• 제목/요약/키워드: Bacterial population density

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콩 잎에 서식하는 세균 및 콩나물 부패균의 밀도 변화 (Population Density Changes of Bacteria and Soybean Sprout Rotting Bacteria on Soybean Leaves)

  • 최재을;이은정;신철우
    • 한국자원식물학회지
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    • 제12권2호
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    • pp.152-160
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    • 1999
  • 1. 콩잎의 세균밀도는 4.60$\times$$10^2$~ 9.10$\times$$10^{5}$CFU/$\textrm{cm}^2$으로, 생육단계가 진전됨에 따라 세균밀도가 증가하는 경향이었다. 2. 콩나물 부패 세균의 밀도는 콩잎에서 0~5.00$\times$$10^3$CFU/$\textrm{cm}^2$으로, 부패세균의 밀도는 생육단계에 관련이 없었으나 재배지역과는 관련이 있었다. 3. 나물 콩 품종과 콩나물 부패세균의 밀도는 품종과 관련이 적었으며 생육단계와 작물의 부위에 따라 변이가 심하였다. 4. 콩잎에서 분리된 콩나물 부패세균은 Erwinia cypripedii, E. carotovora subsp. carotovora, Xanthomonas campestris pv. glycines, Staphylococcus sp., Micrococcus sp. 이며, E. carotovora subsp. carotovora, X. campestris pv. glycines가 밀도가 높았다.다.

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하천 생태계에서 유기탄소 기질 제거에 조류와 세균의 공생작용이 미치는 영향 (Effect of Bacterial and Algal Symbiotic Reaction on the Removal of Organic Carbon in River Ecosystem)

  • 공석기;도시유끼나까지마
    • 환경위생공학
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    • 제16권3호
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    • pp.22-27
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    • 2001
  • It have been investigated how algal and bacterial symbiotic reaction influences on removal of organic carbon in river ecosystem. And artificial experimentation apparatus was made for algae'and bacteia'culture as lab scale. Investigating and researching minutely the change of concentration of organic carbon substrate and the change of population density of algae'and of bacteria'with this artificial experimentation apparatus, the next results could be obtained. 1. Successful decrease of DOC(dissolved organic carbon) could not be expected unless algal and bacterial biomass floe was nut formed effectively and unless biosorption was not proceeded effectively in the very culture system in which artificial synthetic wastewater was supplied continuously at constant rate. 2. In conditions of culture liquid of 1335 glucnse mg/L(type 1) and of 267 glucose mg:L(type 2), the algal dominant species was always Chlorella vulgaris in both types in which artificial synthetic wastewater were supplied continuously at constant rate and algae population density was around maximum 107 cells/mL. 3. It was around 108 ~ 107 cells/mL that the population density of heterotrophic bacterium. In culture medium systems type 1 and type 2 in which artificial wastewater were supplied continuously at constant rate, the same density appeared initially when using the population density of Escherichia coli w 3110 as indirect indicator. And this density decreased rapidly till the culturing date 35 days were passed away, while this density increased with gentle slope after same date and then the trend of change at type 2 was more severe than one at type 1. 4. When seeing such a change of population density of Escherichia coli w 3110, the growth of heterotrophic bacterium appeared as survival instinct pattern of broader requirement of nutrient at condition of low concentration of organic carbon substrate than condition of high concentration of same substrate.

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세균의 적정밀도 인식을 통한 신호전달 및 신호전달 차단 연구 (Bacterial Quorum Sensing and Anti-Quorum Sensing)

  • 박순양;이정기
    • 한국미생물·생명공학회지
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    • 제32권1호
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    • pp.1-10
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    • 2004
  • Many bacteria monitor their population density and control the expression of specialized gene sets in response to bacterial cell density based on a mechanism referred to as quorum sensing. In all cases, quorum sensing involves the production and detection of extracellular signaling molecules, auto inducers, as which Gram-negative and Gram-positive bacteria use most prevalently acylated homoserine lactones and processed oligo-peptides, respectively. Through quorum-sensing communication circuits, bacteria regulate a diverse array of physiological functions, including virulence, symbiosis, competence, conjugation, antibiotic production, motility, sporulation, and biofilm formation. Many pathogens have evolved quorum-sensing mechanisms to mount population-density-dependent attacks to over-whelm the defense responses of plants, animals, and humans. Since these AHL-mediated signaling mechanisms are widespread and highly conserved in many pathogenic bacteria, the disruption of quorum-sensing system might be an attractive target for novel anti-infective therapy. To control AHL-mediated pathogenicity, several promising strategies to disrupt bacterial quorum sensing have been reported, and several chemicals and enzymes have been also investigated for years. These studies indicate that anti-quorum sensing strategies could be developed as possible alternatives of antibiotics.

콩 꼬투리에서 서식하는 세균 및 콩나물 부패균의 밀도 변화 (Population Density Changes of Bacteria Causing Soybean Sprout Rot on Soybean Pods)

  • 이은정;한광섭;심명용;최재을
    • 식물병과 농업
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    • 제5권1호
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    • pp.41-45
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    • 1999
  • Bacterial population densities on soybean pods from Chungnam province ranges 105~106 CFU/$\textrm{cm}^2$, whereas those of bacteria causing sprout rot ranged 0~103 CFU/$\textrm{cm}^2$. Erwinia chrysanthemi, Xanthomonas campestris pv. glycines, Staphylococcus sp., and Micrococcus sp. were identified as pathogenic bacteria causing soybean sprout rot. The population density of X. campestris pv. glycines was higher than those of other bacteria.

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Effects of Antibiotics on the Uterine Microbial Community of Mice

  • Sang-Gyu Kim;Dae-Wi Kim;Hoon Jang
    • 한국발생생물학회지:발생과생식
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    • 제26권4호
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    • pp.145-153
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    • 2022
  • The gut microbiota is involved in the maintenance of physiological homeostasis and is now recognized as a regulator of many diseases. Although germ-free mouse models are the standard for microbiome studies, mice with antibiotic-induced sterile intestines are often chosen as a fast and inexpensive alternative. Pathophysiological changes in the gut microbiome have been demonstrated, but there are no reports so far on how such alterations affect the bacterial composition of the uterus. Here we examined changes in uterine microbiota as a result of gut microbiome disruption in an antibiotics-based sterile-uterus mouse model. Sterility was induced in 6-week-old female mice by administration of a combination of antibiotics, and amplicons of a bacteria marker gene (16S rRNA) were sequenced to decipher bacterial community structures in the uterus. At the phylum-level, Proteobacteria, Firmicutes, and Actinobacteria were found to be dominant, while Ralstonia, Escherichia, and Prauserella were the major genera. Quantitative comparisons of the microbial contents of an antibiotic-fed and a control group revealed that the treatment resulted in the reduction of bacterial population density. Although there was no significant difference in bacterial community structures between the two animal groups, β-diversity analysis showed a converged profile of uterus microbiotain the germ-free model. These findings suggest that the induction of sterility does not result in changes in the levels of specific taxa but in a reduction of individual variations in the mouse uterus microbiota, accompanied by a decrease in overall bacterial population density.

연초의 세균성마름병 저항성 유전에 관한 연구 (Studies on the Inheritance of Resistance to Bacterial Wilt(Ralstonia solanacearum) in Tobacco(Nicotiana tabacum L.))

  • 정석훈
    • 한국연초학회지
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    • 제22권1호
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    • pp.25-30
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    • 2000
  • Bacterial wilt(Ralstonia solanacearum) is one of the major diseases of flue-cured tobacco (Nicotiana tabacum L.) in the world. This study was conducted to investigate degree of dominance, selection, and correlation between leaf shape and degree of bacterial wilt resistance in flue-cured tobacco. The degree of disease caused by bacterial wilt was evaluated in parents, F$_1$, F$_2$ and F$_3$ populations of two crosses, BY 4 x NC 95 and BY 4 x Coker 86, in the infected field. The leaf shape index was also measured in parents and F$_2$ population of BY 4 x NC 95. The incidence of bacterial wilt was observed in the middle of June and peaked in late July, when the highest value of pathogen density reached 1.0 x 10$^{6}$ colony forming unit per gram. It was concluded that the inheritance mode of risestance to bacterial wilt in the above two crosses of susceptible and resistant varieties was recessive and polygenic. The resistance to bacterial wilt was significantly correlated with leaf shape in F2 generation of BY 4 x NC 95. But certain plants having narrower leaves were also resistant to bacterial wilt. It is considered that the bacterial wilt resistant lines having narrower leaves could be selected. The selection for bacterial wilt resistance in the F$_2$ population might be effective.

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Development of a Model to Predict the Primary Infection Date of Bacterial Spot (Xanthomonas campestris pv. vesicatoria) on Hot Pepper

  • Kim, Ji-Hoon;Kang, Wee-Soo;Yun, Sung-Chul
    • The Plant Pathology Journal
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    • 제30권2호
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    • pp.125-135
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    • 2014
  • A population model of bacterial spot caused by Xanthomonas campestris pv. vesicatoria on hot pepper was developed to predict the primary disease infection date. The model estimated the pathogen population on the surface and within the leaf of the host based on the wetness period and temperature. For successful infection, at least 5,000 cells/ml of the bacterial population were required. Also, wind and rain were necessary according to regression analyses of the monitored data. Bacterial spot on the model is initiated when the pathogen population exceeds $10^{15}cells/g$ within the leaf. The developed model was validated using 94 assessed samples from 2000 to 2007 obtained from monitored fields. Based on the validation study, the predicted initial infection dates varied based on the year rather than the location. Differences in initial infection dates between the model predictions and the monitored data in the field were minimal. For example, predicted infection dates for 7 locations were within the same month as the actual infection dates, 11 locations were within 1 month of the actual infection, and only 3 locations were more than 2 months apart from the actual infection. The predicted infection dates were mapped from 2009 to 2012; 2011 was the most severe year. Although the model was not sensitive enough to predict disease severity of less than 0.1% in the field, our model predicted bacterial spot severity of 1% or more. Therefore, this model can be applied in the field to determine when bacterial spot control is required.

인공사육장에서 패혈증으로 집단폐사한 북방산개구리의 증례 보고 (Case Report: Mass death of frogs (Rana dybowskii) caused by septicemia in artificial raising farm)

  • 정여진;김종택;서국현
    • 한국동물위생학회지
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    • 제37권3호
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    • pp.203-212
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    • 2014
  • Frog culture industry is not yet familiar but has much potential. Generally, in farm, the population density is higher than that of in nature and frog farm is not the exception. But when population density is high, it can easily leads to stressful condition, poor sanitation. When a disease occur, it is a primary factor that makes the population more susceptible and the results more grave. Because of severe Rhabditoidea- helminth infection and subsequent bacterial septicemia, 50~70% of the total population had been died in a farm in Jeong-sun in Gangwon-do and Chungju in Chungcheongbuk-do from late June, 2012 to September, 2012. Diseased frogs showed ruptured lung, bloody ascites, liver discoloration, myocardium weakness, congested kidney, microcytic anemia and so on. Enterobacteriacea, Citrobacter.sp, Cupriavidus metallidurans, Acinetobacter.sp were isolated as major bacterium that had caused septicemia in frogs. Among isolated bacterium, Cupriavidus metallidurans, Ewingella americana, Shewanella aquimarina and Pseudoalteromonas sp. have not reported as potential pathogens in frogs before. It is a good example that severe helminth infection in frogs can lead to secondary infection of bacteria.

Microbial linguistics: perspectives and applications of microbial cell-to-cell communication

  • Mitchell, Robert J.;Lee, Sung-Kuk;Kim, Tae-Sung;Ghim, Cheol-Min
    • BMB Reports
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    • 제44권1호
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    • pp.1-10
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    • 2011
  • Inter-cellular communication via diffusible small molecules is a defining character not only of multicellular forms of life but also of single-celled organisms. A large number of bacterial genes are regulated by the change of chemical milieu mediated by the local population density of its own species or others. The cell density-dependent "autoinducer" molecules regulate the expression of those genes involved in genetic competence, biofilm formation and persistence, virulence, sporulation, bioluminescence, antibiotic production, and many others. Recent innovations in recombinant DNA technology and micro-/nano-fluidics systems render the genetic circuitry responsible for cell-to-cell communication feasible to and malleable via synthetic biological approaches. Here we review the current understanding of the molecular biology of bacterial intercellular communication and the novel experimental protocols and platforms used to investigate this phenomenon. A particular emphasis is given to the genetic regulatory circuits that provide the standard building blocks which constitute the syntax of the biochemical communication network. Thus, this review gives focus to the engineering principles necessary for rewiring bacterial chemo-communication for various applications, ranging from population-level gene expression control to the study of host-pathogen interactions.

동전기 생물학적 복원에서 전기분해반응이 미생물 활성에 미치는 영향 (Effect of Electrolysis on Bacterial Activity in Electrokinetic Bioremediation)

  • 김상준;박지연;이유진;양지원
    • 대한환경공학회지
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    • 제28권7호
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    • pp.764-769
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    • 2006
  • 미생물을 접종하지 않은 동전기 공정에서 전기분해에 의한 양극조에서 산소의 발생은 전류밀도에 비례하였으며 전해질을 순환시킴에 따라 생물반응기내 전해질과 함께 용존산소농도가 증가하였다. 전류의 공급과 함께 미생물 농도는 급격히 증가하였으며 이때 미생물의 산소소비량이 증가되어 용존산소농도가 감소되었다. Pentadecane-오염토양에 대한 동전기 생물학적 복원의 결과에서 높은 전류밀도 1.88 $mA/cm^2$에서 비록 산소의 발생량은 많았지만 오히려 증가된 유기산이 전해질 pH와 미생물 활성을 감소시키므로 미생물 농도와 제거효율이 0.63 $mA/cm^2$보다 낮게 나타났다. 0.63 $mA/cm^2$에서 적절한 산소의 공급과 동시에 전해액 pH의 감소가 작았으므로 최적의 미생물 농도와 제거효율을 얻을 수 있었다.