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・ DNA Films
・ DNA footprinting
・ DNA fragmentation
・ DNA glycosylase
・ DNA gyrase
・ DNA history of Egypt
・ DNA Identification Act (Canada)
・ DNA laddering
・ DNA ligase
・ DNA ligase (NAD+)
・ DNA Lounge
・ DNA machine
・ DNA marking
・ DNA methylation
・ DNA methyltransferase
DNA microarray
・ DNA microarray experiment
・ DNA mismatch repair
・ DNA Model Management
・ DNA nanoball sequencing
・ DNA nanotechnology
・ DNA on DNA
・ DNA origami
・ DNA oxidation
・ DNA oxidative demethylase
・ DNA Oy
・ DNA paternity testing
・ DNA Patterns
・ DNA phenotyping
・ DNA photolyase


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DNA microarray : ウィキペディア英語版
DNA microarray

A DNA microarray (also commonly known as DNA chip or biochip) is a collection of microscopic DNA spots attached to a solid surface. Scientists use DNA microarrays to measure the expression levels of large numbers of genes simultaneously or to genotype multiple regions of a genome. Each DNA spot contains picomoles (10−12 moles) of a specific DNA sequence, known as ''probes'' (or ''reporters'' or ''oligos''). These can be a short section of a gene or other DNA element that are used to hybridize a cDNA or cRNA (also called anti-sense RNA) sample (called ''target'') under high-stringency conditions. Probe-target hybridization is usually detected and quantified by detection of fluorophore-, silver-, or chemiluminescence-labeled targets to determine relative abundance of nucleic acid sequences in the target.
== Principle ==

(詳細はcomplementary nucleic acid sequences to specifically pair with each other by forming hydrogen bonds between complementary nucleotide base pairs. A high number of complementary base pairs in a nucleotide sequence means tighter non-covalent bonding between the two strands. After washing off non-specific bonding sequences, only strongly paired strands will remain hybridized. Fluorescently labeled target sequences that bind to a probe sequence generate a signal that depends on the hybridization conditions (such as temperature), and washing after hybridization. Total strength of the signal, from a spot (feature), depends upon the amount of target sample binding to the probes present on that spot. Microarrays use relative quantitation in which the intensity of a feature is compared to the intensity of the same feature under a different condition, and the identity of the feature is known by its position.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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