• 제목/요약/키워드: butyrate/acetate (B/A) ratio

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섬유소의 이용과 butyrate의 최근 연구 (Use of Cellulose and Recent Research into Butyrate)

  • 여태종;최인순;조광근
    • 생명과학회지
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    • 제22권11호
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    • pp.1571-1586
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    • 2012
  • 지구상에는 약 5,400여 종의 포유동물이 있고 그 중 약 1,000여 종은 풀을 뜯어 먹고 사는 초식동물이다. 초식동물 중에서 약 250여 종이 반추동물로 알려져 있다. 반추동물인 소와 양은 반추위에서 주로 발효가 일어나지만 비반추동물인 돼지와 사람은 맹장과 결장, 직장에서 주로 발효가 일어난다. 반추위 미생물의 종류와 우점도 Bacteroidetes 51%, Firmicutes 43% 존재하며, 사람의 대장미생물의 우점도Firmicutes 65%, Bacteroidetes 25%로 존재한다. 풀의 세포벽 구성성분은 미생물에 의해 분해, 발효에 의해 SCFA (short chain fatty acid)를 생성하게 되고 acetate, propionate, butyrate 생성비율은 60:25:15이다. 장내 primary butyrate transporter인 MCT1(monocarboxylatetransports-1)에 의해서 흡수된 butyrate는 SCFA receptor GPR43과 GPR41을 활성화시킨다. Butyrate는 강력한 anti-tumorigenic 기능을 가지고 있다. Butyrate는 다양한 cancer cell에 효과를 나타내며 세포내의 기능 조절에 기여하고, 암세포사멸을 유도하는 특성이 있다. Butyrate는 caspase의 활성화, HDAC (histone deacetylase) 활성을 억제하여apoptosis를 유도하고, p53 발현증가로 cell cycle arrest와 apoptosis를 유도한다. SCFA의 항 염증작용으로는 장 상피세포에서 IL-8 발현 감소, NO합성과 NF-${\kappa}B$ (nuclear factor ${\kappa}B$)의 활성을 억제하여 염증으로 인한 암 발생을 억제한다. Butyrate는 장 점막의 생리적 기능을 유지하는데 중요한 역할을 하며 IBD (inflammatory bowel disease) 치료법으로 이용되고 있다.

Clostridia에 의한 Biomass 구성당으로부터의 수소생성 (Hydrogen Evolution from Biomass-Derived Carbohydrates by Clostridia)

  • 배무;이혜주
    • 한국미생물·생명공학회지
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    • 제18권1호
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    • pp.6-11
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    • 1990
  • Clostridium 속 세균에서 biomass의 생물학적 전환에 의한 수소 생성에 관하여 조사하기 위해 4균종을 대상으로 biomass를 구성하는 당류 이용도 및 그로부터의 수소 생성을 검토하였다. 효율적인 수소 생성 세균은 Cl.butyricum과 Cl.pasteurianum으로 xylose, cellobiose를 포함한 그외 단당, 이당류에서 높은 수소 생성능을 나타내었으며, 특히 Cl.butyricum의 경우, starch, xylan외에도 pectin의 이용성이 비교적 우수한 것으로 관찰되었다. 포도당(1) 이용시 회분 발효를 통하여 Cl.butyricum이 생성하는 유기산 (acetate와 butyrate)의 molar ratio(A/B)는 0.7-0.8을 나타내었다. Cl.butyricum의 회분 발효시 수소 생성에 영향을 미치는 배양조건을 검토하기 위해 pH, phosphate의 농도, glucose의 농도 및 배양 초기 대사산물(acetate, butyrate)의 영향을 관찰하였다.

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Effects of Sorghum Hybrid and Grain Supplementation of Silage-Based Diets on Nutrient Digestibilities and Passage Rates and Ruminal Metabolism in Growing Steers

  • Bolsen, K.K.;Dalke, B.S.;Sonon, R.N. Jr.;Young, M.A.;Huck, G.L.;Harbers, L.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제10권4호
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    • pp.391-397
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    • 1997
  • Six medium-framed steers, fitted with ruminal cannulas, were utilized in a $6{\times}6$ Latin square design with a $3{\times}2$ arrangement of treatments to determine the effects of sorghum hybrid and grain supplementation on nutrient digestibilities and passage rates and ruminal metabolism of silage-based diets fed to growing steers. The diets consisted of three wholes-plant silages (a high grain-containing, grain sorghum and middle-season, moderate grain-containing, and late-season, low grain-containing forage sorghums), each fed with or without 25% rolled grain sorghum. No significant interactions occurred between sorghum hybrid and grain supplementation for the digestion or passage rate criteria measured. Ruminal butyrate concentration was the only fermentation characteristic affected by a hybrid ${\times}$ grain supplementation interaction. The grain sorghum silage diets had the highest DM, OM, and ADF digestibilities; the late-season silage diets, the lowest. Digestibility of NDF tended to be highest (p < 0.10) for the grain sorghum silage, whereas starch digestibility was not affected by sorghum hybrid. Ruminal ammonia, acetate, propionate, butyrate, and total VFA concentrations were highest for the grain sorghum silage diets. Grain supplementation increased DM and OM digestibilities, but had no effect on digestibilities of NDF, ADF, and starch. Ruminal pH was decreased, but total VFA concentration and acetate : propionate ratio were not affected by grain supplementation.

환경친화적 섬유질 배합사료의 발효와 반추위 발효특성 변화 (Fermentation of Environmental Friend Total Mixed Ration and Alteration of Rumen Fermentation Characteristics)

  • 류채화;박명선;박철;최낙진;조상범
    • 한국유기농업학회지
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    • 제25권2호
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    • pp.461-473
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    • 2017
  • Total mixed ration (TMR) including concentrate diet and roughage together have been used for the ruminant animal. Relatively high concentrations of moisture and water soluble carbohydrate are representative feature of TMR. Those moisture and water can also provide a niche for bacterial growth. Therefore, a possible fermentation of TMR induced by micro-organism is generally accepted. The present study hypothesized that different lactic acid bacteria could alter fermentation of TMR and subsequently rumen fermentation. Three lactic acid bacteria, Lactobacillus paracasei (A), L. plantarum (B) and L. parabuchneri (C), were employed and 7 treatments under full factorial design were compared with control without inoculation. TMR for dairy cow was used. Significant alterations by treatments were detected at lactic acid and butyric acid contents in TMR (p<0.05). Treatment AC (mixture of A and C) and BC (mixture of B and C) showed great lactate production. Great butyrate production was found at treatment C. At in vitro rumen fermentation, treatments B, C and AB (mixture of A and B) showed significantly great total gas production (p<0.05). All treatments except treatments B and AB, showed less dry matter digestibility, significantly (p<0.05). Total volatile fatty acid production at treatment AC was significantly greater than others (p<0.05). In individual volatile fatty acid production, treatment AB and AC showed great acetate and propionate productions, significantly (p<0.05). This study investigated correlation between organic acid production in TMR and rumen volatile fatty acid production. And it was found that butyric acid in TMR had significant negative correlation with acetate, propionate, total volatile fatty acid, AP ratio and dry matter digestibility.

Effects of Forage:Concentrate Ratio on Growth Performance, Ruminal Fermentation and Blood Metabolites in Housing-feeding Yaks

  • Chen, G.J.;Song, S.D.;Wang, B.X.;Zhang, Z.F.;Peng, Z.L.;Guo, C.H.;Zhong, J.C.;Wang, Y.
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권12호
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    • pp.1736-1741
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    • 2015
  • The objective of this study was to determine the effect of forage: concentrate ratio (F:C) on growth performance, ruminal fermentation and blood metabolites of housing-feeding yaks. Thirty-two Maiwa male yaks (initial body weight = $207.99{\pm}3.31kg$) were randomly assigned to four dietary treatments (8 yaks per treatment). Experimental diets were: A, B, C, D which contained 70:30, 60:40, 50:50 and 40:60 F:C ratios, respectively. Dry matter intake and average daily gain in yaks fed the C and D diets were greater (p<0.05) than yaks fed the A and B diets. No differences were found in ruminal $NH_3-N$, total volatile fatty acids, acetate, butyrate, valerate, and isovalerate concentrations. The propionate concentration was increased (p<0.05) in the C and D groups compared with the A and B diets. In contrast, the acetate to propionate ratio was decreased and was lowest (p<0.05) in the C group relative to the A and B diets, but was similar with the D group. For blood metabolites, no differences were found in serum concentrations of urea-N, albumin, triglyceride, cholesterol, low density lipoprotein, alanine aminotransferase, and aspartate aminotransferase (p>0.05) among treatments. Treatment C had a higher concentration of total protein and high density lipoprotein (p<0.05) than A and B groups. In addition, there was a trend that the globulin concentration of A group was lower than other treatments (p = 0.079). Results from this study suggest that increasing the level of concentrate from 30% to 50% exerted a positive effect on growth performance, rumen fermentation and blood metabolites in yaks.

음식물쓰레기의 수소발효 타당성 평가 (Feasibility Test of Biohydrogen Production from Food Waste)

  • 한선기;김상현;신항식
    • 유기물자원화
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    • 제11권3호
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    • pp.87-95
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    • 2003
  • 그동안 유기성폐수에 대해서는 다양한 연구가 시도되었지만, 유기성고형폐기물에 대해서는 보도된 바가 없다. 그러므로 본 연구는 열처리된(heat-shocked) 혐기성슬러지를 식종한 침출상(leaching-bed) 반응조에서 다양한 희석율(dilution rate; D)에 대하여 음식물쓰레기로부터의 수소생산 효율을 살펴보았다. 반응조의 성공적인 운전은 적절한 희석율의 선택에 달려있는데, 높은 희석율에서는 미생물의 유실이 발생하는 반면 낮은 희석율에서는 유기산의 축적으로 product inhibition이 발생한다. 따라서 이러한 요인들이 높은 효율의 수소생산을 제한하게 된다. 모든 반응조들은 희석율에 관계없이 다음과 같은 경향을 보여주었다. 운전 초기 3일 동안, 수소생산이 활발하였으며 유기산의 농도가 에탄올보다 높게 유지되었다. 유기산 중에는 락트산이 초기 잠깐동안 높은 값을 유지했을지라도, 전체 운전기간 내내 뷰틸산과 초산이 유기산의 주요성분이었다. 다른 희석율에 비해 희석율 $4.5d^{-1}$는 발효가 진행되는 동안 가장 높은 뷰틸산/초산 (B/A) 비율을 보여주었는데, B/A 값의 경향은 수소생산의 경향과 매우 유사하여 뷰틸산의 형성이 수소생산에 매우 호의적임을 나타내준다. 에탄올은 수소생산이 멈춘 4일째부터 크게 증가하였는데, 이것은 열처리된 슬러지가 대사흐름을 수소 및 유기산생성경로(hydrogen-and acid-producing pathway)에서 알콜 생성경로(alcohol-producing pathway)로 전환시킬 수 있음을 보여준다. 희석율 $4.5d^{-1}$의 COD 제거효율은 58%로 다른 희석율(2.1, 3.6 및 $5.5d^{-1}$)의 제거율(51.5, 55.3 및 53.7%)보다 높았으며, 이때 제거된 COD는 수소(10.1%), 유기산(30.9%), 에탄올(17.0%)로 전환이 되었다.

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Fermentative Bio-Hydrogen Production of Food Waste in the Presence of Different Concentrations of Salt (Na+) and Nitrogen

  • Lee, Pul-eip;Hwang, Yuhoon;Lee, Tae-jin
    • Journal of Microbiology and Biotechnology
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    • 제29권2호
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    • pp.283-291
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    • 2019
  • Fermentation of food waste in the presence of different concentrations of salt ($Na^+$) and ammonia was conducted to investigate the interrelation of $Na^+$ and ammonia content in bio-hydrogen production. Analysis of the experimental results showed that peak hydrogen production differed according to the ammonia and $Na^+$ concentration. The peak hydrogen production levels achieved were (97.60, 91.94, and 49.31) ml/g COD at (291.41, 768.75, and 1,037.89) mg-N/L of ammonia and (600, 1,000, and 4,000) $mg-Na^+/L$ of salt concentration, respectively. At peak hydrogen production, the ammonia concentration increased along with increasing salt concentration in the medium. This means that for peak hydrogen production, the C/N ratio decreased with increasing salt content in the medium. The butyrate/acetate (B/A) ratio was higher in proportion to the bio-hydrogen production (r-square: 0.71, p-value: 0.0006). Different concentrations of $Na^+$ and ammonia in the medium also produced diverse microbial communities. Klebsiella sp., Enterobacter sp., and Clostridium sp. were predominant with high bio-hydrogen production, while Lactococcus sp. was found with low bio-hydrogen production.

Saccharomyces cerevisiae partially to completely ameliorates the adverse effects of aflatoxin on the in vitro rumen fermentation of buffalo diet

  • Singh, Ram;Koo, Jin Su;Park, Sungkwon;Balasubramanian, Balamuralikrishnan
    • 농업과학연구
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    • 제48권1호
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    • pp.73-81
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    • 2021
  • The current study investigated how Saccharomyces cerevisiae ameliorates the adverse effects of aflatoxin on in vitro rumen fermentation. In this study, five groups (T1: Control [basal feed]; T2: T1 + 300 ppb aflatoxin B1 [AFB1] and T3, T4, and T5: T2 with 0.05, 0.1, and 0.2% of S. cerevisiae, respectively) were prepared and incubated in vitro. The results revealed that truly degradable dry matter (TDDM), gas production (GP), microbial biomass production (MBP), truly degradable organic matter (TDOM), partitioning factor (PF), total volatile fatty acids (TVFA), acetate (A), propionate (P) and butyrate (B) values in the control group (T1) were higher (p < 0.05) than those of the AFB1 fed group (T2). The A : P ratio in the control group (T1) was reduced (p < 0.05) when compared to that of the T2 group. The TDDM, TDOM, GP, TVFA, A, P, and B values of T3, T4, and T5 improved with the increasing levels of S. cerevisiae; however, the values of group T5 were lower (p < 0.05) than that of the control. The values of MBP, A : P ratio and PF in group T5 were statistically similar to that of the control. It was concluded that the inclusion of S. cerevisiae (0.05 to 0.20%) to the AFB1 (300 ppb) contaminated feed partially to completely ameliorated the adverse effects of AFB1 on the in vitro rumen fermentation parameters.

Influence of various concentrations of aflatoxin B1 on in vitro rumen fermentation of a buffalo diet

  • Singh, Ram;Park, Sungkwon;Koo, Jin Su;Balasubramanian, Balamuralikrishnan
    • 농업과학연구
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    • 제47권1호
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    • pp.131-138
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    • 2020
  • The aim of this study was to evaluate the effect of aflatoxin B1 (AFB1) on in vitro rumen fermentation at various dose levels of 0 (T1), 100 (T2), 200 (T3), and 300 (T4) ppb in a wheat straw-based buffalo diet. The results show that the truly degradable dry matter, truly degradable organic matter, gas production, microbial biomass production and partitioning factor values in the control group (T1) were higher (p < 0.05) than those of the T2, T3, and T4 groups. The total volatile fatty acids, acetate, propionate, and butyrate values in the control group (T1) were higher (p < 0.05) than those of the T2, T3, and T4 groups. The partitioning factor value in the control group (T1) was higher (p < 0.05) than those of the T2, T3, and T4 groups. The partitioning factor values of the T2 and T3 groups were higher (p < 0.05) than that of the T4 group. There was no significant variation in the partitioning factor value between the T2 and T3 group. The acetate : propionate (A : P) ratio in the control group (T1) was lower (p < 0.05) than those of the T2, T3, and T4 groups. The A : P ratio in the T2 group was lower (p < 0.05) than those of the T3 and T4 groups. It was concluded that different levels of AFB1 contamination in feed significantly affect the in vitro rumen fermentation characteristics. Thus, these findings could help to determine the influences of AFB1 in a wheat straw-based buffalo diet. Additionally, it is necessary to manage AFB1 contamination in ruminants.

Saccharomyces cerevisiae Live Cells Decreased In vitro Methane Production in Intestinal Content of Pigs

  • Gong, Y.L.;Liao, X.D.;Liang, J.B.;Jahromi, M.F.;Wang, H.;Cao, Z.;Wu, Y.B.
    • Asian-Australasian Journal of Animal Sciences
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    • 제26권6호
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    • pp.856-863
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    • 2013
  • An in vitro gas production technique was used in this study to elucidate the effect of two strains of active live yeast on methane ($CH_4$) production in the large intestinal content of pigs to provide an insight to whether active live yeast could suppress $CH_4$ production in the hindgut of pigs. Treatments used in this study include blank (no substrate and no live yeast cells), control (no live yeast cells) and yeast (YST) supplementation groups (supplemented with live yeast cells, YST1 or YST2). The yeast cultures contained $1.8{\times}10^{10}$ cells per g, which were added at the rates of 0.2 mg and 0.4 mg per ml of the fermented inoculum. Large intestinal contents were collected from 2 Duroc${\times}$Landrace${\times}$Yorkshire pigs, mixed with a phosphate buffer (1:2), and incubated anaerobically at $39^{\circ}C$ for 24 h using 500 mg substrate (dry matter (DM) basis). Total gas and $CH_4$ production decreased (p<0.05) with supplementation of yeast. The methane production reduction potential (MRP) was calculated by assuming net methane concentration for the control as 100%. The MRP of yeast 2 was more than 25%. Compared with the control group, in vitro DM digestibility (IVDMD) and total volatile fatty acids (VFA) concentration increased (p<0.05) in 0.4 mg/ml YST1 and 0.2 mg/ml YST2 supplementation groups. Proportion of propionate, butyrate and valerate increased (p<0.05), but that of acetate decreased (p<0.05), which led to a decreased (p<0.05) acetate: propionate (A: P) ratio in the both YST2 treatments and the 0.4 mg/ml YST 1 supplementation groups. Hydrogen recovery decreased (p<0.05) with yeast supplementation. Quantity of methanogenic archaea per milliliter of inoculum decreased (p<0.05) with yeast supplementation after 24 h of incubation. Our results suggest that live yeast cells suppressed in vitro $CH_4$ production when inoculated into the large intestinal contents of pigs and shifted the fermentation pattern to favor propionate production together with an increased population of acetogenic bacteria, both of which serve as a competitive pathway for the available H2 resulting in the reduction of methanogenic archaea.