遗传学
生物
基因组
原发性睫状体运动障碍
后代
全基因组测序
序列(生物学)
基因
突变
遗传(遗传算法)
DNA测序
医学
怀孕
内科学
肺
支气管扩张
作者
Jared C. Roach,Gustavo Glusman,Arian F. A. Smit,Chad D. Huff,Robert Hubley,Paul Shannon,Lee Rowen,Krishna Prasad Pant,Nathan Goodman,Michael J. Bamshad,Jay Shendure,Radoje Drmanac,Lynn B. Jorde,Leroy Hood,David J. Galas
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2010-03-10
卷期号:328 (5978): 636-639
被引量:1116
标识
DOI:10.1126/science.1186802
摘要
We analyzed the whole-genome sequences of a family of four, consisting of two siblings and their parents. Family-based sequencing allowed us to delineate recombination sites precisely, identify 70% of the sequencing errors (resulting in > 99.999% accuracy), and identify very rare single-nucleotide polymorphisms. We also directly estimated a human intergeneration mutation rate of approximately 1.1 x 10(-8) per position per haploid genome. Both offspring in this family have two recessive disorders: Miller syndrome, for which the gene was concurrently identified, and primary ciliary dyskinesia, for which causative genes have been previously identified. Family-based genome analysis enabled us to narrow the candidate genes for both of these Mendelian disorders to only four. Our results demonstrate the value of complete genome sequencing in families.
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