5.4 Non-Mendelian Genetics
- Syllabus
- 2025
- Topic
- 5.4
- Level
- —
A non-Mendelian pattern occurs when observed inheritance does not fit the ratios expected from a simple model of complete dominance and independent assortment. The deviation can come from chromosome location, allele expression, gene effects, or inheritance outside the nucleus.
| Pattern | Biological basis | Evidence or consequence |
|---|---|---|
| Genetic linkage | Genes on the same chromosome tend to travel together; crossing over can produce recombinant combinations | Parental combinations exceed recombinant combinations; recombination frequency estimates map distance |
| Codominance | Both alleles are expressed in a heterozygote | The heterozygote displays both allele products and differs from either homozygote |
| Incomplete dominance | Neither allele fully masks the other | The heterozygote has an intermediate or blended phenotype |
| Sex-linked inheritance | The gene is on a sex chromosome | Transmission depends on the offspring's sex-chromosome genotype and can be inferred from pedigrees |
| Pleiotropy | One gene influences multiple traits or effects | Several phenotypic effects follow the same inherited gene |
| Non-nuclear inheritance | The trait is encoded by mitochondrial or chloroplast DNA | In animals, mitochondrial traits are typically maternal; in plants, mitochondrial and chloroplast traits are typically transmitted through the ovule |
$\text{map distance (map units)}=\dfrac{\text{recombinant offspring}}{\text{total offspring}}\times100$
Analyze a deviation in order: state the expected Mendelian ratio → compare it with observed counts → determine whether the difference is statistically meaningful → use the pattern of offspring or pedigree transmission to identify which model assumption may not hold. A significant difference shows that the simple prediction is inadequate; the detailed pattern is needed to identify the mechanism.
Non-Mendelian does not mean alleles ignore meiosis. It means that linkage, allele expression, chromosome type, multiple gene effects, or organelle transmission changes the ratios or patterns predicted by the simplest Mendelian model.