Significant genetic correlations among Caucasians at forensic DNA loci
Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyse two published data sets and find th...
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| Published in | Heredity Vol. 78; no. 6; pp. 583 - 589 |
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| Main Authors | , |
| Format | Journal Article |
| Language | English |
| Published |
Cham
Springer International Publishing
01.06.1997
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0018-067X 1365-2540 1365-2540 |
| DOI | 10.1038/hdy.1997.97 |
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| Abstract | Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyse two published data sets and find that they convey much the same message for forensic inference, in contrast with the dramatically differing conclusions of the original authors. The analysis is likelihood-based and combines information across loci and across populations without assuming constant genetic differentiation. Our results suggest that the relevant genetic correlation coefficients are too large to be ignored in forensic work: although DNA profile evidence is typically very strong, the effect of genetic correlations can be important in some cases. Such correlations can, however, be accommodated in an appropriate assessment of evidential strength so that population genetic issues should not present a barrier to the efficient and fair use of DNA profile evidence. |
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| AbstractList | Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyse two published data sets and find that they convey much the same message for forensic inference, in contrast with the dramatically differing conclusions of the original authors. The analysis is likelihood-based and combines information across loci and across populations without assuming constant genetic differentiation. Our results suggest that the relevant genetic correlation coefficients are too large to be ignored in forensic work: although DNA profile evidence is typically very strong, the effect of genetic correlations can be important in some cases. Such correlations can, however, be accommodated in an appropriate assessment of evidential strength so that population genetic issues should not present a barrier to the efficient and fair use of DNA profile evidence. Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyse two published data sets and find that they convey much the same message for forensic inference, in contrast with the dramatically differing conclusions of the original authors. The analysis is likelihood-based and combines information across loci and across populations without assuming constant genetic differentiation. Our results suggest that the relevant genetic correlation coefficients are too large to be ignored in forensic work: although DNA profile evidence is typically very strong, the effect of genetic correlations can be important in some cases. Such correlations can, however, be accommodated in an appropriate assessment of evidential strength so that population genetic issues should not present a barrier to the efficient and fair use of DNA profile evidence.Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyse two published data sets and find that they convey much the same message for forensic inference, in contrast with the dramatically differing conclusions of the original authors. The analysis is likelihood-based and combines information across loci and across populations without assuming constant genetic differentiation. Our results suggest that the relevant genetic correlation coefficients are too large to be ignored in forensic work: although DNA profile evidence is typically very strong, the effect of genetic correlations can be important in some cases. Such correlations can, however, be accommodated in an appropriate assessment of evidential strength so that population genetic issues should not present a barrier to the efficient and fair use of DNA profile evidence. Although the effect of population differentiation on the forensic use of DNA profiles has been the subject of controversy for some years now, the debate has largely failed to focus on the genetical questions directly relevant to the forensic context. We re-analyze two published data sets and find that they convey much the same message for forensic inference, in contrast with the dramatically differing conclusions of the original authors. The analysis is likelihood-based and combines information across loci and across populations without assuming constant genetic differentiation. Our results suggest that the relevant genetic correlation coefficients are too large to be ignored in forensic work: although DNA profile evidence is typically very strong, the effect of genetic correlations can be important in some cases. Such correlations can, however, be accommodated in an appropriate assessment of evidential strength so that population genetic issues should not present a barrier to the efficient and fair use of DNA profile evidence. |
| Author | Nichols, Richard A Balding, David J |
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| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/9203353$$D View this record in MEDLINE/PubMed |
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| Cites_doi | 10.1007/BF02432124 10.1038/hdy.1991.37 10.1073/pnas.89.22.10583 10.1073/pnas.92.25.11741 10.1007/BF01441146 10.1111/j.1558-5646.1989.tb02587.x 10.1146/annurev.ge.28.120194.003121 10.1017/S0016672300033607 10.1007/BF01441147 10.1073/pnas.89.7.2556 10.2307/2983402 10.1007/BF01441161 10.1016/0379-0738(94)90222-4 10.1111/j.2517-6161.1993.tb01466.x 10.1016/0009-8981(94)90053-1 10.1016/0379-0738(91)90096-2 10.1016/S0015-7368(92)73041-2 10.1093/genetics/104.3.497 |
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| SubjectTerms | Biomedical and Life Sciences Biomedicine Cytogenetics Databases, Factual DNA Fingerprinting Ecology European Continental Ancestry Group - genetics Evolutionary Biology Finland Forensic Medicine - methods Genetic Variation Genetics, Population Heterozygote Human Genetics Humans Italy Likelihood Functions Models, Genetic Models, Statistical original-article Plant Genetics and Genomics Selection Bias Spain Turkey |
| Title | Significant genetic correlations among Caucasians at forensic DNA loci |
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