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Real-time reverse transcription-polymerase chain reaction, or Real-time RT-PCR, can quantify an RNA of interest as the reaction progresses.
To begin, reverse transcriptase copies the RNA into complementary, or cDNA. RNase H digests the original RNA, leaving behind small primers attached to the cDNA.
A complementary strand is then synthesized by DNA polymerase.
Targeted amplification can then be carried out using PCR to create exponential copies of specific segments. The two strands are separated at the start of each cycle at high temperatures. Complementary oligonucleotide primers then anneal to each cDNA strand, and are extended by DNA polymerase.
The DNA can be quantified using one of two different fluorescence-based detection methods. One method uses dyes that only fluoresce when bound to double-stranded DNA.
The dye binds to DNA, where the original strand is paired with a newly synthesized complementary strand. At the end of each PCR cycle, an appropriate wavelength of light excites the bound dye.
The other method uses complementary sequence-specific oligonucleotide probes linked to a fluorophore and a quencher molecule.
The reaction is continuously exposed to an appropriate
Real-time reverse transcription-polymerase chain reaction, or Real-time RT-PCR, is an analytical tool used to determine the expression level of target…
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