JoVE Logo

로그인

Fluorescence in situ hybridization, or FISH, was developed in the early 1980s and has quickly become one of the most widely used techniques in cytogenetics. Labeled probes are used to bind complementary DNA or RNA sequences on a chromosome or in a region within a cell. Earlier, the probes could only be obtained by cloning or reverse transcription of a DNA template. Currently, the probe oligonucleotides can be synthesized synthetically. Additionally, with the advancement of optical techniques, CCD cameras, and sophisticated image-processing software, FISH signals can be interpreted with greater sensitivity and high specificity.

These technological advances have widened the scope of FISH applications from cytogenetics and gene mapping to the diagnosis of genetic and infectious diseases. High-resolution images obtained from FISH help identify chromosomal aberrations, such as common aneuploidy (abnormal number of chromosomes in a cell), microdeletion/microduplication syndromes (loss or gain of a chromosome), and subtelomeric rearrangements.

FISH is also used to detect the presence of microbial pathogens in human blood cells. In such diagnostic assays, short fluorescence-labeled DNA binds to the microbial 16s rRNA and can be visualized under a fluorescence microscope. It helps in the identification of the infectious agents at the genus or species level. FISH-based diagnostics allows for rapid identification of the pathogen, which is crucial for detecting slow-growing organisms like Mycobacteria - causative agent of tuberculosis or other microbes, such as Tropheryma whipplei that are difficult to culture.

Tags

Fluorescent In situ HybridizationFISHCytogeneticsLabeled ProbesDNA SequencesRNA SequencesCloningReverse TranscriptionOligonucleotidesOptical TechniquesCCD CamerasImage processing SoftwareGenetic DiseasesInfectious DiseasesChromosomal AberrationsAneuploidyMicrodeletion SyndromesMicroduplication SyndromesSubtelomeric RearrangementsMicrobial PathogensDiagnostic AssaysFluorescence labeled DNA16s RRNAFluorescence Microscope

장에서 15:

article

Now Playing

15.8 : FISH - Fluorescent In-situ Hybridization

DNA 와 RNA의 연구

19.3K Views

article

15.1 : 재조합 DNA

DNA 와 RNA의 연구

16.6K Views

article

15.2 : DNA 분리

DNA 와 RNA의 연구

37.2K Views

article

15.3 : DNA 아가로스 젤 전기영동

DNA 와 RNA의 연구

94.5K Views

article

15.4 : DNA 프로브 라벨링

DNA 와 RNA의 연구

8.1K Views

article

15.5 : 서던 블롯

DNA 와 RNA의 연구

17.9K Views

article

15.6 : DNA 마이크로어레이

DNA 와 RNA의 연구

17.0K Views

article

15.7 : 상보적 DNA

DNA 와 RNA의 연구

5.5K Views

article

15.9 : PCR - 폴리메라이제 연쇄 반응

DNA 와 RNA의 연구

83.0K Views

article

15.10 : 실시간 RT-PCR

DNA 와 RNA의 연구

56.6K Views

article

15.11 : RACE - cDNA 말단의 신속한 증폭

DNA 와 RNA의 연구

6.2K Views

article

15.12 : Sanger 염기서열분석

DNA 와 RNA의 연구

751.3K Views

article

15.13 : 차세대 염기서열분석

DNA 와 RNA의 연구

86.1K Views

article

15.14 : RNA-염기서열분석

DNA 와 RNA의 연구

9.7K Views

article

15.15 : 게놈 주석 및 조립(Genome Annotation and Assembly)

DNA 와 RNA의 연구

18.7K Views

See More

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유