Journal Articles
- Quorum Quenching Potential of Reyranella sp. Isolated from Riverside Soil and Description of Reyranella humidisoli sp. nov.
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Dong Hyeon Lee, Seung Bum Kim
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J. Microbiol. 2024;62(6):449-461. Published online May 30, 2024
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DOI: https://doi.org/10.1007/s12275-024-00131-2
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Abstract
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Quorum quenching refers to any mechanism that inhibits quorum sensing processes.
In this study, quorum quenching activity among bacteria inhabiting riverside soil was screened, and a novel Gram-stain-negative, rod shaped bacterial strain designated MMS21-HV4-11(T), which showed the highest level of quorum quenching activity, was isolated and subjected to further analysis. Strain MMS21-HV4-11(T) could be assigned to the genus Reyranella of Alphaproteobacteria based on the 16S rRNA gene sequence, as the strain shared 98.74% sequence similarity with Reyranella aquatilis seoho-37(T), and then 97.87% and 97.80% sequence similarity with Reyranella soli KIS14-15(T) and Reyranella massiliensis 521(T), respectively. The decomposed N-acyl homoserine lactone was restored at high concentrations under acidic conditions, implying that lactonase and other enzyme(s) are responsible for quorum quenching. The genome analysis indicated that strain MMS21-HV4-11(T) had two candidate genes for lactonase and one for acylase, and expected protein structures were confirmed. In the quorum sensing inhibition assay using a plant pathogen Pectobacterium carotovorum KACC 14888, development of soft rot was significantly inhibited by strain MMS21-HV4-11(T).
Besides, the swarming motility by Pseudomonas aeruginosa PA14 was significantly inhibited in the presence of strain MMS21-HV4-11(T). Since the isolate did not display direct antibacterial activity against either of these species, the inhibition was certainly due to quorum quenching activity. In an extended study with the type strains of all known species of Reyranella, all strains were capable of degrading N-acyl homoserine lactones (AHLs), thus showing quorum quenching potential at the genus level. This is the first study on the quorum quenching potential and enzymes responsible in Reyranella. In addition, MMS21-HV4-11(T) could be recognized as a new species through taxonomic characterization, for which the name Reyranella humidisoli sp. nov. is proposed (type strain = MMS21-HV4-11( T) = KCTC 82780( T) = LMG 32365(T)).
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- Study of N-acyl homoserine lactone (AHL) degradation potential of bacteria isolated from environmental samples and their impact on quorum sensing regulated biofilm formation of Pseudomonas aeruginosa
Anju Tomy, Rakesh Yasarla
Journal of Environmental Chemical Engineering.2025; 13(2): 115974. CrossRef - Research progress of bacterial quorum sensing systems in synthetic biology applications
Boyu Luo, Tuoyu Liu, Zhi Sun, Yue Teng
Chinese Science Bulletin.2024; 69(36): 5213. CrossRef - Validation List no. 220. Valid publication of new names and new combinations effectively published outside the IJSEM
Aharon Oren, Markus Göker
International Journal of Systematic and Evolutionary Microbiology
.2024;[Epub] CrossRef
- Impact of tillage practices on soil bacterial diversity and composition under the tobacco-rice rotation in China
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Yanping Lei , Yongliang Xiao , Lifeng Li , Chaoqiang Jiang , Chaolong Zu , Tian Li , Hui Cao
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J. Microbiol. 2017;55(5):349-356. Published online March 1, 2017
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DOI: https://doi.org/10.1007/s12275-017-6242-9
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Abstract
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Tobacco-rice rotation is a common farming system in south China, and many tillage practices such as straw mulching, do-lomite dust, and quicklime application have been adopted to improve crop production. These agricultural management practices alter soil physical and chemical properties and affect microbial life environment and community composition. In this research, six tillage practices including no tobacco and rice straw mulching (CK), tobacco and rice straw mulching (TrSr), rice straw returning fire (TrSc), tobacco and rice straw mulching with dolomite dust (TSD), rice straw returning fire and quicklime (TSQ), and rice straw returning fire, quicklime and reduced fertilizer (TSQf) were conducted to detect changes in soil bacterial diversity and composition using Illumina se-quencing. The results showed that the total number of opera-tional taxonomic units (OTUs) from the six treatments was 2030, and the number of mutual OTUs among all samples was 550. The TrSc treatment had the highest diversity and richness, while TSQf had the lowest. Soil physio-chemical properties and microbial diversity can influence each other. Proteobacteria and Actinobacteria had the greatest propor-tion in all treatments. The abundance of Nitrospirae was the highest in the TrSc treatment. The TSQf treatment had the highest abundance of Firmicutes. The abundance of Nitrospira in the TrSc treatment was 2.29-fold over CK. Streptomyces affiliated with Firmicutes improved by 37.33% in TSQf com-pared to TSQ. TSQf treatment was considered to be the most important factor in determining the relative abundance at the genus level.
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Research Support, Non-U.S. Gov't
- Microbial communities inhabiting oil-contaminated soils from two major oilfields in Northern China: Implications for active petroleum-degrading capacity
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Weimin Sun , Yiran Dong , Pin Gao , Meiyan Fu , Kaiwen Ta , Jiwei Li
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J. Microbiol. 2015;53(6):371-378. Published online May 30, 2015
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DOI: https://doi.org/10.1007/s12275-015-5023-6
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Abstract
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Although oilfields harbor a wide diversity of microorganisms
with various metabolic potentials, our current knowledge
about oil-degrading bacteria is limited because the vast majority
of oil-degrading bacteria remain uncultured. In the
present study, microbial communities in nine oil-contaminated
soils collected from Daqing and Changqing, two of the
largest oil fields in China, were characterized through highthroughput
sequencing of 16S rRNA genes. Bacteria related
to the phyla Proteobacteria and Actinobacteria were dominant
in four and three samples, respectively. At the genus level,
Alkanindiges, Arthrobacter, Pseudomonas, Mycobacterium,
and Rhodococcus were frequently detected in nine soil samples.
Many of the dominant genera were phylogenetically
related to the known oil-degrading species. The correlation
between physiochemical parameters within the microbial
communities was also investigated. Canonical correspondence
analysis revealed that soil moisture, nitrate, TOC, and pH
had an important impact in shaping the microbial communities
of the hydrocarbon-contaminated soil. This study provided
an in-depth analysis of microbial communities in oilcontaminated
soil and useful information for future bioremediation
of oil contamination.
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