Literature DB >> 18797923

Comprehensive survey and classification of homeobox genes in the genome of amphioxus, Branchiostoma floridae.

Naohito Takatori1, Thomas Butts, Simona Candiani, Mario Pestarino, David E K Ferrier, Hidetoshi Saiga, Peter W H Holland.   

Abstract

The homeobox genes comprise a large and diverse gene superfamily, many of which encode transcription factors with pivotal roles in the embryonic development of animals. We searched the assembled draft genome sequence of an amphioxus, Branchiostoma floridae, for genes possessing homeobox sequences. Phylogenetic analysis was used to divide these into gene families and classes. The 133 amphioxus homeobox genes comprise 60 ANTP class genes, 29 PRD genes (excluding Pon and Pax1/9), nine TALE genes, seven POU genes, seven LIM genes, five ZF genes, four CUT genes, four HNF genes, three SINE genes, one CERS gene, one PROS gene, and three unclassified genes. Ten of the 11 homeobox gene classes are less diverse in amphioxus than humans, as a result of gene duplication on the vertebrate lineage. Amphioxus possesses at least one member for all of the 96 homeobox gene families inferred to be present in the common ancestor of chordates, including representatives of the Msxlx, Bari, Abox, Nk7, Ro, and Repo gene families that have been lost from tunicates and vertebrates. We find duplication of several homeobox genes in the cephalochordate lineage (Mnx, Evx, Emx, Vent, Nk1, Nedx, Uncx, Lhx2/9, Hmbox, Pou3, and Irx) and several divergent genes that probably originated by extensive sequence divergence (Hx, Ankx, Lcx, Acut, Atale, Azfh, Ahbx, Muxa, Muxb, Aprd1-6, and Ahnf). The analysis reveals not only the repertoire of amphioxus homeobox genes but also gives insight into the evolution of chordate homeobox genes.

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Year:  2008        PMID: 18797923     DOI: 10.1007/s00427-008-0245-9

Source DB:  PubMed          Journal:  Dev Genes Evol        ISSN: 0949-944X            Impact factor:   0.900


  55 in total

1.  Expression of AmphiPOU-IV in the developing neural tube and epidermal sensory neural precursors in amphioxus supports a conserved role of class IV POU genes in the sensory cells development.

Authors:  Simona Candiani; Diana Oliveri; Manuela Parodi; Eva Bertini; Mario Pestarino
Journal:  Dev Genes Evol       Date:  2006-06-14       Impact factor: 0.900

2.  AmphiPax3/7, an amphioxus paired box gene: insights into chordate myogenesis, neurogenesis, and the possible evolutionary precursor of definitive vertebrate neural crest.

Authors:  L Z Holland; M Schubert; Z Kozmik; N D Holland
Journal:  Evol Dev       Date:  1999 Nov-Dec       Impact factor: 1.930

3.  The amphioxus genome illuminates vertebrate origins and cephalochordate biology.

Authors:  Linda Z Holland; Ricard Albalat; Kaoru Azumi; Elia Benito-Gutiérrez; Matthew J Blow; Marianne Bronner-Fraser; Frederic Brunet; Thomas Butts; Simona Candiani; Larry J Dishaw; David E K Ferrier; Jordi Garcia-Fernàndez; Jeremy J Gibson-Brown; Carmela Gissi; Adam Godzik; Finn Hallböök; Dan Hirose; Kazuyoshi Hosomichi; Tetsuro Ikuta; Hidetoshi Inoko; Masanori Kasahara; Jun Kasamatsu; Takeshi Kawashima; Ayuko Kimura; Masaaki Kobayashi; Zbynek Kozmik; Kaoru Kubokawa; Vincent Laudet; Gary W Litman; Alice C McHardy; Daniel Meulemans; Masaru Nonaka; Robert P Olinski; Zeev Pancer; Len A Pennacchio; Mario Pestarino; Jonathan P Rast; Isidore Rigoutsos; Marc Robinson-Rechavi; Graeme Roch; Hidetoshi Saiga; Yasunori Sasakura; Masanobu Satake; Yutaka Satou; Michael Schubert; Nancy Sherwood; Takashi Shiina; Naohito Takatori; Javier Tello; Pavel Vopalensky; Shuichi Wada; Anlong Xu; Yuzhen Ye; Keita Yoshida; Fumiko Yoshizaki; Jr-Kai Yu; Qing Zhang; Christian M Zmasek; Pieter J de Jong; Kazutoyo Osoegawa; Nicholas H Putnam; Daniel S Rokhsar; Noriyuki Satoh; Peter W H Holland
Journal:  Genome Res       Date:  2008-06-18       Impact factor: 9.043

4.  An amphioxus Pax gene, AmphiPax-1, expressed in embryonic endoderm, but not in mesoderm: implications for the evolution of class I paired box genes.

Authors:  N D Holland; L Z Holland; Z Kozmik
Journal:  Mol Mar Biol Biotechnol       Date:  1995-09

5.  The ParaHox gene cluster is an evolutionary sister of the Hox gene cluster.

Authors:  N M Brooke; J Garcia-Fernàndez; P W Holland
Journal:  Nature       Date:  1998-04-30       Impact factor: 49.962

6.  Gene duplications and the origins of vertebrate development.

Authors:  P W Holland; J Garcia-Fernàndez; N A Williams; A Sidow
Journal:  Dev Suppl       Date:  1994

7.  Archetypal organization of the amphioxus Hox gene cluster.

Authors:  J Garcia-Fernández; P W Holland
Journal:  Nature       Date:  1994-08-18       Impact factor: 49.962

8.  The amphioxus Hox cluster: deuterostome posterior flexibility and Hox14.

Authors:  D E Ferrier; C Minguillón; P W Holland; J Garcia-Fernàndez
Journal:  Evol Dev       Date:  2000 Sep-Oct       Impact factor: 1.930

9.  Comprehensive analysis of animal TALE homeobox genes: new conserved motifs and cases of accelerated evolution.

Authors:  Krishanu Mukherjee; Thomas R Bürglin
Journal:  J Mol Evol       Date:  2007-07-30       Impact factor: 2.395

10.  Isolation and developmental expression of the amphioxus Pax-6 gene (AmphiPax-6): insights into eye and photoreceptor evolution.

Authors:  S Glardon; L Z Holland; W J Gehring; N D Holland
Journal:  Development       Date:  1998-07       Impact factor: 6.868

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  36 in total

1.  An ancient genomic regulatory block conserved across bilaterians and its dismantling in tetrapods by retrogene replacement.

Authors:  Ignacio Maeso; Manuel Irimia; Juan J Tena; Esther González-Pérez; David Tran; Vydianathan Ravi; Byrappa Venkatesh; Sonsoles Campuzano; José Luis Gómez-Skarmeta; Jordi Garcia-Fernàndez
Journal:  Genome Res       Date:  2012-01-10       Impact factor: 9.043

2.  The amphioxus genome sequence illuminates the evolutionary origin of vertebrates.

Authors:  Jeremy J Gibson-Brown; Volker Hartenstein
Journal:  Dev Genes Evol       Date:  2008-10-24       Impact factor: 0.900

3.  Additive multiple k-mer transcriptome of the keelworm Pomatoceros lamarckii (Annelida; Serpulidae) reveals annelid trochophore transcription factor cassette.

Authors:  Nathan J Kenny; Sebastian M Shimeld
Journal:  Dev Genes Evol       Date:  2012-10-09       Impact factor: 0.900

4.  Conservation of gene linkage in dispersed vertebrate NK homeobox clusters.

Authors:  Karl R Wotton; Frida K Weierud; José L Juárez-Morales; Lúcia E Alvares; Susanne Dietrich; Katharine E Lewis
Journal:  Dev Genes Evol       Date:  2009-10       Impact factor: 0.900

5.  Classification and expression analyses of homeobox genes from Dictyostelium discoideum.

Authors:  Himanshu Mishra; Shweta Saran
Journal:  J Biosci       Date:  2015-06       Impact factor: 1.826

6.  Calcisponges have a ParaHox gene and dynamic expression of dispersed NK homeobox genes.

Authors:  Sofia A V Fortunato; Marcin Adamski; Olivia Mendivil Ramos; Sven Leininger; Jing Liu; David E K Ferrier; Maja Adamska
Journal:  Nature       Date:  2014-10-30       Impact factor: 49.962

7.  The origin and evolution of ARGFX homeobox loci in mammalian radiation.

Authors:  Guang Li; Peter W H Holland
Journal:  BMC Evol Biol       Date:  2010-06-17       Impact factor: 3.260

8.  Ancient homeobox gene loss and the evolution of chordate brain and pharynx development: deductions from amphioxus gene expression.

Authors:  Thomas Butts; Peter W H Holland; David E K Ferrier
Journal:  Proc Biol Sci       Date:  2010-06-16       Impact factor: 5.349

9.  Even-Skipped(+) Interneurons Are Core Components of a Sensorimotor Circuit that Maintains Left-Right Symmetric Muscle Contraction Amplitude.

Authors:  Ellie S Heckscher; Aref Arzan Zarin; Serge Faumont; Matthew Q Clark; Laurina Manning; Akira Fushiki; Casey M Schneider-Mizell; Richard D Fetter; James W Truman; Maarten F Zwart; Matthias Landgraf; Albert Cardona; Shawn R Lockery; Chris Q Doe
Journal:  Neuron       Date:  2015-10-01       Impact factor: 17.173

10.  A comprehensive classification and evolutionary analysis of plant homeobox genes.

Authors:  Krishanu Mukherjee; Luciano Brocchieri; Thomas R Bürglin
Journal:  Mol Biol Evol       Date:  2009-09-04       Impact factor: 16.240

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