Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.

Many genes important in immunity are found as multigene families. The butyrophilin genes are members of the B7 family, playing diverse roles in co-regulation and perhaps in antigen presentation. In humans, a fixed number of butyrophilin genes are found in and around the major histocompatibility comp...

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Main Authors: Jan Salomonsen, John A Chattaway, Andrew C Y Chan, Aimée Parker, Samuel Huguet, Denise A Marston, Sally L Rogers, Zhiguang Wu, Adrian L Smith, Karen Staines, Colin Butter, Patricia Riegert, Olli Vainio, Line Nielsen, Bernd Kaspers, Darren K Griffin, Fengtang Yang, Rima Zoorob, Francois Guillemot, Charles Auffray, Stephan Beck, Karsten Skjødt, Jim Kaufman
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-06-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC4046983?pdf=render
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spelling doaj-3bfc5bb7c6274a4188c491bf17d47bc02020-11-24T21:48:21ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042014-06-01106e100441710.1371/journal.pgen.1004417Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.Jan SalomonsenJohn A ChattawayAndrew C Y ChanAimée ParkerSamuel HuguetDenise A MarstonSally L RogersZhiguang WuAdrian L SmithKaren StainesColin ButterPatricia RiegertOlli VainioLine NielsenBernd KaspersDarren K GriffinFengtang YangRima ZoorobFrancois GuillemotCharles AuffrayStephan BeckKarsten SkjødtJim KaufmanMany genes important in immunity are found as multigene families. The butyrophilin genes are members of the B7 family, playing diverse roles in co-regulation and perhaps in antigen presentation. In humans, a fixed number of butyrophilin genes are found in and around the major histocompatibility complex (MHC), and show striking association with particular autoimmune diseases. In chickens, BG genes encode homologues with somewhat different domain organisation. Only a few BG genes have been characterised, one involved in actin-myosin interaction in the intestinal brush border, and another implicated in resistance to viral diseases. We characterise all BG genes in B12 chickens, finding a multigene family organised as tandem repeats in the BG region outside the MHC, a single gene in the MHC (the BF-BL region), and another single gene on a different chromosome. There is a precise cell and tissue expression for each gene, but overall there are two kinds, those expressed by haemopoietic cells and those expressed in tissues (presumably non-haemopoietic cells), correlating with two different kinds of promoters and 5' untranslated regions (5'UTR). However, the multigene family in the BG region contains many hybrid genes, suggesting recombination and/or deletion as major evolutionary forces. We identify BG genes in the chicken whole genome shotgun sequence, as well as by comparison to other haplotypes by fibre fluorescence in situ hybridisation, confirming dynamic expansion and contraction within the BG region. Thus, the BG genes in chickens are undergoing much more rapid evolution compared to their homologues in mammals, for reasons yet to be understood.http://europepmc.org/articles/PMC4046983?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jan Salomonsen
John A Chattaway
Andrew C Y Chan
Aimée Parker
Samuel Huguet
Denise A Marston
Sally L Rogers
Zhiguang Wu
Adrian L Smith
Karen Staines
Colin Butter
Patricia Riegert
Olli Vainio
Line Nielsen
Bernd Kaspers
Darren K Griffin
Fengtang Yang
Rima Zoorob
Francois Guillemot
Charles Auffray
Stephan Beck
Karsten Skjødt
Jim Kaufman
spellingShingle Jan Salomonsen
John A Chattaway
Andrew C Y Chan
Aimée Parker
Samuel Huguet
Denise A Marston
Sally L Rogers
Zhiguang Wu
Adrian L Smith
Karen Staines
Colin Butter
Patricia Riegert
Olli Vainio
Line Nielsen
Bernd Kaspers
Darren K Griffin
Fengtang Yang
Rima Zoorob
Francois Guillemot
Charles Auffray
Stephan Beck
Karsten Skjødt
Jim Kaufman
Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
PLoS Genetics
author_facet Jan Salomonsen
John A Chattaway
Andrew C Y Chan
Aimée Parker
Samuel Huguet
Denise A Marston
Sally L Rogers
Zhiguang Wu
Adrian L Smith
Karen Staines
Colin Butter
Patricia Riegert
Olli Vainio
Line Nielsen
Bernd Kaspers
Darren K Griffin
Fengtang Yang
Rima Zoorob
Francois Guillemot
Charles Auffray
Stephan Beck
Karsten Skjødt
Jim Kaufman
author_sort Jan Salomonsen
title Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
title_short Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
title_full Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
title_fullStr Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
title_full_unstemmed Sequence of a complete chicken BG haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
title_sort sequence of a complete chicken bg haplotype shows dynamic expansion and contraction of two gene lineages with particular expression patterns.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2014-06-01
description Many genes important in immunity are found as multigene families. The butyrophilin genes are members of the B7 family, playing diverse roles in co-regulation and perhaps in antigen presentation. In humans, a fixed number of butyrophilin genes are found in and around the major histocompatibility complex (MHC), and show striking association with particular autoimmune diseases. In chickens, BG genes encode homologues with somewhat different domain organisation. Only a few BG genes have been characterised, one involved in actin-myosin interaction in the intestinal brush border, and another implicated in resistance to viral diseases. We characterise all BG genes in B12 chickens, finding a multigene family organised as tandem repeats in the BG region outside the MHC, a single gene in the MHC (the BF-BL region), and another single gene on a different chromosome. There is a precise cell and tissue expression for each gene, but overall there are two kinds, those expressed by haemopoietic cells and those expressed in tissues (presumably non-haemopoietic cells), correlating with two different kinds of promoters and 5' untranslated regions (5'UTR). However, the multigene family in the BG region contains many hybrid genes, suggesting recombination and/or deletion as major evolutionary forces. We identify BG genes in the chicken whole genome shotgun sequence, as well as by comparison to other haplotypes by fibre fluorescence in situ hybridisation, confirming dynamic expansion and contraction within the BG region. Thus, the BG genes in chickens are undergoing much more rapid evolution compared to their homologues in mammals, for reasons yet to be understood.
url http://europepmc.org/articles/PMC4046983?pdf=render
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