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The difference in bonds is important to the function of DNA because it determines the stability and structure of the DNA molecule. DNA is made up of two strands, held together by hydrogen bonds between complimentary base pairs (adenine-thymine and cytosine-guanine). These bonds are relatively weak, allowing the DNA strands to separate during processes like DNA replication and transcription, which are essential for DNA's role in storing and transmitting genetic information.
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So essentially the difference is that in DNA-DNA base pairs thymine bonds with adenine while in DNA-RNA base pairs thymine bonds to uracil.
There are two types of bonds in DNA: phosphodiester bonds and hydrogen bonds. The phosphodiester bonds are the strong covalent bonds that create the phosphate-deoxyribose backbone. The hydrogen bonds links the "rungs" of the ladder, between nitrogen bases.
. What are RNA and DNA?
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The structure of DNA relates to its function greatly as the covalent bonds form the backbone of the DNA and provide the overall structure while the weak hydrogen bonds allow the DNA to unzip when needed to undergo replication.
The chemical bond that holds the double helix together in DNA are the hydrogen bonds. Hydrogen bonds are the weakest making them perfect for DNA replication.
So essentially the difference is that in DNA-DNA base pairs thymine bonds with adenine while in DNA-RNA base pairs thymine bonds to uracil.
There are two types of bonds in DNA: phosphodiester bonds and hydrogen bonds. The phosphodiester bonds are the strong covalent bonds that create the phosphate-deoxyribose backbone. The hydrogen bonds links the "rungs" of the ladder, between nitrogen bases.
. What are RNA and DNA?
The bonds are called hydrogen bonds. You can find these bonds in the nucleotides of DNA.
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DNA has an important function in the nucleus. DNA acts as the brain of the cell and controls the functions of the other organelles.
hydrogen bonds hold DNA together