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Title: A genome-wide screen identifies a single β-defensin gene cluster in the chicken: implications for the origin and evolution of mammalian defensins

Journal Article · · BMC Genomics
 [1];  [2];  [3];  [3];  [4];  [1];  [1]
  1. Oklahoma State Univ., Stillwater, OK (United States)
  2. Univ. of South Carolina, Columbia, SC (United States)
  3. Hokkaido Univ., Sapporo (Japan)
  4. Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)

Defensins comprise a large family of cationic antimicrobial peptides that are characterized by the presence of a conserved cysteine-rich defensin motif. Based on the spacing pattern of cysteines, these defensins are broadly divided into five groups, namely plant, invertebrate, α-, β-, and θ-defensins, with the last three groups being mostly found in mammalian species. However, the evolutionary relationships among these five groups of defensins remain controversial. Following a comprehensive screen, here we report that the chicken genome encodes a total of 13 different β-defensins but with no other groups of defensins being discovered. These chicken β-defensin genes, designated as Gallinacin 1–13, are clustered densely within a 86-Kb distance on the chromosome 3q3.5-q3.7. The deduced peptides vary from 63 to 104 amino acid residues in length sharing the characteristic defensin motif. Based on the tissue expression pattern, 13 β-defensin genes can be divided into two subgroups with Gallinacin 1–7 being predominantly expressed in bone marrow and the respiratory tract and the remaining genes being restricted to liver and the urogenital tract. Comparative analysis of the defensin clusters among chicken, mouse, and human suggested that vertebrate defensins have evolved from a single β-defensin-like gene, which has undergone rapid duplication, diversification, and translocation in various vertebrate lineages during evolution. We conclude that the chicken genome encodes only β-defensin sequences and that all mammalian defensins are evolved from a common β-defensin-like ancestor. The α-defensins arose from β-defensins by gene duplication, which may have occurred after the divergence of mammals from other vertebrates, and θ-defensins have arisen from α-defensins specific to the primate lineage. Further analysis of these defensins in different vertebrate lineages will shed light on the mechanisms of host defense and evolution of innate immunity.

Research Organization:
Oklahoma State Univ., Stillwater, OK (United States); Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Biological and Environmental Research (BER). Biological Systems Science Division; Oklahoma Center for Advancement of Science and Technology
Grant/Contract Number:
AC02-05CH11231; HR-136
OSTI ID:
1626441
Journal Information:
BMC Genomics, Vol. 5, Issue 1; ISSN 1471-2164
Publisher:
SpringerCopyright Statement
Country of Publication:
United States
Language:
English

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Bovine β-defensin gene family: opportunities to improve animal health? journal January 2014
Cross-species analysis of the mammalian β-defensin gene family: presence of syntenic gene clusters and preferential expression in the male reproductive tract journal September 2005
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Tissue expression and antibacterial activity of host defense peptides in chicken journal October 2016
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Gene Expression of a Novel Defensin Antimicrobial Peptide in the Silkworm, Bombyx mori journal September 2008
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β-Defensins: Farming the Microbiome for Homeostasis and Health journal January 2019
Regulation of the Intestinal Barrier Function by Host Defense Peptides journal November 2015
Avian Antimicrobial Host Defense Peptides: From Biology to Therapeutic Applications journal February 2014
The first report of a Pelecaniformes defensin cluster: Characterization of β-defensin genes in the crested ibis based on BAC libraries journal November 2014
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Characterization of a newly developed chicken 44K Agilent microarray journal January 2008
Gallin; an antimicrobial peptide member of a new avian defensin family, the ovodefensins, has been subject to recent gene duplication journal March 2010
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Antibacterial and Antiviral Roles of a Fish β-Defensin Expressed Both in Pituitary and Testis journal December 2010
Butyrate Enhances Disease Resistance of Chickens by Inducing Antimicrobial Host Defense Peptide Gene Expression journal November 2011
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An Evolutionary History of Defensins: A Role for Copy Number Variation in Maximizing Host Innate and Adaptive Immune Responses journal March 2015
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