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Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report

Objective: Mosaicism is a common biological phenomenon in organisms and has been reported in many types of chromosome abnormalities, including the absence of heterozygosity (AOH). Due to the detection limitations of the sequencing approach, mosaic AOH events are rarely assessed in clinical cases. He...

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Autores principales: Lü, Yan, Jiang, Yulin, Zhou, Xiya, Hao, Na, Xu, Chenlu, Guo, Ruidong, Chang, Jiazhen, Li, Mengmeng, Zhang, Hanzhe, Zhou, Jing, Zhang, Wei (Victor), Qi, Qingwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10529865/
https://www.ncbi.nlm.nih.gov/pubmed/37761262
http://dx.doi.org/10.3390/diagnostics13182895
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author Lü, Yan
Jiang, Yulin
Zhou, Xiya
Hao, Na
Xu, Chenlu
Guo, Ruidong
Chang, Jiazhen
Li, Mengmeng
Zhang, Hanzhe
Zhou, Jing
Zhang, Wei (Victor)
Qi, Qingwei
author_facet Lü, Yan
Jiang, Yulin
Zhou, Xiya
Hao, Na
Xu, Chenlu
Guo, Ruidong
Chang, Jiazhen
Li, Mengmeng
Zhang, Hanzhe
Zhou, Jing
Zhang, Wei (Victor)
Qi, Qingwei
author_sort Lü, Yan
collection PubMed
description Objective: Mosaicism is a common biological phenomenon in organisms and has been reported in many types of chromosome abnormalities, including the absence of heterozygosity (AOH). Due to the detection limitations of the sequencing approach, mosaic AOH events are rarely assessed in clinical cases. Herein, we report the performance of mosaic AOH identification using a low-pass (5~8-fold) WGS method (termed ‘CMA-seq’, an abbreviation for ‘Chromosome Analysis by Sequencing’) in fetal genetic diagnosis. Methods: Thirty AOH-negative, eleven constitutional AOH, and three mosaic AOH samples were collected as training data sets to develop the algorithm and evaluate the suitable thresholds for distinguishing mosaic AOH. Twenty-four new chromosomal aberrant cases, along with sixteen constitutional AOH samples, which were previously ascertained via the SNP-array-based method, were used as a validation data set to measure the performance in terms of sensitivity and specificity of this algorithm. Results: A new statistic, ‘D-value’, was implemented to identify and distinguish constitutional and mosaic AOH events. The reporting thresholds for constitutional and mosaic AOH were also established. In the validation set consisting of 24 new cases, seven constitutional AOH cases and 1 mosaic AOH case were successfully identified, indicating that the results were consistent with those of the SNP-array-based method. The results of all sixteen constitutional AOH validation samples also met the threshold requirements. Conclusions: In this study, we developed a new bioinformatic algorithm to accurately distinguish mosaic AOH from constitutional AOH by low-pass WGS. However, due to the small sample size of the training data set, the algorithm proposed in this manuscript still needs further refinements.
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spelling pubmed-105298652023-09-28 Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report Lü, Yan Jiang, Yulin Zhou, Xiya Hao, Na Xu, Chenlu Guo, Ruidong Chang, Jiazhen Li, Mengmeng Zhang, Hanzhe Zhou, Jing Zhang, Wei (Victor) Qi, Qingwei Diagnostics (Basel) Article Objective: Mosaicism is a common biological phenomenon in organisms and has been reported in many types of chromosome abnormalities, including the absence of heterozygosity (AOH). Due to the detection limitations of the sequencing approach, mosaic AOH events are rarely assessed in clinical cases. Herein, we report the performance of mosaic AOH identification using a low-pass (5~8-fold) WGS method (termed ‘CMA-seq’, an abbreviation for ‘Chromosome Analysis by Sequencing’) in fetal genetic diagnosis. Methods: Thirty AOH-negative, eleven constitutional AOH, and three mosaic AOH samples were collected as training data sets to develop the algorithm and evaluate the suitable thresholds for distinguishing mosaic AOH. Twenty-four new chromosomal aberrant cases, along with sixteen constitutional AOH samples, which were previously ascertained via the SNP-array-based method, were used as a validation data set to measure the performance in terms of sensitivity and specificity of this algorithm. Results: A new statistic, ‘D-value’, was implemented to identify and distinguish constitutional and mosaic AOH events. The reporting thresholds for constitutional and mosaic AOH were also established. In the validation set consisting of 24 new cases, seven constitutional AOH cases and 1 mosaic AOH case were successfully identified, indicating that the results were consistent with those of the SNP-array-based method. The results of all sixteen constitutional AOH validation samples also met the threshold requirements. Conclusions: In this study, we developed a new bioinformatic algorithm to accurately distinguish mosaic AOH from constitutional AOH by low-pass WGS. However, due to the small sample size of the training data set, the algorithm proposed in this manuscript still needs further refinements. MDPI 2023-09-09 /pmc/articles/PMC10529865/ /pubmed/37761262 http://dx.doi.org/10.3390/diagnostics13182895 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lü, Yan
Jiang, Yulin
Zhou, Xiya
Hao, Na
Xu, Chenlu
Guo, Ruidong
Chang, Jiazhen
Li, Mengmeng
Zhang, Hanzhe
Zhou, Jing
Zhang, Wei (Victor)
Qi, Qingwei
Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title_full Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title_fullStr Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title_full_unstemmed Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title_short Detection of Mosaic Absence of Heterozygosity (AOH) Using Low-Pass Whole Genome Sequencing in Prenatal Diagnosis: A Preliminary Report
title_sort detection of mosaic absence of heterozygosity (aoh) using low-pass whole genome sequencing in prenatal diagnosis: a preliminary report
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10529865/
https://www.ncbi.nlm.nih.gov/pubmed/37761262
http://dx.doi.org/10.3390/diagnostics13182895
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