1.Applications and perspectives of DNA stable-isotope probing in metagenomics: a review.
Wei LIU ; Xiao WEI ; Jing YUAN ; Liuyu HUANG
Chinese Journal of Biotechnology 2011;27(4):539-545
DNA stable-isotope probing (DNA-SIP) is a recently developed method with which the incorporation of stable isotope from a labeled substrate is used to identify the function of microorganisms in the environment. The technique has now been used in conjunction with metagenomics to establish links between microbial identity and particular metabolic functions. The combination of DNA-SIP and metagenomics not only permits the detection of rare low-abundance species from metagenomic libraries but also facilitates the detection of novel enzymes and bioactive compounds. We summarize recent progress in SIP-metagenomic techniques and applications and discuss prospects for this combined approach in environmental microbiology and biotechnology.
Animals
;
DNA
;
genetics
;
DNA Probes
;
chemistry
;
genetics
;
metabolism
;
DNA, Bacterial
;
chemistry
;
genetics
;
metabolism
;
Humans
;
Isotope Labeling
;
methods
;
Metagenomics
;
methods
;
Molecular Probe Techniques
;
Sequence Analysis, DNA
;
methods
2.Establishment of a fluorescent quantitative PCR detection method for rabies virus and preparation of RNA positive controls.
Yun-long WANG ; Rui-hong ZHAO ; Zhi-tao LI ; Yu-lin LI ; Guo-qiang WANG ; Fei SHEN
Chinese Journal of Experimental and Clinical Virology 2008;22(6):504-506
OBJECTIVEEstablish the fluorescent quantitative RT-PCR detection method for rabies virus (RV) and construct RNase-resistant virus-like particles as positive controls.
METHODSAnalyze the database in GenBank, the probe and the primers were designed in the conservative region of N gene of rabies virus and the method of real-time fluorescent quantitative PCR was obtained; On the basis of MS2 phage, with the technology of gene recombination, prepare the RNase-resistant virus-like particles for RV positive controls;
RESULTSRNase-resistant virus-like particles were obtained after prokaryotic expression in E. coli. The designed primers and probe were confirmed to be very specific and conservative, and be sensitive to-concentration of 15 copies/microl.
CONCLUSIONEstablished the method of detecting rabies virus by reverse transcription real-time quantitative PCR,obtained the RNase-resistant and no infectivity virus-like particles as positive controls of rabies virus.
Animals ; DNA Probes ; DNA, Viral ; Dogs ; Humans ; RNA, Viral ; analysis ; Rabies ; virology ; Rabies virus ; chemistry ; Reverse Transcriptase Polymerase Chain Reaction ; methods ; Ribonuclease, Pancreatic ; metabolism ; Viral Load
3.Establishment and evaluation of the method for detecting HBV DNA in serum using HBV DNA probe labeled directly by alkaline phosphatase.
Yaxi CHEN ; Ailong HUANG ; Zhenyuan QI ; Youlan SHAN ; Hang SUN
Chinese Journal of Hepatology 2002;10(6):429-431
OBJECTIVETo establish a sensitive and specific technique for detecting HBV DNA in serum using HBV DNA probe labeled directly by alkaline phosphatase (AlkPhos Direc probe).
METHODSThe probe that purified HBV DNA sequence was labeled directly by alkaline phosphatase and chemiluminescent substrate CDP-star for AP was used in the hybridization assay. HBV DNA was detected by autoradiography on the film. The test compared the chemiluminescen dot blot hybridization assay for 80 samples with digoxigenin-labeled HBV DNA probe detective method. The correlation of 70 samples test results between fluorescent quantitative HBV DNA PCR method and dot blot hybridization assay by AlkPhos Direc probe was analysed.
RESULTSThe sensitivity of the probe labeled directly by alkaline phosphatase was 10pg at least. The coincidence was 100% compared with digoxigenin-labeled HBV DNA probe detection. A correlation coefficient of HBV DNA quantitative results between fluorescent quantitative HBV DNA PCR (QPCR) method and dot blot hybridization assay by AlkPhos Direc probe was 0.98 (P<0.01).
CONCLUSIONSThe method detecting HBV DNA in serum by HBV DNA AlkPhos Direc probe is sensitive and specific. The results between two methods with AlkPhos Direc and digoxigenin-labeled HBV DNA probe are coincident completely. The correlation of HBV DNA quantitative results between fluorescent QPCR method and dot blot hybridization assay by AlkPhos Direc probe is satisfactory.
Alkaline Phosphatase ; chemistry ; metabolism ; Animals ; DNA Probes ; chemistry ; genetics ; DNA, Viral ; blood ; genetics ; Hepatitis B ; blood ; diagnosis ; virology ; Hepatitis B virus ; genetics ; Humans ; Molecular Diagnostic Techniques ; methods ; standards ; Polymerase Chain Reaction ; methods ; Sensitivity and Specificity
4.Using oligonucleotide suspension arrays for laboratory identification of bacteria responsible for bacteremia.
Xiao-li HOU ; Han-liang JIANG ; Qing-yi CAO ; Li-ying ZHAO ; Barbara J CHANG ; Zhi CHEN
Journal of Zhejiang University. Science. B 2008;9(4):291-298
The aim of this study was to develop and validate an oligonucleotide suspension array for rapid identification of 15 bacterial species responsible for bacteremia, particularly prevalent in Chinese hospitals. The multiplexed array, based on the QIAGEN LiquiChip Workstation, included 15 oligonucleotide probes which were covalently bound to different bead sets. PCR amplicons of a variable region of the bacterial 23S rRNA genes were hybridized to the bead-bound probes. Thirty-eight strains belonging to 15 species were correctly identified on the basis of their corresponding species-specific hybridization profiles. The results show that the suspension array, in a single assay, can differentiate isolates over a wide range of strains and species, and suggest the potential utility of suspension array system to clinical laboratory diagnosis.
Bacteremia
;
diagnosis
;
genetics
;
Bacterial Typing Techniques
;
Bacteriological Techniques
;
DNA Probes
;
Genetic Techniques
;
Listeria monocytogenes
;
metabolism
;
Nucleic Acid Hybridization
;
Oligonucleotide Array Sequence Analysis
;
Oligonucleotides
;
chemistry
;
RNA, Ribosomal
;
chemistry
;
RNA, Ribosomal, 23S
;
genetics
;
Stem Cells
5.Connection of magnetic antisense probe with SK-Br-3 oncocyte mRNA nucleotide detected by high resolution atomic force microscope.
Shude TAN ; Yu OUYANG ; Xinyou LI ; Ming WEN ; Shaolin LI
Journal of Biomedical Engineering 2011;28(3):442-445
The present paper is aimed to detect superparamagnetic iron oxide labeled c-erbB2 oncogene antisense oligonucleotide probe (magnetic antisense probe) connected with SK-Br-3 oncocyte mRNA nucleotide by high resolution atomic force microscope (AFM). We transfected SK-Br-3 oncocyte with magnetic antisense probe, then observed the cells by AFM with high resolution and detected protein expression and magnetic resonance imagine (MRI). The high resolution AFM clearly showed the connection of the oligonucleotide remote end of magnetic antisense probe with the mRNA nucleotide of oncocyte. The expression of e-erbB2 protein in SK-Br3 cells were highly inhibited by using magnetic antisense probe. We then obtained the lowest signal to noise ratio (SNR) of SK-Br-3 oncocyte transfected with magnetic antisense probe by MRI (P<0.05). These experiments demonstrated that the high resolution AFM could be used to show the binding of magnetic antisense probe and SK-Br-3 mRNA of tumor cell nuclear.
Breast Neoplasms
;
metabolism
;
pathology
;
Cell Line, Tumor
;
DNA, Antisense
;
chemistry
;
genetics
;
Female
;
Ferric Compounds
;
chemistry
;
Genes, erbB-2
;
genetics
;
Humans
;
Magnetics
;
Microscopy, Atomic Force
;
methods
;
Molecular Probe Techniques
;
Nucleic Acid Probes
;
chemistry
;
genetics
;
Oligodeoxyribonucleotides
;
chemistry
;
genetics
;
Oxyphil Cells
;
ultrastructure
;
RNA, Messenger
;
genetics
;
metabolism
6.Evaluation of Peptide Nucleic Acid Probe-based Real-time PCR for Detection of Mycobacterium tuberculosis Complex and Nontuberculous Mycobacteria in Respiratory Specimens.
Young Jin CHOI ; Hwi Jun KIM ; Hee Bong SHIN ; Hae Seon NAM ; Sang Han LEE ; Joon Soo PARK ; Kwi Sung PARK ; Kyoung Ah BAEK
Annals of Laboratory Medicine 2012;32(4):257-263
BACKGROUND: A peptide nucleic acid (PNA) probe-based real-time PCR (PNAqPCR(TM) TB/NTM detection kit; PANAGENE, Korea) assay has been recently developed for the simultaneous detection of Mycobacterium tuberculosis complex (MTBC) and nontuberculous mycobacteria (NTM) in clinical specimens. The study was aimed at evaluation of the performance of PNA probe-based real-time PCR in respiratory specimens. METHODS: To evaluate potential cross-reactivity, the extracted DNA specimens from Mycobacterium species and non-mycobacterial species were tested using PNA probe-based real-time PCR assay. A total of 531 respiratory specimens (482 sputum specimens and 49 bronchoalveolar washing fluid specimens) were collected from 230 patients in July and August, 2011. All specimens were analyzed for the detection of mycobacteria by direct smear examination, mycobacterial culture, and PNA probe-based real-time PCR assay. RESULTS: In cross-reactivity tests, no false-positive or false-negative results were evident. When the culture method was used as the gold standard test for comparison, PNA probe-based real-time PCR assay for detection of MTBC had a sensitivity and specificity of 96.7% (58/60) and 99.6% (469/471), respectively. Assuming the combination of culture and clinical diagnosis as the standard, the sensitivity and specificity of the new real-time PCR assay for detection of MTBC were 90.6% (58/64) and 99.6% (465/467), respectively. The new real-time PCR for the detection of NTM had a sensitivity and specificity of 69.0% (29/42) and 100% (489/489), respectively. CONCLUSIONS: The new real-time PCR assay may be useful for the detection of MTBC in respiratory specimens and for discrimination of NTM from MTBC.
Bronchoalveolar Lavage Fluid/microbiology
;
DNA Probes/chemistry/metabolism
;
DNA, Bacterial/*analysis
;
Humans
;
Molecular Typing/*methods
;
Mycobacterium tuberculosis/*genetics/isolation & purification
;
Nontuberculous Mycobacteria/*genetics/isolation & purification
;
Nucleic Acid Hybridization
;
Peptide Nucleic Acids/chemistry/*metabolism
;
*Real-Time Polymerase Chain Reaction
;
Respiratory System/*microbiology
;
Sputum/microbiology