CrossRef Text and Data Mining
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Genetic architecture and candidate genes detected for chicken internal organ weight with a 600 K single nucleotide polymorphism array
Taocun Dou, Manman Shen, Meng Ma, Liang Qu, Yongfeng Li, Yuping Hu, Jian Lu, Jun Guo, Xingguo Wang, Kehua Wang
Asian-Australas J Anim Sci. 2019;32(3):341-349.   Published online July 26, 2018

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Genetic architecture and candidate genes detected for chicken internal organ weight with a 600 K single nucleotide polymorphism array
Asian-Australasian Journal of Animal Sciences. 2019;32(3):341-349   Crossref logo
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Selection of Single Nucleotide Polymorphisms for Association Studies in Candidate Genes
Genetic Epidemiology. 2001;21(S1):S614-S619   Crossref logo
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A genetic variation map for chicken with 2.8 million single-nucleotide polymorphisms
Nature. 2004;432(7018):717-722   Crossref logo
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Study of single-nucleotide polymorphism within candidate genes associated with type 2 diabetes in Western Indian population
Journal of Pharmacy Research. 2013;6(2):233-238   Crossref logo
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Chicken single nucleotide polymorphism identification and selection for genetic mapping
Poultry Science. 2004;83(12):1925-1931   Crossref logo
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An extragonadal yolk sac tumor presumed to be of postmeiotic germ cell origin by genetic zygosity analysis via single nucleotide polymorphism array
Genes, Chromosomes and Cancer. 2019;59(3):209-213   Crossref logo
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Quality control method for RNA-seq using single nucleotide polymorphism allele frequency
Genes to Cells. 2014;19(11):821-829   Crossref logo

Prognostic significance of genetic alterations detected by high-density single nucleotide polymorphism array in gastric cancer
Cancer Science. 2010;101(5):1261-1269   Crossref logo

Analysis of Single Nucleotide Polymorphisms in Candidate Genes Using the Pedigree Disequilibrium Test
Genetic Epidemiology. 2001;21(S1):S441-S446   Crossref logo
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The genetic landscape of paediatricde novoacute myeloid leukaemia as defined by single nucleotide polymorphism array and exon sequencing of 100 candidate genes
British Journal of Haematology. 2016;174(2):292-301   Crossref logo