RNA uses uracil instead of thyminelike DNA does.
One of the major differences between DNA and RNA is the sugar, with 2-deoxyribose replaced by ribose in RNA. From ChaCha!
RNA differs from DNA primarily in its structure and function. RNA is usually single-stranded, contains ribose sugar, and has uracil instead of thymine. However, both RNA and DNA are nucleic acids composed of nucleotide monomers and play crucial roles in genetic information storage and transfer.
RNA and DNA differ in these ways: (1) DNA has deoxyribose sugar, and RNA has ribose sugar. (2) DNA is made up of these four bases: adenine & guanine, cytosine & thymine; RNA is made up of adenine & guanine, cytosine & URACIL, the difference being that in RNA, uracil replaces thymine. (3) DNA is a double stranded molecule, and RNA is a single stranded molecule. (And for an optional 4)RNA can travel in and out of the nucleas of the cell. The DNA is stuck in the nucleas.
Following the initiation of DNA replication, the first step is the synthesis of a short RNA primer.
RNA uses uracil instead of thyminelike DNA does.
One of the major differences between DNA and RNA is the sugar, with 2-deoxyribose replaced by ribose in RNA. From ChaCha!
RNA and DNA both contain genetic information, but their structures differ in a few key ways. One major difference is that RNA contains ribose sugar, while DNA contains deoxyribose sugar. Additionally, RNA is typically single-stranded, while DNA is double-stranded. These structural differences contribute to the unique functions of RNA, such as protein synthesis and gene regulation, compared to DNA's role in storing genetic information.
DNA and RNA are both nucleic acids, but they have key differences. One major distinction is that DNA is double-stranded, while RNA is single-stranded. Another difference is that DNA contains the sugar deoxyribose, while RNA contains ribose. Additionally, DNA uses the base thymine, while RNA uses uracil instead.
Both DNA and RNA each contain the bases adenine, cytosine, and guanine. They differ in that DNA contains thymine whereas RNA contains uracil.
For each the following, identify if it relates to DNA, RNA, both DNA and RNA, or neither DNA nor RNA.1. Is a polymer of nucleotides2. Contains adenine3. Is a special type of protein4. Contains thymine5. Contains uracil6. Has sugar-phosphate backbone7. Contains pentose sugar8. Contains Ribose9. Helix10. Double-strand molecule
RNA differs from DNA primarily in its structure and function. RNA is usually single-stranded, contains ribose sugar, and has uracil instead of thymine. However, both RNA and DNA are nucleic acids composed of nucleotide monomers and play crucial roles in genetic information storage and transfer.
1. The sugar in DNA is deoxyribose and the sugar in RNA is ribose. 2. DNA is a double strand and RNA is single strand. 3. DNA is in the nucleus and RNA travels around from nucleus to cytoplasm. or 1. RNA is generally single stranded 2. RNA contains Uracil in place of Thymine 3. The sugar in RNA is Ribose instead of Deoxribose
Yes, to transcribe DNA to RNA, replace thymine (T) in DNA with uracil (U) in RNA. Simply write down the complementary RNA bases to the DNA bases following this rule to transcribe the original DNA sequence to RNA.
Generally the DNA molecule is double stranded to RNA's single strand. The RNA molecule uses uracil as a base while the DNA molecule uses thymine. RNA has catabolic properties that allow it to act in things such a ribosomes and tRNA. DNA is just a carrier of the genetic information.
RNA and DNA differ in these ways: (1) DNA has deoxyribose sugar, and RNA has ribose sugar. (2) DNA is made up of these four bases: adenine & guanine, cytosine & thymine; RNA is made up of adenine & guanine, cytosine & URACIL, the difference being that in RNA, uracil replaces thymine. (3) DNA is a double stranded molecule, and RNA is a single stranded molecule. (And for an optional 4)RNA can travel in and out of the nucleas of the cell. The DNA is stuck in the nucleas.
Generally the DNA molecule is double stranded to RNA's single strand. The RNA molecule uses uracil as a base while the DNA molecule uses thymine. RNA has catabolic properties that allow it to act in things such a ribosomes and tRNA. DNA is just a carrier of the genetic information.