• Title/Summary/Keyword: Species-specific PCR

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Molecular Detection and Analysis of Sweet potato feathery motile vims from Root and Leaf Tissues of Cultivated Sweet Potato Plants

  • Ryu, Ki-Hyun;Park, Sun-Hee
    • The Plant Pathology Journal
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    • v.18 no.1
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    • pp.12-17
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    • 2002
  • For the molecular detection of Sweet potaio feathery mottle virus (SPFMV) from diseased sweet potato plants, reverse transcription and polymerase chain reaction (RT-PCR) was performed with the use of a set of virus-specific primers to amplify an 816 bp product. The viral coat protein gene was selected for the design of the primers. No PCR product was amplified when Turnip mosaic virus, Potato vims Y or Cucumber mosaic virus were used as template in RT-PCR with the SPFMV-specific primers. The lowest concentration of template viral RNA required for detection was 10 fg. The vim was rapidly detected from total nucleic acids of leaves and roots from the virus-infected sweet potato plants as well as from the purified viral RNA by the RT-PCR. Twenty-four sweet potato samples were selected and analyzed by RT-PCR and restriction fragment length polymorphism (RFLP). RFLP analysis of the PCR products showed three restriction patterns, which resulted in some point mutations suggesting the existence of quasi-species for the vims in the infected sweet potato plants.

Development of Genus- and Species-Specific Probe Design System for Pathogen Detection Based on 23S rDNA

  • Park Jun-Hyung;Park Hee-Kyung;Kang Byeong-Chul;Song Eun-Sil;Jang Hyun-Jung;Kim Cheol-Min
    • Journal of Microbiology and Biotechnology
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    • v.16 no.5
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    • pp.740-747
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    • 2006
  • Amplification by universal consensus sequences in pathogenic bacterial DNA would allow rapid identification of pathogenic bacteria, and amplification of genus-specific and species-specific sequences of pathogenic bacterial DNA might be used for genotyping at the genus and species levels. For design of probes for molecular diagnostics, several tools are available as stand-alone programs or as Web application. However, since most programs can design only a few probe sets at one time, they are not suitable for large-scale and automatic probes design. Therefore, for high-throughput design of specific probes in diagnostic array development, an automated design tool is necessary. Thus, we developed a Web-based automatic system for design of genus-specific and species-specific probes for pathogen detection. The system is available at http://www.miprobe.com.

Sex Determination in Somatic and Embryonic Cells of the Pig by FISH and PCR (FISH와 PCR에 의한 돼지 체세포 및 배아세포의 성 판정)

  • Chung, Y.;Jeon, J.T.;Kim, K.D.;Lee, S.H.;Hong, K.C.
    • Korean Journal of Animal Reproduction
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    • v.20 no.3
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    • pp.323-331
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    • 1996
  • Predetermination of sex in mammalian species has many aspects of application including the prenatal diagnoses of genetic disorders in humans and sex-selected breeding programs in the animal industry. Embryos sexing can be carried out using the polymerase chain reaction (PCR) to amplify specific sequences present in the sex chromosomes, or by fluorescent in situ hybridization (FISH) of specific probes to the X and Y chromosomes. A 3.3 kb porcine male-specific DNA fragment (pEM39) was cloned previously in our laboratory. In this study, FISH and PCR methods were employed to examine if the pEM39 can be used a sex-specific DNA probes Porcine ovaries were obtained from a local slaughter house and oocytes collected. All oocytes were subjected to in vitro maturation followed by 1n vitro fertilization. Parthenogenetically activated embryos were served as a negative control. Embryonic samples were collected at the 2-cell stages and PCR was performed to analyze DNA. Among 10 embryos examined, four embryos were identified as males and six were females. The cloned male-specific DNA fragment showed male-specificity for the cells in the liver tissue and the porcine early embryos by FISH. It was also demonstrated that the cloned male-specific DNA is localized on the hetero chromatic region of the long arm in the Y chrom-osome (Yq) as shown by the FISH and karyotyping. The results suggest that the cloned male-specific DNA fragment may be useful for predetermination of sex with a few embryonic cells. The porcine male-specific sequence can be a reliable index for embryo sexing by PCR.

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Identification and Phylogenetic Relationships of Inonotus obliquus Strains by PCR-RFLP of ITS sequences and STS markers (ITS 부위의PCR-RFLP 및 STS 마커를 이용한 차가버섯의 종 및 계통간 유연관계 분석)

  • Shin, Pyung-Gyun;Kong, Won-Sik;Yoo, Young-Bok;Lee, Keum-Hee;Oh, Se-Jong;Choi, Man-Soo
    • Journal of Mushroom
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    • v.7 no.4
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    • pp.150-155
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    • 2009
  • Because the import of Inonotus obliquus have been rapidly increased in Korea, we developed the Inonotus species-specific marker by using various sequences including ITS sequences, PCR-RFLP and STS primers and used this marker to determine both genetic relatedness and strains discrimination of Inonotus spp. Total 17 different Inonotus spp. were examined by using ITS sequences and classified into 2 different groups. One strain, ASI74008 isolated from Kamchaka island of Siberia, showed the high sequence identity (98%) at the nucleotide level to the other I. obliquus DSM strain, indicating the ASI74008 belong to I. obliquus species. Comparison of banding patterns after restriction enzyme digestions with PCR amplicons of ITS region revealed some variations depending on the species and strains. However, PCR products amplified with STS primer showed species specific patterns.Therefore, use of both STS primers and PCR-RFLP could help for better strain identification.

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Nested PCR for the Detection of Streptococcus mutans (Nested PCR를 이용한 Streptococcus mutans의 검출)

  • Choi, Min-Ho;Yoo, So-Young;Lim, Chae-Kwang;Kang, Dong-Wan;Kook, Joong-Ki
    • Korean Journal of Microbiology
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    • v.42 no.1
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    • pp.19-25
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    • 2006
  • This study was undertaken to develop PCR primers for the identification and detection of Streptococcus mutans (by)using species-specific forward and universal reverse primers. These primers targeted the variable regions of the 16S ribosomal RNA coding gene (rDNA). The primer specificity was tested against 11S. mutans strains and 10 different species (22 strains) of oral bacteria. The primer sensitivity was determined by testing serial dilutions of the purified genomic DNA of S. mutans ATCC $25175^T$. The data showed that species-specific amplicons were obtained from all the S. mutans strains tested, which was not observed in the other species. The direct and nested PCR could detect as little as 2 pg and 2 fg of the chromosomal DNA from S. mutans ATCC $25175^T$, respectively. This shows that the PCR primers are highly sensitive and applicable to the detection and identification of S. mutans.

Identification of Salted Opossum Shrimp Using COI-based Restriction Fragment Length Polymorphism (COI 기반 제한효소 절편 길이 다형성(RFLP)을 이용한 새우젓 분석)

  • Park, Ju Hyeon;Moon, Soo Young;Kang, Ji Hye;Jung, Myoung Hwa;Kim, Sang Jo;Choi, Hee Jung
    • Journal of Life Science
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    • v.31 no.1
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    • pp.66-72
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    • 2021
  • This study developed a species identification method for the salted opossum shrimp of Acetes japonicus, A. chinensis (Korea, China), A. indicus (I, II), and Palaemon gravieri based on PCR-RFLP markers. Genomic DNA was extracted from the salted opossum shrimp. The COI gene was used to amplify 519 base pairs (bp) using specific primers. The amplified products were digested by Acc I and Hinf I, and the DNA fragments were separated by automated electrophoresis for RFLP analysis. When the amplified DNA product (519 bp) was digested with Acc I, A. japonicus, A. chinensis (Korea), and A. indius (II) showed two fragments, whereas a single band of 519 bp was detected in A. chinensis (China) and A. indius (I). Also, in the RFLP patterns digested by Hinf I, A. chinensis (Korea) and A. chinensis (China) showed a single band of 519 bp, while two fragments were observed in A. japonicus and A. indius (I) and four fragments in A. indius (II). The PCR amplicon of P. gravieri was digested by Acc I into 3 bands of 271, 202, and 46 bp and by Hinf I into a single band of 519 bp. Therefore, salted opossum shrimp-specific RFLP markers showing distinct differences between four species and two sub-species by PCR-RFLP analysis. Thus, the PCR-RFLP markers developed in this study are a good method for identifying the six types of salted opossum shrimp.

Identification of Salmonella Enteritidis and S. Typhimurium by multiplex polymerase chain reaction (Multiplex PCR 기법을 이용한 Salmonella Enteritidis와 S. Typhimurium의 특이적 검출에 관한 연구)

  • Lee, Woo-Won;Lee, Seung-Mi;Lee, Gang-Rok;Lee, Dong-Soo;Park, Ho-Kuk
    • Korean Journal of Veterinary Service
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    • v.32 no.2
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    • pp.147-153
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    • 2009
  • Salmonella species are the most important etiologic agents of food-borne acute gastroenteritis. The most common serotypes isolated from humans are Salmonella enterica serotype Typhimurium (S. Typhimurium) and S. Enteritidis. Traditional detection methods for Salmonella are based on cultures using selective media and characterization of suspicious colonies by biochemical and serological tests. These methods are generally time-consuming and not so highly sensitive. Recently, the polymerase chain reaction (PCR) has been used as a highly sensitive, specific, and rapid test for the presence of pathogenic bacteria. In this study, a multiplex PCR (m-PCR) was used to detect S. Typhimurium and S. Enteritidis. We selected m-PCR target genes, which were the spv (virulence plasmid specific for S. Enteritidis) and sefA (S. Enteritidis fimbrial antigen) genes, fliC (H1-i antigen specific for S. Typhimurium) and a randomly cloned sequence specific for the genus Salmonella. With m-PCR, random sequence was detected from all strains of Salmonella spp, spv and sefA were detected from all strains of S. Enteritidis (100%), and fliC was detected from all strains of S. Typhimurium (100%). This assay indicate that the specificity of the m-PCR make them potentially valuable tools for detection of S. Typhimurium and S. Enteritidis.

Development of SCAR Markers for the Authentication of Acori Rhizoma Based on the Analysis of RAPD and Multiplex-PCR (RAPD 분석과 multiplex-PCR을 이용한 석창포 감별용 SCAR 마커 개발)

  • Moon, Byeong-Cheol;Ji, Yun-Ui;Lee, Young-Mi;Chun, Jin-Mi;Lee, A-Yeong;Choo, Byung-Kil;Kim, Ho-Kyoung
    • Korean Journal of Medicinal Crop Science
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    • v.19 no.3
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    • pp.162-169
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    • 2011
  • The rhizomes and herbal medicines originating from Acorus gramineus, A. calamus, A. tatarinowii, and A. gramineus var. pusilus, show significant similarity, and the correct identification of species is very difficult. Random Amplified Polymorphic DNA (RAPD) and Sequence Characterized Amplified Region (SCAR) were used to develop a reliable method for identification of these four species. Several distinct SCAR markers were developed from species-specific RAPD amplicons for each species. Furthermore, a useful molecular marker was established for multiplex-PCR, in order to the four species could be distinguished concurrently. These markers allow efficient and rapid identification of closely-related Acorus species and will be useful for standardization of herbal medicines.

Identification of Nocardia seriolae by polymerase chain reaction (PCR에 의한 Nocardia seriolae의 검출)

  • Park, Myoung-Ae;Cho, Mi-Young;Kim, Myoung-Sug;Kim, Jae-Hoon;Lee, Deok-Chan
    • Journal of fish pathology
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    • v.22 no.1
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    • pp.85-90
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    • 2009
  • A method for the identification of Nocardia seriolae, the causative agent of nocardiosis in cultured fishes, using PCR was developed in the study. A PCR primer set specific to N. seriolae was designed based on 16S-23S rRNA sequence of various Nocardia species accessed in GenBank. Designed PCR primer set, Nseri-F (5'-GCA AAC TCT TCG AAC AGT CG-3') and Nseri-R (5'-GGA TAT CAG GAC TTA CCG GC-3'), amplifies the target regions of N. seriolae only, but not 4 other Nocardia species, N. asteroides, N. crassostreae, N. farcinica and N. salmonicida.

Identification of Korean Native Pork Using Breed-Specific DNA Marker of KIT Gene

  • Chung, Eui-Ryong;Chung, Ku-Young
    • Food Science of Animal Resources
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    • v.30 no.3
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    • pp.403-409
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    • 2010
  • Accurate methods for the identification of closely related species or breeds in raw and processed meats must be developed in order to protect both consumers and producers from mislabeling and fraud. This paper describes the development of DNA markers for the discrimination and improvement of Korean native pig (KNP) meat. The KIT gene is related to pig coat color and is often used as a candidate marker. A 538 bp fragment comprising intron 19 of the pig KIT gene was amplified by PCR using specific primers, after which the PCR amplicons of a number of meat samples from KNP and three major improved breeds (Landrace, Duroc and Yorkshire) were sequenced in order to find a nucleotide region suitable for PCR-RFLP analysis. Sequence data showed the presence of two nucleotide substitutions, g.276G>A and g.295A>C, between KNP and the improved pig breeds. Digestion of KIT amplicons with AccII enzyme generated characteristic PCR-RFLP profiles that allowed discrimination between meats from KNP and improved pig. KNP showed three visible DNA bands of 264/249, 199, and 75 bp, whereas DNA bands of 249, 199, and 90 bp were detected in the three improved pig breeds. Therefore, the 75 bp DNA fragment was specific only to KNP, whereas the 90 bp DNA fragment was specific to the improved breeds. The breed-specific DNA markers reported here that target the KIT gene could be useful for the identification of KNP meat from improved pig meats, thus contributing to the prevention of falsified breed labeling.