• 제목/요약/키워드: rDNA ITS sequencing

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Molecular Identification of Vaginal Lactobacillus spp. Isolated from Korean Women

  • CHANG, CHUNG EUN;SYLVIA I. PAVLOVA;LIN TAO;EUN-KI KIM;SEUNG CHUL KIM;HYUN SHIK YUN;JAE-SEONG SO
    • Journal of Microbiology and Biotechnology
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    • 제12권2호
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    • pp.312-317
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    • 2002
  • Indigenous lactobacilli were isolated from vaginas of Korean women for possible use in ecological treatment of bacterial vaginosis. Vaginal swab samples were obtained from a gynecological clinic and streaked on Rogosa SL agar plates to select the most predominant lactobacilli in each sample. The preliminary identification of the isolates as lactobacilli was based on microscopic observation of Gram-positive rod-shaped cell morphology. The initial characterization was performed on 108 isolates in terms of their cell surface hydrophobicity (CSH), antimicrobial activity, and hydrogen peroxide (H₂O₂) production capability, and 10 isolates were then selected for further molecular identification. For a rapid procedure to identify lactobacilli, polymerase chain reaction (PCR) and restriction fragment length polymorphism (RFLP) analyses of the l6S rRNA genes were applied. The 10 selected lactobacilli and 9 different reference strains of Lactobacillus spp. were characterized by PCR-RFLP where the amplified l6S rDNA was digested with 7 different restriction endonucleases prior to analysis. DNA sequencing of the 16S rRNA gene of one particular isolate, KLB 46, that had been identified as L. crispatus by the PCR-RFLP analysis, further confirmed its identity as L. crispatus.

Molecular Identification of Anisakis Larvae Extracted by Gastrointestinal Endoscopy from Health Check-up Patients in Korea

  • Song, Hyemi;Jung, Bong-Kwang;Cho, Jaeeun;Chang, Taehee;Huh, Sun;Chai, Jong-Yil
    • Parasites, Hosts and Diseases
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    • 제57권2호
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    • pp.207-211
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    • 2019
  • Anisakiasis is a zoonotic disease induced by anisakid nematodes, and endoscopic inspection is used for a diagnosis or remedy for it. Anisakis simplex, Anisakis physeteris, and Pseudoterranova decipiens had been reported to be the major species causing human infections, particularly, in Japan. However, in Korea, recent studies strongly suggested that Anisakis pegreffii is the major species of human infections. To support this suggestion, we collected anisakid larvae (n=20) from 20 human patients who were undergone gastrointestinal endoscopy at a health check-up center in Korea, and molecular identification was performed on the larvae using PCR-RFLP analysis and gene sequencing of rDNA ITS regions and mtDNA cox2. In addition, anisakid larvae (n=53) collected from the sea eel (Astroconger myriaster) were also examined for comparison with those extracted from humans. The results showed that all human samples (100%) were identified as A. pegreffii, whereas 90.7% of the samples from the sea eel were A. pegreffii with the remaining 9.3% being Hysterothylacium aduncum. Our study confirmed that A. pegreffii is the predominant species causing human anisakiasis in Korea, and this seems to be due to the predominance of this larval type in the fish (sea eels) popularly consumed by the Korean people. The possibility of human infection with H. aduncum in Korea is also suggested.

Profiling Bartonella infection and its associated risk factors in shelter cats in Malaysia

  • Nurul Najwa Ainaa Alias;Sharina Omar;Nur Indah Ahmad;Malaika Watanabe;Sun Tee Tay;Nor Azlina Aziz;Farina Mustaffa-Kamal
    • Journal of Veterinary Science
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    • 제24권3호
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    • pp.38.1-38.12
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    • 2023
  • Background: Poor disease management and irregular vector control could predispose sheltered animals to disease such as feline Bartonella infection, a vector-borne zoonotic disease primarily caused by Bartonella henselae. Objectives: This study investigated the status of Bartonella infection in cats from eight (n = 8) shelters by molecular and serological approaches, profiling the CD4:CD8 ratio and the risk factors associated with Bartonella infection in shelter cats. Methods: Bartonella deoxyribonucleic acid (DNA) was detected through polymerase chain reaction (PCR) targeting 16S-23S rRNA internal transcribed spacer gene, followed by DNA sequencing. Bartonella IgM and IgG antibody titre, CD4 and CD8 profiles were detected using indirect immunofluorescence assay and flow cytometric analysis, respectively. Results: B. henselae was detected through PCR and sequencing in 1.0% (1/101) oral swab and 2.0% (1/50) cat fleas, while another 3/50 cat fleas carried B. clarridgeiae. Only 18/101 cats were seronegative against B. henselae, whereas 30.7% (31/101) cats were positive for both IgM and IgG, 8% (18/101) cats had IgM, and 33.7% (34/101) cats had IgG antibody only. None of the eight shelters sampled had Bartonella antibody-free cats. Although abnormal CD4:CD8 ratio was observed in 48/83 seropositive cats, flea infestation was the only significant risk factor observed in this study. Conclusions: The present study provides the first comparison on the Bartonella spp. antigen, antibody status and CD4:CD8 ratio among shelter cats. The high B. henselae seropositivity among shelter cats presumably due to significant flea infestation triggers an alarm of whether the infection could go undetectable and its potential transmission to humans.

Temporal Changes in Abundances of the Toxic Dinoflagellate Alexandrium minutum (Dinophyceae) in Chinhae Bay, Korea

  • Park, Tae-Gyu;Kang, Yang-Soon
    • 한국환경과학회지
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    • 제18권12호
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    • pp.1331-1338
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    • 2009
  • Marine dinoflagellate Alexandrium minutum producing paralytic shellfish toxins is responsible for paralytic shellfish poisoning (PSP). To investigate its temporal distributions in Chinhae Bay where PSP occurs annually, SYBR Green I based A. minutum-specific real-time PCR probe was developed on the LSU rDNA region. Assay specificity and sensitivity were tested against related species, and its specificity was further confirmed by sequencing of field-derived samples. Ten months field survey in 2008 (a total 100 surface water samples) by using the real-time PCR probe showed that A. minutum was detected at very low densities of 1-4 cells $L^{-1}$ in May and June being spring in Chinhae Bay, Korea.

Pseudorabies virus의 gp50과 gp63 유전자 클로닝에 관한 연구 (Studies on the cloning gp50 and gp63 genes of Pseudorabies virus(Shope strain))

  • 권창희;송재영;김병한;이중복;이재진;안수환;이영순
    • 대한수의학회지
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    • 제31권3호
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    • pp.311-318
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    • 1991
  • The DNA fragment representing for Pseudorabies gp50 and gp60(Shope) was cloned by recombinant techniques. The viral DNA was extracted from the infected cells and digested with Bam HI. The 6.8 Kb of Bam HI fragment was isolated from agarose gel and further digested with Nde I followed by Klenow treatment. The blunt ended 4.9Kb fragment was cloned into pTZ18R plasmid vector. The upstream region of gp50 was further manipulated to remove its 5' promoter region and create EcoRl site for possible eukaryotic expression system. The result of partial sequencing of cloned DNA indicated that Shope strain showed 95% homology with gp50 of Rice strain.

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Antitumor Effects of Kluyveromyces marxianus TFM-7 Isolated from Kefir

  • Lee, Hyun-Jung;Nam, Bo-Ra;Kim, Jin-Man;Kim, Ji-Yeon;Paik, Hyun-Dong;Kim, Chang-Han
    • Food Science and Biotechnology
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    • 제16권1호
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    • pp.133-137
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    • 2007
  • The Strain TFM-7, Which has an antitumor effect, was isolated from Kefir and identified based on analysis using the API 50 CHL kit and 265 rDNA sequencing. Strain TFM-7 was confirmed to belong to the genus Kluyveromyces. Analysis of the 265 rDNA nucleotide sequences found strain TFM-7 to be related to Kluyveromyces marxianus. NRRL Y-828IT. K. marxianus. TFM-7 was cultured with potato dektrose broth medium at $27^{\circ}C$ for 72 hr, and its inhibition effects on the proliferation of seven tumor cell lines and a normal cell line were assessed using the MTT assay. The antitumor effects and growth characteristics of K. marxianus TFM-7 were investigated during a culture period of 7 days. By the $3^{rd}\;day$, K. marxianus TFM-7 showed a dry cell weight 2.39 g/L, a pH of 4.39, an ethanol content of 0.89%, and an inhibition effect on the proliferation of seven tumor cell lines above 50%, except for A-549 tumor cell line. K. marxianus TFM-7 was the most effective at inhibiting the growth of Hep-2 cell line among all tumor cell lines tested. Growth inhibition of a normal cell line, NIH/3T3, was less than 35%, suggesting a decreased level of cytotoxicity toward normal cells. These results indicate that K. marxianus TFM-7 may have used as a yeast strain with antitumor activity.

Identification of Clostridium perfringens AB&J and Its Uptake of Bromophenol Blue

  • Kim, Jeong-Dong;An, Hwa-Yong;Yoon, Jung-Hoon;Park, Yong-Ha;Fusako Kawai;Jung, Chang-Min;Kang, Kook_-Hee
    • Journal of Microbiology and Biotechnology
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    • 제12권4호
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    • pp.544-552
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    • 2002
  • Several microorganisms from rat and human feces and lumen fluid of cows were screened for their ability to decolorize the synthetic dyes. Consequently, a novel dye-degrading strain AB&J was isolated. Taxonomic identification including 165 rDNA sequencing and phylogenetic analysis indicated that the isolate had 99.9% homology in its 165 rDNA base sequence with Clostridium perfringens. After 27 h Incubation with the strain, brilliant blue R, bromophenol blue, crystal violet, malachite green, methyl green, and methyl orange were decolorized by about 69.3%, 97.7%, 96.3%, 97.9%, 75.1%, and 97.2%, respectively. The triphenlmethane dye, bromophenol blue, was decolorized extensively by growing Clostridium perfringens AB&J cells in liquid cultures under anaerobic condition, although their growth was strongly inhibited in the initial stage of incubation. This group of dyes is toxic, depending on the concentration used. The dye was significantly decolorized at a relatively lower concentration of below 50 $\mu g \;ml^{-1}$, however, the growth of the cells was mostly suppressed at a dye concentration of 100 $\mu g \;ml^{-1}$. The decolorization activity in cell-free extracts was much higher in cytoplasm than in periplasm and cytoplasmic membrane. Therefore, the enzyme related uptake of bromophenol blue seemed to be localized in cytoplasm. The optimal pH and temperature of bromophenol blue uptake fur decolorization activities were 7.0 and 4$0^{\circ}C$, respectively.

흰목이버섯 대량생산을 위한 용기내 재배 최적화 연구 (Optimization of artificial cultivation of Tremella fuciformis in closed culture bottle)

  • 최성우;장현유;윤정원;이찬
    • 한국버섯학회지
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    • 제6권1호
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    • pp.20-26
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    • 2008
  • 흰목이버섯 균주와 공생균을 수집하고 ITS 5.8S rDNA sequencing을 하여 유전자 서열을 분석하였다. Gene Bank Data homology search 결과 분리된 균의 rDNA 서열이 이 Tremella fuciformis AF042409의 rDNA 서열과 99% 일치하는 것으로 확인되었다. 그리고 함께 분리된 공생균은 같은 방법으로 Annulohhypoxylon stygium 으로 확인하였다. 분리된 T. fuciformis KG 103과 A. stygium KG 201 균주는 PD배지에서 각각 14 mm/14 days과 85 mm/14 days의 균사생육을 나타내었다. T. fuciformis KG 103 균주의 생육최적온도는 $25^{\circ}C$ (14mm/14days) 이었으며, $35^{\circ}C$ 고온과 $15^{\circ}C$이하 저온에서 균사 생장이 억제되었다. A. stygium KG 201은 흰목이버섯균과 유사한 최적온도를 나타내었다. T. fuciformis KG 103 균의 생육 최적 pH는 5.0이었으며, A. stygium KG 201도 pH 5.0에서 생육이 가장 왕성하였다. 흰목이버섯 종균용 최적 배지로 참나무톱밥 77.5%, 미강 20%, 석고 1.5%, 황백당 1%가 선정되었다. T. fuciformis KG 103과 A. stygium KG 201혼합 종균을 제조하고 흰목이버섯 자실체생산을 위한 병속재배 방법을 확립하였다. 콘코브(Corn cob) (77%와 52%)가 사용한 재료 중 최적의 자실체 성장률을 나타냈으며, 콘코브 함량을 줄일수록 생육이 저조하였다. 면실박과 참나무톱밥은 단독 사용시 생육이 저조하였고, 콘코브를 첨가시 수율이 증대되었다. 최적수분농도는 55%로 결정되었다.

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Draft Genome of Toxocara canis, a Pathogen Responsible for Visceral Larva Migrans

  • Kong, Jinhwa;Won, Jungim;Yoon, Jeehee;Lee, UnJoo;Kim, Jong-Il;Huh, Sun
    • Parasites, Hosts and Diseases
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    • 제54권6호
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    • pp.751-758
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    • 2016
  • This study aimed at constructing a draft genome of the adult female worm Toxocara canis using next-generation sequencing (NGS) and de novo assembly, as well as to find new genes after annotation using functional genomics tools. Using an NGS machine, we produced DNA read data of T. canis. The de novo assembly of the read data was performed using SOAPdenovo. RNA read data were assembled using Trinity. Structural annotation, homology search, functional annotation, classification of protein domains, and KEGG pathway analysis were carried out. Besides them, recently developed tools such as MAKER, PASA, Evidence Modeler, and Blast2GO were used. The scaffold DNA was obtained, the N50 was 108,950 bp, and the overall length was 341,776,187 bp. The N50 of the transcriptome was 940 bp, and its length was 53,046,952 bp. The GC content of the entire genome was 39.3%. The total number of genes was 20,178, and the total number of protein sequences was 22,358. Of the 22,358 protein sequences, 4,992 were newly observed in T. canis. Following proteins previously unknown were found: E3 ubiquitin-protein ligase cbl-b and antigen T-cell receptor, zeta chain for T-cell and B-cell regulation; endoprotease bli-4 for cuticle metabolism; mucin 12Ea and polymorphic mucin variant C6/1/40r2.1 for mucin production; tropomodulin-family protein and ryanodine receptor calcium release channels for muscle movement. We were able to find new hypothetical polypeptides sequences unique to T. canis, and the findings of this study are capable of serving as a basis for extending our biological understanding of T. canis.

SCO6992, a Protein with β-Glucuronidase Activity, Complements a Mutation at the absR Locus and Promotes Antibiotic Biosynthesis in Streptomyces coelicolor

  • Jin, Xue-Mei;Choi, Mu-Yong;Tsevelkhoroloo, Maral;Park, Uhnmee;Suh, Joo-Won;Hong, Soon-Kwang
    • Journal of Microbiology and Biotechnology
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    • 제31권11호
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    • pp.1591-1600
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    • 2021
  • Streptomyces coelicolor is a filamentous soil bacterium producing several kinds of antibiotics. S. coelicolor abs8752 is an abs (antibiotic synthesis deficient)-type mutation at the absR locus; it is characterized by an incapacity to produce any of the four antibiotics synthesized by its parental strain J1501. A chromosomal DNA fragment from S. coelicolor J1501, capable of complementing the abs- phenotype of the abs8752 mutant, was cloned and analyzed. DNA sequencing revealed that two complete ORFs (SCO6992 and SCO6993) were present in opposite directions in the clone. Introduction of SCO6992 in the mutant strain resulted in a remarkable increase in the production of two pigmented antibiotics, actinorhodin and undecylprodigiosin, in S. coelicolor J1501 and abs8752. However, introduction of SCO6993 did not show any significant difference compared to the control, suggesting that SCO6992 is primarily involved in stimulating the biosynthesis of antibiotics in S. coelicolor. In silico analysis of SCO6992 (359 aa, 39.5 kDa) revealed that sequences homologous to SCO6992 were all annotated as hypothetical proteins. Although a metalloprotease domain with a conserved metal-binding motif was found in SCO6992, the recombinant rSCO6992 did not show any protease activity. Instead, it showed very strong β-glucuronidase activity in an API ZYM assay and toward two artificial substrates, p-nitrophenyl-β-D-glucuronide and AS-BI-β-D-glucuronide. The binding between rSCO6992 and Zn2+ was confirmed by circular dichroism spectroscopy. We report for the first time that SCO6992 is a novel protein with β-glucuronidase activity, that has a distinct primary structure and physiological role from those of previously reported β-glucuronidases.