杂合子丢失
单核苷酸多态性
贝叶斯定理
常染色体
产前诊断
胎儿游离DNA
生物
SNP公司
计算生物学
胎儿
贝叶斯概率
生物信息学
遗传学
计算机科学
怀孕
等位基因
基因型
染色体
人工智能
基因
作者
Minghao Dang,Hanli Xu,Jingbo Zhang,Weiwei Wang,Ling Bai,Nan Fang,Lin Liang,Junrong Zhang,Feiran Liu,Qixi Wu,Shaowei Wang,Yongtao Guan
标识
DOI:10.1038/s41436-019-0636-5
摘要
Fetal fraction (FF) is the percent of cell-free DNA (cfDNA) in the
mother’s peripheral blood that is of fetal origin, which plays a pivotal role in
noninvasive prenatal screening (NIPS). We present a method that can reliably
estimate FFs by examining autosome single-nucleotide polymorphisms
(SNPs). Even at a very low sequencing depth, there are plenty of SNPs
covered by more than one read. At those SNPs, we define read heterozygosity and
demonstrate that the percent of read heterozygosity is a function of FF, which
allows FF to be inferred. We first demonstrated the effectiveness of our method in inferring
FF. Then we used the inferred FF as an informative alternative prior to
computing Bayes factors to test for aneuploidy, and observed better power than
the Z-test. In analysis of clinical samples,
we were able to identify female–male twins thanks to the accurate FF
inference. Knowing FF improves efficacy of NIPS. It brings a powerful Bayesian
method, allows “no call” for samples with small FFs, renders screening for XXY
syndrome simpler, and permits an adaptive design to sequence at a higher depth
for samples with small FFs.
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