Noninvasive Prenatal Diagnosis of Monogenic Diseases by Targeted Massively Parallel Sequencing of Maternal Plasma: Application to β-Thalassemia

单倍型 大规模并行测序 DNA测序 产前诊断 生物 地中海贫血 遗传学 数字聚合酶链反应 基因 胎儿 计算生物学 聚合酶链反应 基因型 怀孕
作者
Kwan-Wood Gabriel Lam,Peiyong Jiang,Gary J. W. Liao,K.C. Allen Chan,Tak Yeung Leung,Rossa W. K. Chiu,Yuk Ming Dennis Lo
出处
期刊:Clinical Chemistry [American Association for Clinical Chemistry]
卷期号:58 (10): 1467-1475 被引量:206
标识
DOI:10.1373/clinchem.2012.189589
摘要

BACKGROUND: A genomewide genetic and mutational profile of a fetus was recently determined via deep sequencing of maternal plasma DNA. This technology could have important applications for noninvasive prenatal diagnosis (NIPD) of many monogenic diseases. Relative haplotype dosage (RHDO) analysis, a core step of this procedure, would allow one to elucidate the maternally inherited half of the fetal genome. For clinical applications, the cost and complexity of data analysis might be reduced via targeted application of this approach to selected genomic regions containing disease-causing genes. There is thus a need to explore the feasibility of performing RHDO analysis in a targeted manner. METHODS: We performed target enrichment by using solution-phase hybridization followed by massively parallel sequencing of the β-globin gene region in 2 families undergoing prenatal diagnosis for β-thalassemia. We used digital PCR strategies to physically deduce parental haplotypes. Finally, we performed RHDO analysis with target-enriched sequencing data and parental haplotypes to reveal the β-thalassemic status for the fetuses. RESULTS: A mean sequencing depth of 206-fold was achieved in the β-globin gene region by targeted sequencing of maternal plasma DNA. RHDO analysis was successful for the sequencing data obtained from the target-enriched samples, including a region in one of the families in which the parents had similar haplotype structures. Data analysis revealed that both fetuses were heterozygous carriers of β-thalassemia. CONCLUSIONS: Targeted sequencing of maternal plasma DNA for NIPD of monogenic diseases is feasible.
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