• 제목/요약/키워드: microbial inocula

검색결과 6건 처리시간 0.018초

Differences in Microbial Activities of Faeces from Weaned and Unweaned Pigs in Relation to In vitro Fermentation of Different Sources of Inulin-type Oligofructose and Pig Feed Ingredients

  • Shim, S.B.;Verdonk, J.M.A.J.;Pellikaan, W.F.;Verstegen, W.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권9호
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    • pp.1444-1452
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    • 2007
  • An in vitro experiment was conducted to evaluate the differences in microbial activity of five faecal inocula from weaned pigs and one faecal inoculum from unweaned pigs in combination with 6 substrates. The substrates tested were negative control diet, corn, soybean meal, oligofructose (OF), ground chicory roots and a mixture (60% chicory pulp and 40% OF). The inocula used were derived from pigs fed either a corn-soy based diet without antibiotics (NCON), the NCON diet supplemented with oligofructose (OF), a mixture of chicory pulp (40%) and OF (60%) (MIX), ground chicory roots (CHR) or the NCON diet supplemented with antibiotics (PCON). The cumulative gas production measured fermentation kinetics and end products, such as total gas production, ammonia and volatile fatty acids, were also determined. Both the substrate and the inoculum significantly affected the fermentation characteristics. The cumulative gas production curve showed that different substrates caused more differences in traits of fermentation kinetics than the different inocula. Inocula of weaned pigs gave a significantly higher VFA production compared to the inoculum from unweaned animals, whilst the rate of fermentation and the total gas produced did not differ. OF showed the highest fermentation kinetics and the lowest $NH_3$, pH and OM loss compared to other substrates. It was concluded that the microbial activity was significantly affected by substrate and inoculum. Inoculum from weaned pigs had more potential for microbial fermentation of the carbohydrate ingredients and oligofructose than that of unweaned pigs. A combination of high and low polymer inulin may be more beneficial to the gut ecosystem than using high- or low-polymer inulin alone.

Enhancing anaerobic digestion of vegetable waste and cellulose by bioaugmentation with rumen culture

  • Jo, Yeadam;Hwang, Kwanghyun;Lee, Changsoo
    • Membrane and Water Treatment
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    • 제10권3호
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    • pp.213-221
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    • 2019
  • Anaerobic digestion (AD) has been widely used to valorize food waste (FW) because of its ability to convert organic carbon into $CH_4$ and $CO_2$. Korean FW has a high content of fruits and vegetables, and efficient hydrolysis of less biodegradable fibers is critical for its complete stabilization by AD. This study examined the digestates from different anaerobic digesters, namely Rs, Rr, and Rm, as the inocula for the AD of vegetable waste (VW) and cellulose (CL): Rs inoculated with anaerobic sludge from an AD plant, Rr inoculated with rumen fluid, and Rm inoculated with anaerobic sludge and augmented with rumen fluid. A total of six conditions ($3\;inocula{\times}2\;substrates$) were tested in serial subcultures. Biogas yield was higher in the runs inoculated with Rm than in the other runs for both VW (up to 1.10 L/g VS added) and CL (up to 1.05 L/g VS added), and so was biogas production rate. The inocula had different microbial community structures, and both substrate type and inoculum source had a significant effect on the formation and development of microbial community structures in the subcultures. The overall results suggest that the bioaugmentation with rumen microbial consortium has good potential to enhance the anaerobic biodegradability of VW, and thereby can help more efficiently digest high fiber-content Korean FW.

미생물 종균제(KMT-199)를 이용한 퇴비제조 공정의 악취제거 (Prevention and Control of composting Odors Using Microbial Inocula, KMT-199)

  • 남이;김국진;성기철;박기돈;김진만
    • 한국토양환경학회지
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    • 제4권3호
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    • pp.57-65
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    • 1999
  • 퇴비 제조장에서 발생하는 여러 가지 악취원 중 가장 문제가 되는 암모니아가스의 발생량을 감소시키기 위하여 (주)인바이오넷에서 유용미생물을 제제화 하여 개발한 미생물종균제, KMT-199(상품명: 콤포백)를 사용하여 현장시험을 수행하였다. KMT-199를 첨가한 경우 퇴비화 초기단계에서의 중온성, 고온성 미생물밀도가 무처리구에 비하여 10배 이상 증가되었으며, 발효 초기의 퇴비 내 온도와 pH의 증가 폭이 크게 나타났다. 온도는 KMT-199가 첨가된 처리구에서 발효 9일째, $75^{\circ}C$로 가장 높게 측정되어 무처리구에 비하여 퇴비의 최고 발열 시간을 3일 앞당겼으며, 최고 온도는 $4^{\circ}C$높았다. pH는 퇴비화가 진행되면서 지속적으로 증가되었는데, KMT-199가 첨가된 처리구에서는 발효 15일 째 이후에는 더 이상 증가하지 않고 감소되는 경향을 보였으나, 무처리구에서는 발효 38일째 까지 지속적으로 증가하는 경향을 나타내었다. 교반식 퇴비화 공정에 KMT-199를 투여한 결과 암모니아 가스의 발생량을 무처리구에 비하여 29%감소시킬 수 있었다. KMT-199를 사용하여 제조된 퇴비의 경우 대조구에 비하여 무 종자의 발아율이 증가하는 것으로 나타났다. 이것은 퇴비화 과정에서 미생물 생태를 변화시켜 줌으로서 퇴비화 과정에서 발생되는 유기물의 분해 촉진, 퇴비의 온도상승, 화학적변화의 촉진으로 퇴비의 부숙도 증가와 암모니아 가스 발생량이 감소된다는 것을 나타낸다.

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Effects of diets for three growing stages by rumen inocula donors on in vitro rumen fermentation and microbiome

  • Ryukseok Kang;Huseong Lee;Hyeonsu Seon;Cheolju Park;Jaeyong Song;Joong Kook Park;Yong Kwan Kim;Minseok Kim;Tansol Park
    • Journal of Animal Science and Technology
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    • 제66권3호
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    • pp.523-542
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    • 2024
  • Hanwoo and Jeju Black cattle (Jeju Black) are native breeds of Korean cattle. Jeju Black cattle are recognized as natural monuments and are known to exhibit slower growth rates compared to Hanwoo. While several studies have analyzed the genetic characteristics of these cattle, there has been limited research on the differences in their microbiome. In this study, rumen fluid was obtained from three Hanwoo steers and three Jeju Black steers, and three different diets (total mixed rations [TMRs] for growing, early fattening, and late fattening periods) were used as substrates for in vitro fermentation. The in vitro incubation was conducted for 3 h and 24 h following a 2 × 3 factorial arrangement. After both incubation periods, fermentation characteristics were analyzed, and ruminal microbiome analysis was performed using 16S rRNA gene sequencing, employing both QIIME2 and PICRUSt2. The results revealed significant differences in the ruminal microbiota due to the inoculum effect. At the phylum level, Patescibacteria and Synergistota were found to be enriched in the Jeju Black inoculum-treated group. Additionally, using different inocula also affected the relative abundance of major taxa, including Ruminococcus, Pseudoramibacter, Ruminococcaceae CAG-352, and the [Eubacterium] ruminantium group. These microbial differences induced by the inoculum may have originated from varying levels of domestication between the two subspecies of donor animals, which mainly influenced the fermentation and microbiome features in the early incubation stages, although this was only partially offset afterward. Furthermore, predicted commission numbers of microbial enzymes, some of which are involved in the biosynthesis of secondary metabolites, fatty acids, and alpha amylase, differed based on the inoculum effect. However, these differences may account for only a small proportion of the overall metabolic pathway. Conversely, diets were found to affect protein biosynthesis and its related metabolism, which showed differential abundance in the growing diet and were potentially linked to the growth-promoting effects in beef cattle during the growing period. In conclusion, this study demonstrated that using different inocula significantly affected in vitro fermentation characteristics and microbiome features, mainly in the early stages of incubation, with some effects persisting up to 24 h of incubation.

Effectiveness of Bioremediation on Oil-Contaminated Sand in Intertidal Zone

  • Oh, Young-Sook;Sim, Doo-Suep;Kim, Sang-Jin
    • Journal of Microbiology and Biotechnology
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    • 제13권3호
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    • pp.437-443
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    • 2003
  • Bioremediation technologies were applied to experimental microcosms, simulating an oil spill in a lower intertidal area. Three treatments (oil only, oil plus nutrients, and oil plus nutrients and microbial inocula) were applied, and each microcosm was repeatedly filled and eluted with seawater every 12 h to simulate tidal cycles. To minimize washing-out of the inoculum by the tidal cycles, microbial cells were primarily immobilized on diatomaceous earth before they were applied to the oiled sand. Oil degradation was monitored by gravimetric measurements, thin layer chromatography/flame ionization detector (TLC/FID) analysis, and gas chromatography (GC) analysis, and the loss of oil content was normalized to sand mass or nor-hopane. When the data were normalized to sand mass, no consistent differences were detected between nutrient-amended and nutrient/inoculum-amended microcosms, although both differed from the oil-only microcosm in respect of oil removal rate by a factor of 4 to 14. However, the data relative to nor-hopane showed a significant treatment difference between the nutrient-amended and nutrient/inoculum-treated microcosms, especially in the early phase of the treatment. The accelerating effect of inoculum treatment has hardly been reported in studies of oil bioremediation in the Tower intertidal area. The inoculum immobilized on diatomaceous earth seemed to be a very effective formulation for retaining microbial cells in association with the sand. Results of this study also suggest that interpretation of the effectiveness of bioremediation could be dependent on the selection of monitoring methods, and consequently the application of various analytical methods in combination could be a solution to overcome the limitations of oil bioremediation monitoring.

16S rDNA를 이용한 토양, 작물근계의 세균군집 구조해석 (Analysis of Bacterial Community Structure in the Soil and Root System by 168 rRNA Genes)

  • 김종식;권순우;류진창;양창술
    • 한국토양비료학회지
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    • 제33권4호
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    • pp.266-274
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    • 2000
  • 토양과 작물근계의 유용미생물을 이용하여 작물생산성을 증대하고 병충해의 생물학적 방제를 위해서는 토양-근계의 미생물군집을 분석하고 그 기능을 밝히는 것이 전제가 되어야한다. 그러나 희석평판법으로는 극히 일부분만이 배양된다는 점을 고려할 때, 생존하지만 배양 불가능한 미생물의 군집 분석도 반드시 병행할 필요가 있다. 따라서 본 연구에서는, 고추재배지의 토양, 근권토양, 근면의 세균군집 구조해석을 위해서, 배양을 거치지 않고 각 시료로부터 직접 DNA를 추출하여 PCR증폭, 16S rDNA cloning, sequencing, 계통 해석을 행했다. 그 결과, 토양중에는 근권세균보다 미지의 동정이 되지 않는 세균이 우점하고 있었다. 27 clones 중에서 16 clones이 그램음성세균의 대표격인 Proteobacteria였으며, 방선균 등이 속해있는 고(高) G+C 그램양성세균군은 1 clone이 검출되었다. 그 외는 CFB 군이 2 clones, Verrucomicrobia가 1 clone이었고, Nitrospira가 1 clone이었으며 4 clones은 어느 군에도 속하지 않았다.

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