期刊文献+

Constructing an initial map of transmission distortion based on high density HapMap SNPs across the human autosomes

Constructing an initial map of transmission distortion based on high density HapMap SNPs across the human autosomes
原文传递
导出
摘要 Transmission distortion (TD) is a significant departure from Mendelian predictions of genes or chromosomes to offspring. While many biological processes have been implicated, there is still much to be understood about TD in humans. Here we present our findings from a genome-wide scan for evidence of TD using haplotype data of 60 trio families from the International HapMap Project. Fisher's exact test was applied to assess the extent of TD in 629,958 SNPs across the autosomes. Based on the empirical distribution of PFisher and further permutation tests, we identified 1,205 outlier loci and 224 candidate genes with TD. Using the PANTHER gene ontology database, we found 19 categories of biological processes with an enrichment of candidate genes. In particular, the “protein phosphorylation” category contained the largest number of candidates in both HapMap samples. Further analysis uncovered an intriguing non-synonymous change in PPPIR12B, a gene related to protein phosphorylation, which appears to influence the allele transmission from male parents in the YRI (Yoruba from Ibadan, Nigeria) population. Our findings also indicate an ethnicity-related property of TD signatures in HapMap samples and provide new clues for our understanding of TD in humans. Transmission distortion (TD) is a significant departure from Mendelian predictions of genes or chromosomes to offspring. While many biological processes have been implicated, there is still much to be understood about TD in humans. Here we present our findings from a genome-wide scan for evidence of TD using haplotype data of 60 trio families from the International HapMap Project. Fisher's exact test was applied to assess the extent of TD in 629,958 SNPs across the autosomes. Based on the empirical distribution of PFisher and further permutation tests, we identified 1,205 outlier loci and 224 candidate genes with TD. Using the PANTHER gene ontology database, we found 19 categories of biological processes with an enrichment of candidate genes. In particular, the “protein phosphorylation” category contained the largest number of candidates in both HapMap samples. Further analysis uncovered an intriguing non-synonymous change in PPPIR12B, a gene related to protein phosphorylation, which appears to influence the allele transmission from male parents in the YRI (Yoruba from Ibadan, Nigeria) population. Our findings also indicate an ethnicity-related property of TD signatures in HapMap samples and provide new clues for our understanding of TD in humans.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2009年第12期703-709,共7页 遗传学报(英文版)
基金 supported by the National Nature Science Foundation of China (No.30225017)
关键词 transmission distortion HapMap Project gene ontology transmission distortion HapMap Project gene ontology
  • 相关文献

参考文献2

二级参考文献10

  • 1Storz J F,Payseur B A,Nachman M W.Genome scans of DNA variability in humans reveal evidence for selective sweeps outside of Africa[].Molecular Biology and Evolution.2004
  • 2Wang E T,Kodama G,Baldi P, et al.Global landscape of recent in- ferred Darwinian selection for Homo sapiens[].Proceedings of the National Academy of Sciences of the United States of America.2006
  • 3Voight B F,Kudaravalli S,Wen X, et al.A map of recent positive selection in the human genome[].Plos Biology.2006
  • 4Akey J M,Eberle M A,Rieder M J, et al.Population history and natural selection shape patterns of genetic variation in 132 genes[].Plos Biology.2004
  • 5Akey J M,Zhang G,Zhang K, et al.Interrogating a high-density SNP map for signatures of natural selection[].Genome Research.2002
  • 6Ronald J,Akey J M.Genome-wide scans for loci under selection in humans[].Hum Genomics.2005
  • 7Steemers F J,Gunderson K L.Whole genome genotyping technolo- gies on the BeadArray platform[].Biotechnol J.2007
  • 8Cavalli-Sforza L L.Population structure and human evolution[].Proceedings of the Royal Society of London.1966
  • 9Lewontin R C,Krakauer J.Distribution of gene frequency as a test of the theory of the selective neutrality of polymorphisms[].Genetics.1973
  • 10Kelley J L,Madeoy J,Calhoun J C, et al.Genomic signatures of positive selection in humans and the limits of outlier approaches[].Genome Research.2006

共引文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部