Gatccatgagttac
ctaggtactcaatg
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.
complementary nucleotides
The complementary strand of this DNA sequence is... A T G C T A A C C
If the DNA sequence is ATCG, the complementary RNA sequence would be UAGC (A pairs with U, T pairs with A, C pairs with G, G pairs with C).
The complementary base pairs in a DNA molecule are adenine (A) pairing with thymine (T), and cytosine (C) pairing with guanine (G). This forms the basis of the double helix structure of DNA.
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.
The base sequence complementary to CGAC in a DNA molecule is GCTG. In DNA, cytosine (C) pairs with guanine (G), and adenine (A) pairs with thymine (T), so you would replace each base with its complementary counterpart. Therefore, C pairs with G, G pairs with C, A pairs with T, and C pairs with G.
The newly synthesized RNA molecule is complementary to the DNA template strand. It pairs with the template strand through base pairing rules (A with U, T with A, G with C, and C with G) to create an mRNA transcript that corresponds to the DNA sequence.
A DNA molecule can have base pairs composed of adenine (A) pairing with thymine (T), and guanine (G) pairing with cytosine (C). This is known as complementary base pairing in DNA.
Adenine pairs with Thymine, and Guanine pairs with Cytosine in a molecule of DNA through hydrogen bonding. This base pairing is essential for the specificity and the complementary structure of DNA strands.
complementary nucleotides
The complementary strand of this DNA sequence is... A T G C T A A C C
If the DNA sequence is ATCG, the complementary RNA sequence would be UAGC (A pairs with U, T pairs with A, C pairs with G, G pairs with C).
In DNA, the complementary strand would be: GGATCAGTAC.
A binds to T and C binds to G. Therefore the complementary strand to ATT-CGC is TAA-GCG.
The complementary base pairs in a DNA molecule are adenine (A) pairing with thymine (T), and cytosine (C) pairing with guanine (G). This forms the basis of the double helix structure of DNA.
The complementary base pairs in DNA are adenine (A) with thymine (T), and cytosine (C) with guanine (G).