Cell and nuclear division — IB Diploma Biology SL
IB Biology D2.1: cytokinesis, mitosis and meiosis, non-disjunction and Down syndrome, and sources of variation.
IB Biology D2.1: cytokinesis, mitosis and meiosis, non-disjunction and Down syndrome, and sources of variation.
4 short notes, in the order of the specification. Each one in short:
Cytokinesis is the splitting of the cytoplasm of a parent cell between two daughter cells. In animal cells a contractile ring of actin and myosin pinches the membrane inwards; in plant cells vesicles build a new membrane and cell wall across the cell. It is usually equal, but unequal in oogenesis and yeast budding.
Mitosis is nuclear division that keeps the chromosome number and genome the same, while meiosis halves the chromosome number and generates genetic diversity. Both need DNA replication first, so each chromosome is two chromatids. In both, histones supercoil DNA to condense chromosomes, and microtubules with motor proteins move them.
Mitosis has four phases: prophase, metaphase, anaphase and telophase. Chromosomes condense, line up on the equator, have their sister chromatids pulled to opposite poles, and are enclosed in two new nuclei. Because each nucleus receives one copy of every chromatid, mitosis produces two genetically identical daughter nuclei.
Meiosis is a reduction division: two divisions turn one diploid nucleus into four haploid nuclei. Homologous chromosomes separate in meiosis I and sister chromatids in meiosis II. Errors such as non-disjunction cause conditions like Down syndrome. Crossing over and random orientation of bivalents make every haploid nucleus genetically different.
6 exam-style questions (17 marks), each with its mark scheme.
Answer the questions15 cards: flip them, mark what you knew, and practise the rest.
Practise the cardsThe whole of cells (continuity and change) on one page, so you can see where this subtopic fits.
Open the mind mapFree PDFs to print or save.
What is cytokinesis?
The splitting of the cytoplasm of a parent cell between the daughter cells.
Give two examples of unequal cytokinesis.
Oogenesis in humans and budding in yeast.
In which phase of mitosis do sister chromatids separate?
Anaphase.
What happens to chromosome 21 to cause Down syndrome?
Non-disjunction in meiosis gives a gamete with two copies, so the zygote has three copies (trisomy 21).
Mitosis produces two genetically identical nuclei with the same chromosome number as the parent, for growth and repair. Meiosis has two divisions and produces four haploid nuclei that are genetically different from each other, for sexual reproduction. Meiosis halves the chromosome number and generates diversity through crossing over and random orientation.
Prophase, metaphase, anaphase and telophase. Chromosomes condense in prophase, line up on the equator in metaphase, have their sister chromatids pulled to opposite poles in anaphase, and are enclosed in two new nuclear membranes in telophase. Cytokinesis then divides the cytoplasm to give two cells.
Meiosis causes variation in two ways. Crossing over in prophase I swaps sections between non-sister chromatids, making new combinations of alleles. Random orientation of bivalents in metaphase I means each pair lines up independently, giving 2ⁿ possible combinations of chromosomes, about 8.4 million in humans.
In animal cells a ring of contractile actin and myosin proteins pinches the cell membrane inwards until the cell splits. In plant cells the rigid wall prevents this, so vesicles gather at the equator and fuse to assemble new sections of cell membrane and cell wall, building the dividing wall from the centre outwards.
Written and checked against the IB Biology SL specification · Updated October 2026