Nucleic acids — IB Diploma Biology SL
IB Biology A1.2 Nucleic acids: nucleotides, DNA and RNA structure, base pairing and the genetic code.
IB Biology A1.2 Nucleic acids: nucleotides, DNA and RNA structure, base pairing and the genetic code.
4 short notes, in the order of the specification. Each one in short:
DNA is the genetic material of all living organisms; some viruses use RNA, but viruses are not considered living. DNA and RNA are made of nucleotides, each with a phosphate, a pentose sugar and a nitrogenous base. Sugar–phosphate bonding links nucleotides into a strong covalent backbone, and the sequence of bases along it forms the genetic code.
RNA is a polymer formed by condensation of nucleotide monomers: each new bond between the phosphate of one nucleotide and the sugar of the next releases a water molecule. DNA is a double helix of two antiparallel strands of nucleotides, linked by hydrogen bonds between complementary base pairs, with adenine paired to thymine and guanine paired to cytosine.
DNA and RNA differ in three ways examiners look for. DNA is usually double-stranded, while RNA is single-stranded. DNA contains thymine, while RNA contains uracil in its place. DNA contains the sugar deoxyribose, while RNA contains ribose, which has an extra oxygen as an OH group on carbon 2. Examples of RNA include mRNA, tRNA and rRNA.
Complementary base pairing, based on hydrogen bonding, lets genetic information be replicated and expressed: each DNA strand acts as a template for a new strand, mRNA is copied from DNA, and tRNA anticodons pair with mRNA codons. Any length and base sequence is possible, giving DNA limitless storage capacity, and the conserved genetic code is evidence of universal common ancestry.
5 exam-style questions (18 marks), each with its mark scheme.
Answer the questions14 cards: flip them, mark what you knew, and practise the rest.
Practise the cardsThe whole of molecules (unity and diversity) on one page, so you can see where this subtopic fits.
Open the mind mapFree PDFs to print or save.
What are the three components of a nucleotide?
A phosphate group, a pentose sugar and a nitrogenous base.
State three differences between DNA and RNA.
DNA has two strands, RNA one; DNA has thymine, RNA uracil; DNA has deoxyribose, RNA ribose.
What does antiparallel mean in DNA?
The two strands run in opposite directions.
A DNA nucleotide has a phosphate group, the pentose sugar deoxyribose and a nitrogenous base, which is adenine, thymine, guanine or cytosine. The phosphate and base are attached to the sugar on opposite sides. Nucleotides link through sugar–phosphate bonding to form a strong covalent backbone with the bases sticking out.
DNA is described as antiparallel because its two strands run in opposite directions. The strands are held together by hydrogen bonds between complementary bases, adenine with thymine and guanine with cytosine. In diagrams, one strand is drawn upside down relative to the other to show this.
DNA is double-stranded, while RNA is single-stranded. DNA contains the base thymine, while RNA has uracil instead. DNA contains the sugar deoxyribose, while RNA contains ribose, which has an OH group on carbon 2 where deoxyribose has only hydrogen. Examples of RNA are mRNA, tRNA and rRNA.
The genetic code is evidence for common ancestry because almost all organisms use the same codons for the same amino acids, with only minor variations. Such an arbitrary code is very unlikely to have arisen many times independently, so the best explanation is that all life inherited it from a universal common ancestor.
Written and checked against the IB Biology SL specification · Updated October 2026