A strand of DNA
A strand of DNA
Reverse transcriptase use mRNA to form DNA. mRNA
There is no such process. DNA cannot come from RNA unless it contains reverse transcriptase. However, there is a process that makes mRNA from a DNA strand. This process is called transcription.
When RNA's base sequence is used to determine the base sequence of a new strand of DNA, that is called reverse transcription.This is because the process is the reverse of transcription, which involves copying the base sequence of DNA to form RNA, including messenger RNA (mRNA).
The "c" in cDNA stands for complementary. cDNA is synthesized from mRNA using reverse transcriptase, resulting in a complementary DNA strand that lacks introns and represents the protein-coding regions of a gene.
A strand of DNA
A strand of DNA
An enzyme called reverse transcriptase, which creates a DNA strand from an mRNA strand.
Reverse transcriptase use mRNA to form DNA. mRNA
Reverse transcriptase use mRNA to form DNA. mRNA
The enzyme needed to make a DNA copy of RNA (including mRNA) is called reverse transcriptase. This enzyme is capable of synthesizing a complementary DNA strand from an RNA template, which is the first step in generating a cDNA (complementary DNA) library.
There is no such process. DNA cannot come from RNA unless it contains reverse transcriptase. However, there is a process that makes mRNA from a DNA strand. This process is called transcription.
cDNA (complementary DNA) is created by using an enzyme called reverse transcriptase to convert messenger RNA (mRNA) into a complementary DNA strand. This process, known as reverse transcription, results in a single-stranded cDNA molecule that can be further amplified and used for various molecular biology applications.
When RNA's base sequence is used to determine the base sequence of a new strand of DNA, that is called reverse transcription.This is because the process is the reverse of transcription, which involves copying the base sequence of DNA to form RNA, including messenger RNA (mRNA).
If we are talking about viruses and their RNA genomes(eg:HIV), the negative strand DNA synthesis by reverse transcriptase occurs in the host cells, when the virus infects the host. And then, plus DNA formed by complementing this minus DNA.
Scientists used reverse transcriptase in insulin research by first isolating messenger RNA (mRNA) from cells that produce insulin. The reverse transcriptase enzyme then converted this mRNA into complementary DNA (cDNA), which could be used for further analysis and cloning. This allowed researchers to study the genetic basis of insulin production and potentially manipulate it for various applications.
To make DNA from mRNA