• 제목/요약/키워드: Bacterial Community

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16S rDNA 분석을 이용한 강화도 장화리 갯벌 퇴적물 내 미생물 군집구조 및 다양성 (Bacterial Community Structure and Diversity Using 16S rDNA Analysis in the Intertidal Sediment of Ganghwa Island)

  • 조혜연;이정현;현정호
    • 미생물학회지
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    • 제40권3호
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    • pp.189-198
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    • 2004
  • 강화도 장화리 갯벌 퇴적물 내의 두 층(0-1cm, 6-7cm 깊이)에 서식하는 미생물 군집구조 및 다양성을 비교하기 위해 16S rDNA의 서열에 기초한 말단제한절편 다형성(terminal-restriction fragment length polymorphism ; T-RFLP)분석과 클론의 염기서열 분석을 실시하였다. 제한 효소HhaI을 이용한 T-RFLP분석 결과표층(0-1cm)에서는 다양한 크기(($60{\pm}2$) bp-($667{\pm}2$)bp)의 말단제한절편(T-RF)들이 고른 분포로 나타났으며, 저층(6-7 cm)에서는 ($60{\pm}2$)bp와 ($93{\pm}2$) bp의 T-RF가 우세하게 나타나 표층에 비해 미생물 군집구조가 단순한 것으로 조사되었다. 총 172개의 클론의 16S rDNA부분 염기서열 분석 결과 98% 유사도 수준에서 98%의 클론이 GenBank에 등록된 염기서열 중 배양된 어떤 미생물과도 일치하지 않는 것으로 조사되었으며, 이 중 148개의 클론(86%)이 서로 다른 계통형(phylotype)으로 분류되어 다양한 미생물이 서식하고 있음을 알 수 있었다. 대부분의 클론들은 $\alpha$-, $\gamma$, $\delta$-Proteobacteria, Acidobacteria/Holophaga 그리고 green nonsulfur bacteria 그룹 내에 속하였고, 이 중 Proteobacteria 그룹이 표층에서는 전체의 69%, 저층에서는 46%의 높은 비율을 차지하였다. 또한 황원소의 산화와 환원에 관련된 $\gamma$-Proteobacteria와 $\delta$-Proteobacteria 그룹이 각각 21.5%와 15.7%로 우세하게 나타나 갯벌의 미생물 군집 구조가 혐기성 환경에서의 황환원에 의해 생성된 황의 거동과 밀접한 연관이 있음을 시사하였다.

난동감 하구 간석지에 존재하는 세균의 분포 및 생리적 활성도 (Distribution and Activity of Hheterotrophic Bacteria in the Mudflat of Nakdong River Estuary)

  • 김상종;홍순우;이윤;최성찬
    • 미생물학회지
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    • 제23권3호
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    • pp.215-222
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    • 1985
  • Distribution pattern and activity of heterotrophec bacteria were measured in the mudflat of Nakdong river estuary. In March and June, 1985, community sizes of amylolytic, lipolytic and proteolytic bacteria as well as total viable counts were measured. Vertical distribution of bacterial community size increased a few orders of magnitude from Narch to June. Heterotrophic activity was estimated in turnover time with $U-[^{14}C]-glucose$. Turnover time reduced considerably in June compared to that of March. To sxamine correlations for measured bacterial groups, turnover time and environmental factors, correlation coefficient matrix was obtained. These measured characteristics did not consistently correlate well with one another.

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Analysis of Bacterial Community Structure in Bulk Soil, Rhizosphere Soil, and Root Samples of Hot Pepper Plants Using FAME and 16S rDNA Clone Libraries

  • Kim, Jong-Shik;Kwon, Soon-Wo;Jordan, Fiona;Ryu, Jin-Chang
    • Journal of Microbiology and Biotechnology
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    • 제13권2호
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    • pp.236-242
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    • 2003
  • A culture-independent and -dependent survey of the bacterial community structure in the rhizosphere and soil samples from hot pepper plants was conducted using 16S rDNA clone library and FAME analyses. Out of the 78 clones sequenced, 56% belonged to Proteobacteria, 4% to high G+C Gram- positive group, 3% to Cytophyga-Flexibacter-Bacreroides, and 32% could not be grouped with any known taxonomic division. Among the 127 FAME isolates identified, 66% belonged to low G+C Gram-positive bacteria (Baciilus spp.) and 26% to high G+C Gram-positive bacteria. In a cluster analysis, the results for both methods were found to be strikingly dissimilar. The current study is the first comparative study of FAME and 165 rDNA clonal analyses performed on the same set of soil, rhizosphere soil, and root samples.

Bacterial Community Structure and the Dominant Species in Imported Pollens for Artificial Pollination

  • Kim, Su-Hyeon;Do, Heeil;Cho, Gyeongjun;Kim, Da-Ran;Kwak, Youn-Sig
    • The Plant Pathology Journal
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    • 제37권3호
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    • pp.299-306
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    • 2021
  • Pollination is an essential process for plants to carry on their generation. Pollination is carried out in various ways depending on the type of plant species. Among them, pollination by insect pollinator accounts for the most common. However, these pollinators have be decreasing in population density due to environmental factors. Therefore, use of artificial pollination is increasing. However, there is a lack of information on microorganisms present in the artificial pollens. We showed the composition of bacteria structure present in the artificial pollens of apple, kiwifruit, peach and pear, and contamination of high-risk pathogens was investigated. Acidovorax spp., Pantoea spp., Erwinia spp., Pseudomonas spp., and Xanthomonas spp., which are classified as potential high-risk pathogens, have been identified in imported pollens. This study presented the pollen-associated bacterial community structure, and the results are expected to be foundation for strengthening biosecurity in orchard industry.

Effect of pH on soil bacterial diversity

  • Cho, Sun-Ja;Kim, Mi-Hee;Lee, Young-Ok
    • Journal of Ecology and Environment
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    • 제40권1호
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    • pp.75-83
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    • 2016
  • Background: In order to evaluate the effect of pH, known as a critical factor for shaping the biogeographical microbial patterns in the studies by others, on the bacterial diversity, we selected two sites in a similar geographical location (site 1; north latitude 35.3, longitude 127.8, site 2; north latitude 35.2, longitude 129.2) and compared their soil bacterial diversity between them. The mountain soil at site 1 (Jiri National Park) represented naturally acidic but almost pollution free (pH 5.2) and that at site 2 was neutral but exposed to the pollutants due to the suburban location of a big city (pH 7.7). Methods: Metagenomic DNAs from soil bacteria were extracted and amplified by PCR with 27F/518R primers and pyrosequenced using Roche 454 GS FLX Titanium. Results: Bacterial phyla retrieved from the soil at site 1 were more diverse than those at site 2, and their bacterial compositions were quite different: Almost half of the phyla at site 1 were Proteobacteria (49 %), and the remaining phyla were attributed to 10 other phyla. By contrast, in the soil at site 2, four main phyla (Actinobacteria, Bacteroidetes, Proteobacteria, and Cyanobacteria) composed 94 %; the remainder was attributed to two other phyla. Furthermore, when bacterial composition was examined on the order level, only two Burkholderiales and Rhizobiales were found at both sites. So depending on pH, the bacterial community in soil at site 1 differed from that at site 2, and although the acidic soil of site 1 represented a non-optimal pH for bacterial growth, the bacterial diversity, evenness, and richness at this site were higher than those found in the neutral pH soil at site 2. Conclusions: These results and the indices regarding diversity, richness, and evenness examined in this study indicate that pH alone might not play a main role for bacterial diversity in soil.

Impact of a Recombinant Biocontrol Bacterium, Pseudomonas fluorescens pc78, on Microbial Community in Tomato Rhizosphere

  • Kong, Hyun Gi;Kim, Nam Hee;Lee, Seung Yeup;Lee, Seon-Woo
    • The Plant Pathology Journal
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    • 제32권2호
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    • pp.136-144
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    • 2016
  • Pseudomonas fluorescens pc78 is an effective biocontrol agent for soil-borne fungal diseases. We previously constructed a P43-gfp tagged biocontrol bacteria P. fluorescens pc78-48 to investigate bacterial traits in natural ecosystem and the environmental risk of genetically modified biocontrol bacteria in tomato rhizosphere. Fluctuation of culturable bacteria profile, microbial community structure, and potential horizontal gene transfer was investigated over time after the bacteria treatment to the tomato rhizosphere. Tagged gene transfer to other organisms such as tomato plants and bacteria cultured on various media was examined by polymerase chain reaction, using gene specific primers. Transfer of chromosomally integrated P43-gfp from pc78 to other organisms was not apparent. Population and colony types of culturable bacteria were not significantly affected by the introduction of P. fluorescens pc78 or pc78-48 into tomato rhizosphere. Additionally, terminal restriction fragment length polymorphism profiles were investigated to estimate the influence on the microbial community structure in tomato rhizosphere between non-treated and pc78-48-treated samples. Interestingly, rhizosphere soil treated with strain pc78-48 exhibited a significantly different bacterial community structure compared to that of non-treated rhizosphere soil. Our results suggest that biocontrol bacteria treatment influences microbial community in tomato rhizosphere, while the chromosomally modified biocontrol bacteria may not pose any specific environmental risk in terms of gene transfer.