Detection of Mycobacterium bovis in bovine clinical specimens using real-time fluorescence and fluorescence resonance energy transfer probe rapid-cycle PCR

被引:37
作者
Taylor, MJ [1 ]
Hughes, MS [1 ]
Skuce, RA [1 ]
Neill, SD [1 ]
机构
[1] Dept Agr & Rural Dev, Vet Sci Div, Belfast BT4 3SD, Antrim, North Ireland
关键词
D O I
10.1128/JCM.39.4.1272-1278.2001
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Nucleic acid sequence capture extraction was coupled with LightCycler PCR amplification and product detection using real-time fluorescence for rapid, definitive detection of Mycobacterium bovis in lymph node specimens from 38 cattle with bovine tuberculosis lesions. PCR amplification of sequence-captured DNA using both a conventional heating block thermocycler and a LightCycler thermocycler was compared with culture and histopathological analyses. Conventional PCR enabled detection of 26 of 28 culture-positive specimens (93%) in approximately 9 h, and the LightCycler PCR detected 20 of 28 culture-positive specimens (71%) in only 30 min. Specific confirmation of Mycobacterium tuberculosis complex DNA was achieved by LightCycler PCR amplification using Syb Green 1 and an M tuberculosis complex-specific Cy5-labeled fluorescence resonance energy transfer probe. The system described here enabled rapid and specific laboratory confirmation of bovine tuberculosis, and this is the first report of the detection of M. bovis in tissues using LightCycler PCR, The fluorescence technology used in the study has potential to allow development of a high-throughput molecular diagnostic test for bovine tuberculosis.
引用
收藏
页码:1272 / 1278
页数:7
相关论文
共 31 条
[11]   SIMULTANEOUS AMPLIFICATION AND DETECTION OF SPECIFIC DNA-SEQUENCES [J].
HIGUCHI, R ;
DOLLINGER, G ;
WALSH, PS ;
GRIFFITH, R .
BIO-TECHNOLOGY, 1992, 10 (04) :413-417
[12]   Accessing genomic information: alternatives to PCR [J].
Isaksson, A ;
Landegren, U .
CURRENT OPINION IN BIOTECHNOLOGY, 1999, 10 (01) :11-15
[13]   A rapid polymerase chain reaction technique for detecting M tuberculosis in a variety of clinical specimens [J].
Kearns, AM ;
Freeman, R ;
Steward, M ;
Magee, JG .
JOURNAL OF CLINICAL PATHOLOGY, 1998, 51 (12) :922-924
[14]   IMPROVED DETECTION TIMES FOR MYCOBACTERIUM-AVIUM COMPLEX AND MYCOBACTERIUM-TUBERCULOSIS WITH THE BACTEC RADIOMETRIC SYSTEM [J].
KIRIHARA, JM ;
HILLIER, SL ;
COYLE, MB .
JOURNAL OF CLINICAL MICROBIOLOGY, 1985, 22 (05) :841-845
[15]  
LIEBANA E, 1995, J CLIN MICROBIOL, V33, P33
[16]   Sequence capture-PCR improves detection of mycobacterial DNA in clinical specimens [J].
Mangiapan, G ;
Vokurka, M ;
Shouls, L ;
Cadranel, J ;
Lecossier, D ;
vanEmbden, J ;
Hance, AJ .
JOURNAL OF CLINICAL MICROBIOLOGY, 1996, 34 (05) :1209-1215
[17]   PATHOGENESIS OF MYCOBACTERIUM-BOVIS INFECTION IN CATTLE [J].
NEILL, SD ;
POLLOCK, JM ;
BRYSON, DB ;
HANNA, J .
VETERINARY MICROBIOLOGY, 1994, 40 (1-2) :41-52
[18]  
NEILL SD, 1995, TUBERCULOSIS WILDLIF, P183
[19]   THE EPIDEMIOLOGY OF MYCOBACTERIUM-BOVIS INFECTIONS IN ANIMALS AND MAN - A REVIEW [J].
OREILLY, LM ;
DABORN, CJ .
TUBERCLE AND LUNG DISEASE, 1995, 76 :1-46
[20]   Nucleic acid amplification for mycobacterial diagnosis [J].
Pfyffer, GE .
JOURNAL OF INFECTION, 1999, 39 (01) :21-26