The DNA sequence that would pair with the DNA segment TTACGC is AATGCG. The mRNA sequence that would pair with the DNA segment TTACGC is AAUGCG.
In DNA, the sequence of bases that would pair with GTACG would be CATGC. In RNA, the sequence of bases that would pair with GTACG would be CAUGC, because in RNA, uracil (U) replaces thymine (T).
The mRNA base sequence corresponding to the DNA sequence acgtt is ugcaa. The mRNA sequence is complementary to the DNA sequence, with thymine (T) in DNA being replaced by uracil (U) in mRNA.
The DNA segment 3' ATT 5' would be transcribed to the mRNA sequence 5' UAA 3'.
The opposing base pairs for the sequence ATCG in DNA would be TAGC. Adenine pairs with thymine, and cytosine pairs with guanine in DNA.
The DNA segment complementary to the mRNA sequence "UGAUUC" would be "ACTAAG". This is because in DNA, adenine pairs with thymine and cytosine pairs with guanine. Thus, the complementary DNA sequence of the mRNA sequence is determined by replacing each base with its complementary base.
CCGTAGGCC is a sequence of DNA base pairs. It represents the complementary DNA strand to the original sequence GGCTACGG, where each base pairs with its complementary base (A with T and C with G).
The DNA sequence that would pair with the DNA segment TTACGC is AATGCG. The mRNA sequence that would pair with the DNA segment TTACGC is AAUGCG.
In DNA, the sequence of bases that would pair with GTACG would be CATGC. In RNA, the sequence of bases that would pair with GTACG would be CAUGC, because in RNA, uracil (U) replaces thymine (T).
If DNA has the sequence AAA, the corresponding mRNA segment would have the sequence UUU due to complementary base pairing during transcription. This mRNA sequence would then undergo translation in order to produce a protein based on the genetic information contained in the DNA.
TACA
The 2nd strand matching DNA refers to the strand that can pair with the original DNA sequence through complementary base pairing. In DNA replication, this matching strand is synthesized by DNA polymerase according to the sequence on the original template strand.
The base sequence CAGACT corresponds to the DNA strand, and it would be complementary to the RNA strand with the sequence GUCUGA. Therefore, the original strand is the DNA strand.
TACA
The sequence on the strand of the helix is TACCGGATC.
The bases of mRNA coded for by a DNA segment are complementary to the original DNA sequence. If the DNA sequences are ATCG, the corresponding mRNA bases will be UAGC.
The mRNA base sequence corresponding to the DNA sequence acgtt is ugcaa. The mRNA sequence is complementary to the DNA sequence, with thymine (T) in DNA being replaced by uracil (U) in mRNA.