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The enzyme responsible for reading the DNA template and adding complementary base pairs during DNA replication is called DNA polymerase.
The Ligase connects nucleotides together during DNA replication.
Nucleotides are added during DNA replication to create a new complementary strand of DNA, ensuring accurate genetic information is passed on to daughter cells during cell division.
DNA polymerase adds nucleotides during DNA replication by recognizing the complementary base pairs on the template strand and adding corresponding nucleotides to the growing new strand. This process ensures accurate replication of the genetic information.
During replication, enzymes called helicases unwind and separate the DNA strands by breaking the hydrogen bonds between the base pairs. This process creates a replication fork where new complementary strands are synthesized.
The enzyme responsible for reading the DNA template and adding complementary base pairs during DNA replication is called DNA polymerase.
DNA Polymerase
DNA polymerase is responsible for assembling complementary nucleotide bases during DNA replication. It adds nucleotides to the growing DNA strand using the existing strand as a template.
The Ligase connects nucleotides together during DNA replication.
Nucleotides are added during DNA replication to create a new complementary strand of DNA, ensuring accurate genetic information is passed on to daughter cells during cell division.
In DNA replication, the term complementary refers to the matching base pairing between nucleotides on the two strands of the DNA double helix. Adenine pairs with thymine and guanine pairs with cytosine, creating two identical daughter strands during replication.
Two strands of DNA are used to make complementary DNA during the process of DNA replication. This involves separating the two original DNA strands and using each as a template to build a new complementary strand.
DNA polymerase adds nucleotides during DNA replication by recognizing the complementary base pairs on the template strand and adding corresponding nucleotides to the growing new strand. This process ensures accurate replication of the genetic information.
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DNA copying and DNA replication are interchangeable terms that refer to the process of making an exact copy of a DNA molecule. During this process, the double-stranded DNA unwinds, and each strand serves as a template for the synthesis of a new complementary strand.
During replication, enzymes called helicases unwind and separate the DNA strands by breaking the hydrogen bonds between the base pairs. This process creates a replication fork where new complementary strands are synthesized.
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.