Comparison of microsatellites and amplified fragment length polymorphism markers for parentage analysis
- 1 August 2000
- journal article
- research article
- Published by Wiley in Molecular Ecology
- Vol. 9 (8) , 1037-1048
- https://doi.org/10.1046/j.1365-294x.2000.00961.x
Abstract
This study compares the properties of dominant markers, such as amplified fragment length polymorphisms (AFLPs), with those of codominant multiallelic markers, such as microsatellites, in reconstructing parentage. These two types of markers were used to search for both parents of an individual without prior knowledge of their relationships, by calculating likelihood ratios based on genotypic data, including mistyping. Experimental data on 89 oak trees genotyped for six microsatellite markers and 159 polymorphic AFLP loci were used as a starting point for simulations and tests. Both sets of markers produced high exclusion probabilities, and among dominant markers those with dominant allele frequencies in the range 0.1–0.4 were more informative. Such codominant and dominant markers can be used to construct powerful statistical tests to decide whether a genotyped individual (or two individuals) can be considered as the true parent (or parent pair). Gene flow from outside the study stand (GFO), inferred from parentage analysis with microsatellites, overestimated the true GFO, whereas with AFLPs it was underestimated. As expected, dominant markers are less efficient than codominant markers for achieving this, but can still be used with good confidence, especially when loci are deliberately selected according to their allele frequencies.Keywords
This publication has 41 references indexed in Scilit:
- Statistical confidence for likelihood‐based paternity inference in natural populationsMolecular Ecology, 1998
- Effectiveness of bovine microsatellites in resolving paternity cases in American bison, Bison bison L.Animal Genetics, 1998
- Dispersal patterns of Lonicera periclymenum determined by genetic analysisMolecular Ecology, 1998
- Error tolerant parent identification from a finite set of individualsGenetics Research, 1997
- Last male sperm precedence in a damselfly demonstrated by RAPD profilingMolecular Ecology, 1996
- DNA Fingerprinting Shows Within-Season Multiple Paternity in the Adder (Vipera berus)Ichthyology & Herpetology, 1995
- AFLP: a new technique for DNA fingerprintingNucleic Acids Research, 1995
- The analysis of paternity and maternity in the marine hydrozoan Hydractinia symbiolongicarpus using randomly amplified polymorphic DNA (RAPD) markersMolecular Ecology, 1993
- Paternity analysis of worker honeybees using random amplified polymorphic DNAThe Science of Nature, 1993
- Determination of paternity in dragonflies by Random Amplified Polymorphic DNA fingerprintingMolecular Ecology, 1993