• 제목/요약/키워드: Phage-resistant bacteria

검색결과 16건 처리시간 0.025초

Characterization of Phage-Resistant Strains Derived from Pseudomonas tolaasii 6264, which Causes Brown Blotch Disease

  • Yun, Yeong-Bae;Han, Ji-Hye;Kim, Young-Kee
    • Journal of Microbiology and Biotechnology
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    • 제28권12호
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    • pp.2064-2070
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    • 2018
  • Pseudomonas tolaasii 6264 is a representative strain that causes bacterial blotch disease on the cultivated oyster mushroom, Pleurotus ostreatus. Bacteriophages are able to sterilize the pathogenic P. tolaasii strains, and therefore, they can be applied in creating disease-free mushroom cultivation farms, through a method known as "phage therapy". For successful phage therapy, the characterization of phage-resistant strains is necessary, since they are frequently induced from the original pathogenic bacteria in the presence of phages. When 10 different phages were incubated with P. tolaasii 6264, their corresponding phage-resistant strains were obtained. In this study, changes in pathogenic, genetic, and biochemical characteristics as well as the acquired phage resistance of these strains were investigated. In the phylogenetic analyses, all phage-resistant strains were identical to the original parent strain based on the sequence comparison of 16S rRNA genes. When various phage-resistant strains were examined by three different methods, pitting test, white line test, and hemolytic activity, they were divided into three groups: strains showing all positive results in three tests, two positive in the first two tests, and all negative. Nevertheless, all phage-resistant strains showed that their pathogenic activities were reduced or completely lost.

Synergistic Effect of Bacteriophage and Antibiotic against Antibiotic-Resistant Salmonella Typhimurium

  • Petsong, Kantiya;Vongkamjan, Kitiya;Ahn, Juhee
    • 한국식품위생안전성학회지
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    • 제35권2호
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    • pp.189-194
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    • 2020
  • 본 연구는 항생제 내성 Salmonella Typhimurium CCARM 8009을 저해하기 위한 phage와 항생제 조합처리의 효과를 평가하였다. 디스크 확산법과 액체배지 희석법에 의해 phage와 항생제의 상승 저해효과를 측정하였고 배양을 통한 항생제 내성 유도를 평가하였다. Phage를 처리한 cefotaxime, chloramphenicol, ciprofloxacin, erythromycin의 디스크의 저해 구역은 각각 13.6%, 19.3%, 12.7%, 78.8%로 증가되었다. Phage와 항생제 조합 처리에 의해 tetracycline, chloramphenicol, ciprofloxacin, erythromycin, streptomycin의 최소생육억제농도는 각각 64, 4, 0.0078, 64, 256 mg/mL으로 감소되었다. Phage와 항생제의 조합 처리는 항생제 내성 S. Typhimurium CCARM 8009을 효과적으로 저해하였다 (4 log reduction). 본 결과는 phage와 항생제의 조합처리는 항생제 내성균을 제어하기 위한 방법으로 충분히 응용가치가 높음을 보여주고 있다.

박테리오파지 저항성을 갖는 Pseudomonas tolaasii 변이주 분리 및 이들의 병원특성 (Isolation of bacteriophage-resistant Pseudomonas tolaasii strains and their pathogenic characters)

  • 박수진;한지혜;김영기
    • Journal of Applied Biological Chemistry
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    • 제59권4호
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    • pp.351-356
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    • 2016
  • 세균성 갈반병은 느타리버섯(Pleurotus ostreatus)의 주된 병중의 하나이다. 박테리오파지를 이용한 파지테라피 방법은 병원균의 농도를 감소시켜 병없는 재배사를 만드는데 성공적이었다. 병원균 사멸을 위한 파지의 이용은 숙주균의 특이성 때문에 매우 제한적 효과를 보이며, 이것은 병원균의 작은 변이에도 파지의 민감성은 크게 감소할 수 있기 때문이다. 본 연구에서는 파지테라피의 효용성을 높이기 위하여 갈반병의 원인균인 P. tolaasii 균주로부터 파지-저항성 변이주를 분리하였고 병원성 특성을 조사하였다. 16S rRNA 유전자의 염기서열 분석을 통한 근연관계 분석에서 파지저항성 균주들은 모두 원래의 숙주균과 일치하였고, 용혈활성이나 갈반형성 능력 등 병원성은 파지저항성 획득과 관련이 없는 것으로 확인되었다. 그럼에도 불구하고, 파지저항성 균주의 다양한 병원성은 균의 종류에 따라 증감이 다르게 나타났다. 따라서, 성공적인 파지테라피를 위해서는 넓은 숙주 범위를 갖는 파지의 분리가 필요하다.

Identification of a Cupin Protein Gene Responsible for Pathogenicity, Phage Susceptibility and LPS Synthesis of Acidovorax citrulli

  • Rahimi-Midani, Aryan;Kim, Min-Jung;Choi, Tae-Jin
    • The Plant Pathology Journal
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    • 제37권6호
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    • pp.555-565
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    • 2021
  • Bacteriophages infecting Acidovorax citrulli, the causal agent of bacterial fruit blotch, have been proven to be effective for the prevention and control of this disease. However, the occurrence of bacteriophage-resistant bacteria is one of hurdles in phage biocontrol and the understanding of phage resistance in this bacterium is an essential step. In this study, we aim to investigate possible phage resistance of A. citrulli and relationship between phage resistance and pathogenicity, and to isolate and characterize the genes involved in these phenomena. A phage-resistant and less-virulent mutant named as AC-17-G1 was isolated among 3,264 A. citrulli Tn5 mutants through serial spot assays and plaque assays followed by pathogenicity test using seed coating method. The mutant has the integrated Tn5 in the middle of a cupin protein gene. This mutant recovered its pathogenicity and phage sensitivity by complementation with corresponding wild-type gene. Site-directed mutation of this gene from wild-type by CRISPR/Cas9 system resulted in the loss of pathogenicity and acquisition of phage resistance. The growth of AC-17-G1 in King's B medium was much less than the wild-type, but the growth turned into normal in the medium supplemented with D-mannose 6-phosphate or D-fructose 6-phosphate indicating the cupin protein functions as a phosphomannos isomerase. Sodium dodecyl sulfa analysis of lipopolysaccharide (LPS) extracted from the mutant was smaller than that from wild-type. All these data suggest that the cupin protein is a phosphomannos isomerase involved in LPS synthesis, and LPS is an important determinant of pathogenicity and phage susceptibility of A. citrulli.

Evidence to Support the Therapeutic Potential of Bacteriophage Kpn5 in Burn Wound Infection Caused by Klebsiella pneumoniae in BALB/c Mice

  • Kumar, Seema;Harja, Kusum;Chhibber, Sanjay
    • Journal of Microbiology and Biotechnology
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    • 제20권5호
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    • pp.935-941
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    • 2010
  • The emergence of antibiotic-resistant bacterial strains is one of the most critical problems of modern medicine. Bacteriophages have been suggested as an alternative therapeutic agent for such bacterial infections. In the present study, we examined the therapeutic potential of phage Kpn5 in the treatment of Klebsiella pneumoniae B5055-induced burn wound infection in a mouse model. An experimental model of contact burn wound infection was established in mice employing K. pneumoniae B5055 to assess the efficacy of phage Kpn5 in vivo. Survival and stability of phage Kpn5 were evaluated in mice and the maximum phage count in various organs was obtained at 6 h and persisted until 36 h. The Kpn5 phage was found to be effective in the treatment of Klebsiella-induced burn wound infection in mice when phage was administered immediately after bacterial challange. Even when treatment was delayed up to 18 h post infection, when all animals were moribund, approximately 26.66% of the mice could be rescued by a single injection of this phage preparation. The ability of this phage to protect bacteremic mice was demonstrated to be due to the functional capabilities of the phage and not due to a nonspecific immune effect. The levels of pro-inflammatory cytokines (IL-$1{\beta}$ and TNF-${\alpha}$) and anti-inflammatory cytokines (IL-10) were significantly lower in sera and lungs of phage-treated mice than phage untreated control mice. The results of the present study bring out the potential of bacteriophage therapy as an alternate preventive approach to treat K. pneumoniae B5055-induced burn wound infections. This approach not only helps in the clearance of bacteria from the host but also protects against the ensuing inflammatory damage due to the exaggerated response seen in any infectious process.

Biocontrol of Pectobacterium carotovorum subsp. carotovorum Using Bacteriophage PP1

  • Lim, Jeong-A;Jee, Samnyu;Lee, Dong Hwan;Roh, Eunjung;Jung, Kyusuk;Oh, Changsik;Heu, Sunggi
    • Journal of Microbiology and Biotechnology
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    • 제23권8호
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    • pp.1147-1153
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    • 2013
  • Pectobacterium carotovorum subsp. carotovorum (formerly Erwinia carotovora subsp. carotovora) is a plant pathogen that causes soft rot and stem rot diseases in several crops, including Chinese cabbage, potato, and tomato. To control this bacterium, we isolated a bacteriophage, PP1, with lytic activity against P. carotovorum subsp. carotovorum. Transmission electron microscopy revealed that the PP1 phage belongs to the Podoviridae family of the order Caudovirales, which exhibit icosahedral heads and short non-contractile tails. PP1 phage showed high specificity for P. carotovorum subsp. carotovorum, and several bacteria belonging to different species and phyla were resistant to PP1. This phage showed rapid and strong lytic activity against its host bacteria in liquid medium and was stable over a broad range of pH values. Disease caused by P. carotovorum subsp. carotovorum was significantly reduced by PP1 treatment. Overall, PP1 bacteriophage effectively controls P. carotovorum subsp. carotovorum.

The current state of phage therapy in livestock and companion animals

  • Youbin Choi;Woongji Lee;Joon-Gi Kwon;Anna Kang;Min-Jin Kwak;Ju-Young Eor;Younghoon Kim
    • Journal of Animal Science and Technology
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    • 제66권1호
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    • pp.57-78
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    • 2024
  • In a global context, bacterial diseases caused by pathogenic bacteria have inflicted sustained damage on both humans and animals. Although antibiotics initially appeared to offer an easy treatment for most bacterial infections, the recent rise of multidrug-resistant bacteria, stemming from antibiotic misuse, has prompted regulatory measures to control antibiotic usage. Consequently, various alternatives to antibiotics are being explored, with a particular focus on bacteriophage (phage) therapy for treating bacterial diseases in animals. Animals are broadly categorized into livestock, closely associated with human dietary habits, and companion animals, which have attracted increasing attention. This study highlights phage therapy cases targeting prominent bacterial strains in various animals. In recent years, research on bacteriophages has gained considerable attention, suggesting a promising avenue for developing alternative substances to antibiotics, particularly crucial for addressing challenging bacterial diseases in the future.

Phage Display Library를 이용한 Salt-Resistant Alpha-Helical 항균 펩타이드의 새로운 탐색방법 (A Novel Screening Strategy for Salt-resistant Alpha-helical Antimicrobial Peptides from a Phage Display Library)

  • 박주희;한옥경;이백락;김정현
    • 한국미생물·생명공학회지
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    • 제35권4호
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    • pp.278-284
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    • 2007
  • 생체 염 농도에서도 항균활성을 유지할 수 있는 선형 ${\alpha}$-helical 항균 펩타이드를 M13 펩타이드 라이브러리로부터 탐색할 수 있는 새로운 방법을 개발하였다. M13의 pIII은 magainin 유도체인 MSI-344와 indolicidin과 융합된 상태에서도 파아지의 viability에 영향을 주지 않는 것으로 보아, MSI-344와 indolicidin의 대장균에 대한 독성을 중화할 수 있는 것으로 판단되며, 따라서 대장균에서 항균 펩타이드 라이브러리의 제조가 가능함을 증명하였다. 선형 항균 펩타이드의 보존된 부위를 바탕으로, 13개의 아미노산 잔기로 구성된 semi-combinatorial 항균 펩타이드 라이브러리를 M13를 이용하여 제조하였다. 제조된 파아지 라이브러리는 먼저 적혈구에 흡착시켜, 높은 용혈 역가를 가질 가능성이 있는 파아지를 제거한 후, 높은 염 농도에서 Pseudomonas aeruginosa와 Staphylococcus aureus에 흡착할 수 있는 파아지를 탐색하였다. 탐색된 펩타이드들은 염이 없는 조건에서는 비교적 낮은 항균 역가를 보였지만, P06와 S18 펩타이드의 경우, 생체 염 농도보다 높은 150 mM $Na^+$, 2 mM $Mg^{2+}$, 2 mM $Ca^{2+}$의 조건에서도 항균 역가가 영향을 받지 않았으며, 심각한 용혈 역가 또한 보이지 않았다. 본 연구에서 개발한 대상 세균에 대한 흡착능력을 이용한 탐색방법은 salt-tolerant antimicrobial peptide의 개발의 새로운 가능성을 제시하였다.

자연환경내에 오염된 식중독 원인균의 분포 (Study on Enteric Pathogenic Bacteria from the Environments and Human)

  • 이연태;이종훈
    • 대한미생물학회지
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    • 제16권1호
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    • pp.13-18
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    • 1981
  • Total 984 specimens were collected from sweages(130 specimens) and human rectal swabs(854 specimens) during period from October 1979 to November 1980 in Korea. Sixteen strains of salmonella were isolated from the human rectal swabs at the St. Mary's Hospital in Dae Jeon. They were confirmed into fifteen strains of S. typhi, one strain of S. paratyphi A. In other hand, fourty three strains of Shigella had been isolated from the stool specimens. They were typed as thirty four strains of Shigella flexneri, five strains of Shigella sonnei and one strain of Shigella dysenteriae. However, 16 strains of Vibrio eltor had been isolated from patients and carriers in the first epidemic areas in Chunla Namdo in September 1980. The serotype of isolated strains was determined as a Inaba which was resistant to the Mukerjee phage group IV but was susceptible to El Tor phage groupe I and II. Authors had been concluded that the strains were certain to be identified with Vibrio cholerae biotype El Tor.

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Exogenous Lytic Activity of SPN9CC Endolysin Against Gram-Negative Bacteria

  • Lim, Jeong-A;Shin, Hakdong;Heu, Sunggi;Ryu, Sangryeol
    • Journal of Microbiology and Biotechnology
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    • 제24권6호
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    • pp.803-811
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    • 2014
  • Concerns over drug-resistant bacteria have stimulated interest in developing alternative methods to control bacterial infections. Endolysin, a phage-encoded enzyme that breaks down bacterial peptidoglycan at the terminal stage of the phage reproduction cycle, is reported to be effective for the control of bacterial pathogenic bacteria. Bioinformatic analysis of the SPN9CC bacteriophage genome revealed a gene that encodes an endolysin with a domain structure similar to those of the endolysins produced by the P1 and P22 coliphages. The SPN9CC endolysin was purified with a C-terminal oligo-histidine tag. The endolysin was relatively stable and active over a broad temperature range (from $24^{\circ}C$ to $65^{\circ}C$). It showed maximal activity at $50^{\circ}C$, and its optimum pH range was from pH 7.5 to 8.5. The SPN9CC endolysin showed antimicrobial activity against only gram-negative bacteria and functioned by cutting the glycosidic bond of peptidoglycan. Interestingly, the SPN9CC endolysin could lyse intact gram-negative bacteria in the absence of EDTA as an outer membrane permeabilizer. The exogenous lytic activity of the SPN9CC endolysin makes it a potential therapeutic agent against gram-negative bacteria.