were different from those of S. algicola Gy8. Therefore, putting all these results together, we concluded S2-3 is distinct species from S. algicola Gy8, and thus named it Seonamhaeicola sp. S2-3. In liquid culture, S2-3 produced extracellular cellulases that can hydrolyze cellulose or cellooligosaccharides into cellobiose, which is a good enzyme resource that deserves further research.

된장으로부터 분리한 Bacillus subtilis CK-2가 생산하는 가수분해효소의 활성 특성 (Characteristics of Hydrolytic Enzymes that Produced by Bacillus subtilis CK-2 Isolated from Doenjang)

  • 이상협;김철호
    • 생명과학회지
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    • 제27권7호
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    • pp.805-811
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    • 2017
  • 이전의 논문에서 된장으로부터 섬유소와 지질, 녹말, 그리고 단백질을 포함하는 다양한 유기물을 가수분해하는 세균을 분리한 바 있다. 본 연구에서는 분리균주인 Bacillus subtilis CK-2가 생산하는 각종 가수분해효소의 조효소 특성을 확인하였다. 섬유소분해효소의 경우 적정 수소이온농도는 pH 5.0, 적정온도는 $55^{\circ}C$로 확인되었으며, pH 5.0~10.0과 $20{\sim}50^{\circ}C$의 범위에서 높은 활성을 나타내었다. 섬유소분해효소는 $Co^{2+}$ 이온에 의해 활성이 높아지며, 0.45%(w/v)의 $Co^{2+}$ 이온 농도에서 가장 높은 활성을 보였다. 녹말분해효소의 경우 적정 수소이온농도는 pH 5.0, 적정온도는 $50^{\circ}C$로 확인되었으며, pH 4.0~5.0과 $20{\sim}50^{\circ}C$의 범위에서 높은 활성을 나타내었다. 녹말분해효소는 $Co^{2+}$ 이온에 의해 활성이 높아지며, 0.2%(w/v)의 $Co^{2+}$ 이온 농도에서 가장 높은 활성을 보였다. 단백질분해효소의 경우 적정 수소이온농도는 pH 8.0, 적정온도는 $50^{\circ}C$로 확인되었으며, pH 7.0~8.5과 $20{\sim}50^{\circ}C$의 범위에서 높은 활성을 나타내었다. 섬유소분해효소는 $Mn^{2+}$ 이온에 의해 활성이 높아지며, 0.125%(w/v)의 $Mn^{2+}$ 이온 농도에서 가장 높은 활성을 보였다. 이러한 결과로부터 B. subtilis CK-가 생산하는 가수분해효소를 산업적으로 이용하기 위해서는 효소의 종류에 따라 수소이온농도와 온도, 그리고 금속이온을 적절하게 조절할 필요가 있다는 것을 알 수 있다.