CCTGACAAT
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.
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.
TGCA
The DNA segment ttacgc would pair with the complementary RNA sequence aaugcg during replication. In RNA, adenine (A) pairs with uracil (U) instead of thymine (T).
The correct mRNA sequence that would be produced from the DNA sequence "tactaggctaat" is "auguccgcuuau". This is because in mRNA, thymine (T) is replaced by uracil (U) and the complementary mRNA sequence is produced from the DNA template during transcription.
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.
The complimentary strand of MRNA would be AAUUCCGG.
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.
TGCA
To determine the base sequence of the original DNA segment, you would need to know the complementary base pairing rules: adenine (A) pairs with thymine (T), and cytosine (C) pairs with guanine (G). If you have a sequence of the complementary DNA strand, you can reverse the pairs to identify the original sequence. Without the specific complementary sequence provided, the original DNA segment cannot be determined.
_ _. Pk= oq
Oh, dude, it's like DNA and mRNA are like besties, you know? So, if DNA has CTG ATC, mRNA would have GAC UAG. It's like they're mirror images, but not really, because they're still unique in their own ways. So, yeah, that's how the complementary segment of mRNA would look like for that DNA sequence.
The DNA segment ttacgc would pair with the complementary RNA sequence aaugcg during replication. In RNA, adenine (A) pairs with uracil (U) instead of thymine (T).
The complementary RNA strand is synthesized based on the DNA template, where adenine (A) pairs with uracil (U) in RNA, cytosine (C) pairs with guanine (G), and vice versa. For the DNA segment AGCCTAA, the complementary RNA sequence would be UCGGAUU.
Bases A and T link together and C and G link together. If your DNA sequence was, for example, ATCGAGT your RNA sequence would be TAGCTCA.