• 제목/요약/키워드: Microbial communities

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Seasonal Change of Sediment Microbial Communities and Methane Emission in Young and Old Mangrove Forests in Xuan Thuy National Park

  • Cuong Tu Ho;Unno Tatsuya;Son Giang Nguyen;Thi-Hanh Nguyen;Son Truong Dinh;Son Tho Le;Thi-Minh-Hanh Pham
    • Journal of Microbiology and Biotechnology
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    • 제34권3호
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    • pp.580-588
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    • 2024
  • Microbial communities in mangrove forests have recently been intensively investigated to explain the ecosystem function of mangroves. In this study, the soil microbial communities under young (<11 years-old) and old (>17 years-old) mangroves have been studied during dry and wet seasons. In addition, biogeochemical properties of sediments and methane emission from the two different mangrove ages were measured. The results showed that young and old mangrove soil microbial communities were significantly different on both seasons. Seasons seem to affect microbial communities more than the mangrove age does. Proteobacteria and Chloroflexi were two top abundant phyla showing >15%. Physio-chemical properties of sediment samples showed no significant difference between mangrove ages, seasons, nor depth levels, except for TOC showing significant difference between the two seasons. The methane emission rates from the mangroves varied depending on seasons and ages of the mangrove. However, this did not show significant correlation with the microbial community shifts, suggesting that abundance of methanogens was not the driving factor for mangrove soil microbial communities.

하수슬러지 처리 실규모 중온 혐기성 소화조 미생물 군집 및 다양성 조사 (Microbial Communities and Diversities in a Full-Scale Mesophilic Anaerobic Digester Treating Sewage Sludge )

  • 김민재;박수인;이주윤;이혜빈;강선민;배효관;이준엽
    • 한국환경과학회지
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    • 제31권12호
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    • pp.1051-1059
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    • 2022
  • This study investigated microbial communities and their diversity in a full-scale mesophilic anaerobic digester treating sewage sludge. Influent sewage sludge and anaerobic digester samples collected from a wastewater treatment plant in Busan were analyzed using high-throughput sequencing. It was found that the microbial community structure and diversity in the anaerobic digester could be affected by inoculation effect with influent sewage sludge. Nevertheless, distinct microbial communities were identified as the dominant microbial communities in the anaerobic digester. Twelve genera were identified as abundant bacterial communities, which included several groups of syntrophic bacteria communities, such as Candidatus Cloacimonas, Cloacimonadaceae W5, Smithella, which are (potential) syntrophic-propionate-oxidizing bacteria and Mesotoga and Thermovigra, which are (potential) syntrophic-acetate-oxidizing bacteria. Lentimicrobium, the most abundant genus in the anaerobic digester, may contribute to the decomposition of carbohydrates and the production of volatile fatty acids during the anaerobic digestion of sewage sludge. Of the methanogens identified, Methanollinea, Candidatus Methanofastidiosum, Methanospirillum, and Methanoculleus were the dominant hydrogenotrophic methanogens, and Methanosaeta was the dominant aceticlastic methanogens. The findings may be used as a reference for developing microbial indicators to evaluate the process stability and process efficiency of the anaerobic digestion of sewage sludge.

기질에 따른 미생물 전해 전지-혐기성 소화의 미생물 군집 특성 (Effect of Substrates on the Microbial Communities in a Microbial Electrolysis Cell and Anaerobic Digestion Coupled System)

  • 이채영;한선기
    • 한국수소및신에너지학회논문집
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    • 제30권3호
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    • pp.269-275
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    • 2019
  • This study was conducted to evaluate the microbial communities in coupled system of a microbial electrolysis cell and an anaerobic digestion. Glucose, butyric acid, propionic acid and acetic acid were used as substrates. The maximum methane production and methane production rate of propionic acid respectively were $327.9{\pm}6.7mL\;CH_4/g\;COD$ and $28.3{\pm}3.1mL\;CH_4/g\;COD{\cdot}d$, which were higher than others. Microbial communities' analyses indicated that acetoclastic methangens were predominant in all systems. But the proportion of hydrogenotrophic methanogens was higher in the system using propionic acid as a substrate when compared to others. In coupled system of a microbial electrolysis cell and anaerobic digestion, the methane production was higher as the distribution of hydrogen, which was generated by substrate degradation, and proportion of hydrogenotrophic methanogens was higher.

A Culture-Independent Comparison of Microbial Communities of Two Maturating Craft Beers Styles

  • Joao Costa;Isabel N. Sierra-Garcia;Angela Cunha
    • 한국미생물·생명공학회지
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    • 제50권3호
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    • pp.404-413
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    • 2022
  • The process of manufacturing craft beer involves a wide variety of spontaneous microorganisms, acting in different stages of the brewing process, that contribute to the distinctive characteristics of each style. The objective of this work was to compare the structure of microbial communities associated with two different craft beer styles (Doppelbock and Märzen lagers), at a late maturation stage, and to identify discriminative, or style-specific taxa. Bacterial and fungal microbial communities were analyzed by Illumina sequencing of 16S rRNA gene of prokaryotes and the ITS 2 spacer of fungi (eukaryotes). Fungal communities in maturating beer were dominated by the yeast Dekkera, and by lactic acid (Lactobacillus and Pediococcus) and acetic acid (Acetobacter) bacteria. The Doppelbock barrels presented more rich and diverse fungal communities. The Märzen barrels were more variable in terms of structure and composition of fungal and bacterial communities, with occurrence of exclusive taxa of fungi (Aspergillus sp.) and bacteria (L. kimchicus). Minority bacterial taxa, differently represented in the microbiome of each barrel, may underlie the variability between barrels and ultimately, the distinctive traits of each style. The composition of the microbial communities indicates that in addition to differences related to upstream stages of the brewing process, the contact with the wood barrels may contribute to the definition of style-specific microbiological traits.

관행과 유기농 고추 재배지의 토양미생물 군집 비교 (Comparative Analysis of Soil Microbial Communities between Conventional and Organic Farming Systems in Pepper Cultivation)

  • 김이슬;이영미;원항연;상미경;송재경
    • 한국유기농업학회지
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    • 제28권2호
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    • pp.235-250
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    • 2020
  • 작물 재배 방법이 토양의 미생물 군집 특성과 화학성에 미치는 영향을 검토하였다. 이를 위해서 다섯 곳의 고추 관행 재배지와 다섯 곳의 유기농 재배지 토양을 채취한 후, 16S rRNA 유전자 기반의 파이로시퀀싱 기법으로 미생물 군집을 조사하였다. 분석 결과 총 22개의 세균 문으로 구성되었으며 Proteobacteria 문(33.0 ± 5.7%), Actinobacteria 문(19.9 ± 9.7%) 및 Firmicutes 문(13.6 ± 5.0%)이 우점하였고, 이들은 전체 상대풍부도의 66%를 차지하였다. 고추 관행 재배지와 유기농 재배지의 미생물 군집 분포를 비교했을 때 전반적으로 서로 다른 군집 특성을 나타내었다. 또한 관행 재배 토양에서는 Actinobacteria 문과 Chloroflexi 문이 상대적으로 풍부하였고, 유기 재배 토양에서는 Proteobacteria 문과 Firimicutes 문이 상대적으로 풍부하였다. 특히 Streptomyces 속과 Bacillus 속의 상대풍부도는 관행 재배 토양과 유기 재배 토양 간에 상당한 차이를 보였다. 또한 토양 화학 성에 의하여 세균 군집 변화가 관찰되었는데, Proteobacteria 문의 Rhizobiales 목과 Actinobacteria 문의 Streptomyces 속은 pH에 의해 세균 군집이 바뀌었고, Firimicutes 문의 Bacillus 속은 유기물 함량에 의해 군집 분포가 바뀌었다. 본 연구결과는 재배관리에 따른 토양의 물리-화학성의 변화가 미생물 군집 분포에 뚜렷하게 관련(p<0.05)되어 있다는 것을 보여주었다.

토양미생물 생태 연구를 위한 증폭 파이로시퀀싱 기법의 응용 (Application of Amplicon Pyrosequencing in Soil Microbial Ecology)

  • 안재형;김병용;김대훈;송재경;원항연
    • 한국토양비료학회지
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    • 제45권6호
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    • pp.1073-1085
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    • 2012
  • Soil microbial communities are immensely diverse and complex with respect to species richness and community size. These communities play essential roles in agricultural soil because they are responsible for most of the nutrient cycles in the soil and influence the plant diversity and productivity. However, the majority of these microbes remain uncharacterized because of poor culturability. Next-generation sequencing techniques have revolutionized many areas of biology by providing cheaper and faster alternatives to Sanger sequencing. Among them, amplicon pyrosequencing is a powerful tool developed by 454 Life Sciences for assessing the diversity of complex microbial communities by sequencing PCR products or amplicons. This review summarizes the current opinions in amplicon sequencing of soil microbial communities, and provides practical guidance and advice on sequence quality control, aligning, clustering, OTU- and taxon-based analysis. The last section of this article includes a few representative studies conducted using amplicon pyrosequencing.

메주의 크기에 따른 간장의 미생물 군집 변화 양상 분석 (Analysis of Microbial Community Change in Ganjang According to the Size of Meju)

  • 정호진;하광수;이란희;정도연;양희종
    • 생명과학회지
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    • 제34권7호
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    • pp.453-464
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    • 2024
  • 간장의 발효는 원재료인 메주와 천일염에서 천이된 미생물 군집에 큰 영향을 받는 것으로 알려져 있다. 본 연구에서는 간장의 발효 고도화를 위하여 메주의 크기 변화가 간장의 미생물 군집에서 분포 변화와 분포 상관관계에 대하여 미치는 영향을 조사하였다. 메주를 전체, 삼등분하여 간장을 제조하였으며, 28일간 발효를 진행하면서 7일 간격으로 간장 시료를 수집하여 16S rRNA 유전자 기반의 미생물 군집 분석을 진행하였다. 속 수준에서 발효가 진행되면서 메주를 전체 사용하여 제조한 간장은 Chromohalobacter (7일), Pediococcus (14일), Bacillus (21일), Pediococcus (28일) 순으로, 메주를 삼등분하여 제조한 간장은 28일 연속으로 Pediococcus가 가장 우점하였다. 메주 크기를 달리한 간장들의 미생물 군집의 beta-diversity 분석 결과, 발효 7일 차와 14일 차에서 메주 크기를 달리하여 제조한 간장의 미생물 군집 분리가 유의미한 차이를 가진다고 보여주었으나 발효 21일 차와 28일 차에는 모든 실험구의 미생물 군집은 분리되지 않았다. 미생물 군집의 분리가 시각적으로 나타난 발효 7일 차와 14일 차에서 미생물 군집 차이를 부여하는 바이오마커를 조사하기 위해 선형 판별 효과 크기 분석을 수행하여 LDA size 별로 정렬하였으며, 발효 7일차에서는 Gammaproteobacteria, Firmicutes, Oceanospirillales, Halomonadaceae, Bacilli, Chromohalobacter 순으로 호염성 미생물군이, 발효 14일 차에서는 Pedioccoccus acidilactici, Lactobacillaceae, Pediococcus, Bacilli, Leuconostocaceae, Weissella 순으로 유산균군이 미생물 군집 차이를 나타내는 것으로 조사되었다. 또한 속과 종에 속하는 바이오마커 미생물군을 주요 미생물로 간주하여 상관관계를 분석한 결과, 메주 크기 별로 미생물군집 간 상관관계가 차이가 있으며, 이에 따라 메주 크기가 간장 내 미생물 간 상호작용에 영향을 미칠 수 있는 것을 확인하였다.

암모니아 부하에 따른 프로피온산 중온 혐기성 소화 미생물 군집 변동 조사 (Effect of Ammonia Load on Microbial Communities in Mesophilic Anaerobic Digestion of Propionic Acid)

  • ;이준엽
    • 한국환경과학회지
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    • 제30권12호
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    • pp.1093-1100
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    • 2021
  • The present study investigated the effect of ammonia load on microbial communities in mesophilic anaerobic digestion of propionic acid. A laboratory-scale continuous anaerobic digester treating propionic acid as a sole organic substrate was operated under non-inhibitory condition and inhibitory conditions with ammonia (1.5 g and 3.5 g ammonia-N/L, respectively), and bacterial and archaeal communities in the steady states of each ammonia condition were analyzed using high-throughput sequencing. Thirteen bacterial families were detected as abundant bacterial groups in mesophilic anaerobic digestion of propionic acid. Increase in ammonia concentration resulted in significant shifts in microbial community structures. Syntorophobacter, Pelotomaculum, and Thermovigra were determined as the dominant groups of (potential) propionate oxidizing bacteria in the non-inhibitory condition, whereas Cryptanaerobacter and Aminobacterium were the dominant groups of (potential) propionate oxidizing bacteria in the ammonia-inhibitory condition. Methanoculleus and Methanosaeta were the dominant methanogens. Acetate-oxidation coupled with hydrogenotrophic methanogenesis might be enhanced with increases in the relative abundances of Methanoculleus and Tepidanaerobacter acetatoxydans under the ammonia-inhibitory condition. The results of the present study could be a valuable reference for microbial management of anaerobic digestion systems that are exposed to ammonia inhibition and propionic acid accumulation.

Characterization of Interphase Microbial Community in Luzhou-Flavored Liquor Manufacturing Pits of Various Ages by Polyphasic Detection Methods

  • Li, Hui;Huang, Jun;Liu, Xinping;Zhou, Rongqing;Ding, Xiaofei;Xiang, Qianyin;Zhang, Liqiang;Wu, Chongde
    • Journal of Microbiology and Biotechnology
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    • 제27권1호
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    • pp.130-140
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    • 2017
  • It is vital to understand the changing characteristics of interphase microbial communities and interspecies synergism during the fermentation of Chinese liquors. In this study, microbial communities in the three indispensable phases (pit mud, zaopei, and huangshui) of Luzhou-flavored liquor manufacturing pits and their shifts during cellars use were first investigated by polyphasic culture-independent approaches. The archaeal and eubacterial communities in the three phases were quantitatively assessed by combined phospholipid ether lipids/phospholipid fatty acid analysis and fluorescence in situ hybridization. In addition, qualitative information regarding the microbial community was analyzed by PCR-denaturing gradient gel electrophoresis. Results suggested that the interphase microbial community profiles were quite different, and the proportions of specific microbial groups evolved gradually. Anaerobic bacteria and gram-positive bacteria were dominant and their numbers were higher in pit mud ($10^9$ cells/g) than in huangshui ($10^7$ cells/ml) and zaopei ($10^7$ cells/g). Hydrogenotrophic methanogenic archaea were the dominant archaea, and their proportions were virtually unchanged in pit mud (around 65%), whereas they first increased and then decreased in zaopei (59%-82%-47%) and increased with pit age in huangshui (82%-92%). Interactions between microbial communities, especially between eubacteria and methanogens, played a key role in the formation of favorable niches for liquor fermentation. Furthermore, daqu (an essential saccharifying and fermentative agent) and metabolic regulation parameters greatly affected the microbial community.

EVALUATION OF MICROBIAL RISK IN SOIL AMENDED WITH ORGANIC FERTILIZERS FROM STABILIZED SWINE MANURE WASTE

  • Han, Il;Lee, Young-Shin;Park, Joon-Hong
    • Environmental Engineering Research
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    • 제12권4호
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    • pp.129-135
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    • 2007
  • This study evaluated microbial risk that could develop within soil microbial communities after amended with organic fertilizers from stabilized swine manure waste. For this purpose, we assessed the occurrences and competitiveness of antibiotic resistance and pathogenicity in soil microbial communities that were amended with swine manure wastes stabilized by a traditional lagoon fermentation process and an autothermal thermophilic aerobic digestion process, respectively. According to laboratory cultivation detection analysis, soil applications of the stabilized organic fertilizers resulted in increases in absolute abundances of antibiotic resistant bacteria and of two tested pathogenic bacteria indicators. The increase in occurrences might be due to the overall growth of microbial communities by the supplement of nutrients from the fertilizers. Meanwhile, the soil applications were found to reduce competitiveness for various types of antibiotic resistant bacteria in the soil microbial communities, as indicated by the decrease in relative abundances (of total viable heterotrophic bacteria). However, competitiveness of pathogens in response to the fertilization was pathogens-specific, since the relative abundance of Staphylococcus was decreased by the soil applications, while the relative abundance of Salmonella was increased. Further testes revealed that no MAR (multiple antibiotic resistance) occurrence was detected among cultivated pathogen colonies. These findings suggest that microbial risk in the soil amended with the fertilizers may not be critical to public health. However, because of the increased occurrences of antibiotic resistance and pathogenicity resulted from the overall microbial growth by the nutrient supply from the fertilizers, potential microbial risk could not be completely ruled out in the organic-fertilized soil samples.