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Genetic variation of goat interferon regulatory factor 3 gene and its implication in goat evolution

  • Moses Okpeku
  • , Ali Esmailizadeh
  • , Adeniyi C. Adeola
  • , Liping Shu
  • , Yesheng Zhang
  • , Yangzi Wang
  • , Timothy M. Sanni
  • , Ikhide G. Imumorin
  • , Sunday O. Peters
  • , Jiajin Zhang
  • , Yang Dong
  • , Wen Wang
  • CAS - Kunming Institute of Zoology
  • Niger Delta University
  • Shahid Bahonar University of Kerman
  • Federal University of Agriculture, Abeokuta
  • Cornell University College of Agriculture and Life Sciences
  • Berry College
  • Yunnan Agriculture University
  • Kunming University of Science and Technology

科研成果: 期刊稿件文章同行评审

6 引用 (Scopus)

摘要

The immune systems are fundamentally vital for evolution and survival of species; as such, selection patterns in innate immune loci are of special interest in molecular evolutionary research. The interferon regulatory factor (IRF) gene family control many different aspects of the innate and adaptive immune responses in vertebrates. Among these, IRF3 is known to take active part in very many biological processes. We assembled and evaluated 1356 base pairs of the IRF3 gene coding region in domesticated goats from Africa (Nigeria, Ethiopia and South Africa) and Asia (Iran and China) and the wild goat (Capra aegagrus). Five segregating sites with θ value of 0.0009 for this gene demonstrated a low diversity across the goats' populations. Fu and Li tests were significantly positive but Tajima's D test was significantly negative, suggesting its deviation from neutrality. Neighbor joining tree of IRF3 gene in domesticated goats, wild goat and sheep showed that all domesticated goats have a closer relationship than with the wild goat and sheep. Maximum likelihood tree of the gene showed that different domesticated goats share a common ancestor and suggest single origin. Four unique haplotypes were observed across all the sequences, of which, one was particularly common to African goats (MOCH-K14-0425, Poitou and WAD). In assessing the evolution mode of the gene, we found that the codon model dN/dS ratio for all goats was greater than one. Phylogenetic Analysis by Maximum Likelihood (PAML) gave a ω0 (dN/dS) value of 0.067 with LnL value of -6900.3 for the first Model (M1) while ω2 = 1.667 in model M2 with LnL value of -6900.3 with positive selection inferred in 3 codon sites. Mechanistic empirical combination (MEC) model for evaluating adaptive selection pressure on particular codons also confirmed adaptive selection pressure in three codons (207, 358 and 408) in IRF3 gene. Positive diversifying selection inferred with recent evolutionary changes in domesticated goat IRF3 led us to conclude that the gene evolution may have been influenced by domestication processes in goats.

源语言英语
文章编号e0161962
期刊PLoS ONE
11
9
DOI
出版状态已出版 - 9月 2016
已对外发布

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