The answer to this is GAUCCAUG. The way to find this is simple. In RNA, Thymine (T) is changed to Uracil (U). So, when you switch DNA to RNA, you switch the letters around. (C=G A=T T=A and G=C.) [You switch the order]. However, when you do this, be sure when you insert a T in RNA, you make it a U instead.
Transcription is the process of making a strand of RNA from a strand of DNA.
DNA polymerase is the enzyme responsible for producing a new DNA strand during DNA replication. It catalyzes the addition of nucleotides to the growing DNA chain, using the existing DNA strand as a template.
Semi conservative replication prevents mutations during DNA replication because it produces 2 copies that each contained 1 of the original strands and 1 entirely new strand.
During DNA replication, the DNA double helix unwinds and separates into two strands. Each strand serves as a template for the synthesis of a new complementary strand, resulting in two identical DNA molecules. These new DNA molecules can then be used to create new cells or for genetic information transfer during cell division.
The strand of DNA that forms during replication complementary to the sequence 5' GGTTTCTTCAAGAGA 3' is 3' CCAAGAACTTCTCTC 5'. During DNA replication, the new strand is synthesized in the 5' to 3' direction, pairing adenine with thymine and cytosine with guanine. Therefore, the complementary strand would be built from the corresponding bases of the original strand.
The template for semiconservative replication is the original DNA strand that serves as a guide for creating a new complementary strand. During DNA replication, each original parental strand acts as a template for the synthesis of a new daughter strand.
DNA polymerase is the enzyme responsible for producing a new DNA strand during DNA replication. It catalyzes the addition of nucleotides to the growing DNA chain, using the existing DNA strand as a template.
The leading strand is the DNA strand that is synthesized continuously during DNA replication. This is because the polymerase enzyme can add nucleotides in the 5' to 3' direction without interruption as the replication fork opens.
During DNA replication, the DNA molecule separates into two strands, then produces two new complementary strands following the rules of base pairing. Each strand of the double helix of DNA serves as a template, or model, for the new strand.
Semi conservative replication prevents mutations during DNA replication because it produces 2 copies that each contained 1 of the original strands and 1 entirely new strand.
During DNA replication, the DNA double helix unwinds and separates into two strands. Each strand serves as a template for the synthesis of a new complementary strand, resulting in two identical DNA molecules. These new DNA molecules can then be used to create new cells or for genetic information transfer during cell division.
The strand of DNA that forms during replication complementary to the sequence 5' GGTTTCTTCAAGAGA 3' is 3' CCAAGAACTTCTCTC 5'. During DNA replication, the new strand is synthesized in the 5' to 3' direction, pairing adenine with thymine and cytosine with guanine. Therefore, the complementary strand would be built from the corresponding bases of the original strand.
The template for semiconservative replication is the original DNA strand that serves as a guide for creating a new complementary strand. During DNA replication, each original parental strand acts as a template for the synthesis of a new daughter strand.
The old strand of DNA replication, often referred to as the "template strand," serves as the guide for synthesizing a new complementary strand during DNA replication. In this semi-conservative process, each new DNA double helix consists of one original (old) strand and one newly synthesized strand. This ensures that genetic information is accurately preserved and passed on during cell division. The replication occurs at specific sites called origins of replication, where various enzymes, including DNA polymerase, facilitate the process.
The process that produces a new copy of an organism's genetic information is called DNA replication. During this process, the DNA molecule unwinds and separates into two strands, where each strand serves as a template for the synthesis of a new complementary strand. This results in two identical copies of the original DNA molecule.
Leading!
A DNA molecule splits in the 5' to 3' direction during replication. Each strand acts as a template for the synthesis of a new complementary strand.
During DNA replication, two strands of the double-stranded DNA molecule are unwound and each strand serves as a template for the synthesis of a new complementary strand, resulting in the formation of two new DNA molecules, each composed of one original strand and one newly synthesized strand.