Noninvasive prenatal paternity determination using microhaplotypes: a pilot study

Author:

Wang Jaqueline Yu Ting,Whittle Martin R.,Puga Renato David,Yambartsev Anatoly,Fujita André,Nakaya Helder I.ORCID

Abstract

Abstract Background The use of noninvasive techniques to determine paternity prenatally is increasing because it reduces the risks associated with invasive procedures. Current methods, based on SNPs, use the analysis of at least 148 markers, on average. Methods To reduce the number of regions, we used microhaplotypes, which are chromosomal segments smaller than 200 bp containing two or more SNPs. Our method employs massively parallel sequencing and analysis of microhaplotypes as genetic markers. We tested 20 microhaplotypes and ascertained that 19 obey Hardy–Weinberg equilibrium and are independent, and data from the 1000 Genomes Project were used for population frequency and simulations. Results We performed simulations of true and false paternity, using the 1000 Genomes Project data, to confirm if the microhaplotypes could be used as genetic markers. We observed that at least 13 microhaplotypes should be used to decrease the chances of false positives. Then, we applied the method in 31 trios, and it was able to correctly assign the fatherhood in cases where the alleged father was the real father, excluding the inconclusive results. We also cross evaluated the mother-plasma duos with the alleged fathers for false inclusions within our data, and we observed that the use of at least 15 microhaplotypes in real data also decreases the false inclusions. Conclusions In this work, we demonstrated that microhaplotypes can be used to determine prenatal paternity by using only 15 regions and with admixtures of DNA.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Springer Science and Business Media LLC

Subject

Genetics(clinical),Genetics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Application of NGS technology for parentage testing and relatedness analysis;Next Generation Sequencing (NGS) Technology in DNA Analysis;2024

2. Microhaplotype and Y-SNP/STR (MY): A novel MPS-based system for genotype pattern recognition in two-person DNA mixtures;Forensic Science International: Genetics;2022-07

3. Obstetric Markers as a Diagnostic Forensic Tool;Forensic Analysis - Scientific and Medical Techniques and Evidence under the Microscope;2021-09-22

4. Sensitive detection of DNA contamination in tumor samples via microhaplotypes;2020-12-20

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