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The Rhox homeobox gene family shows sexually dimorphic and dynamic expression during mouse embryonic gonad development

  • Hinda Daggag
  • , Terje Svingen
  • , Patrick S. Western
  • , Jocelyn A. van den Bergen
  • , Peter J. McClive
  • , Vincent R. Harley
  • , Peter Koopman
  • , Andrew H. Sinclair
  • University of Queensland

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

Reproductive capacity is fundamental to the survival of all species. Consequently, much research has been undertaken to better understand gametogenesis and the interplay between germ cells and the somatic cell lineages of the gonads. In this study, we have analyzed the embryonic expression pattern of the X-linked gene family (R) under bar eproductive (h) under bar omeobox genes on the (X) under bar chromosome (Rhox) in mice. Our data show that eight members of the Rhox gene family are developmentally regulated in sexually dimorphic and temporally dynamic patterns in the developing germ cells during early gonadogenesis. These changes coincide with critical stages of differentiation where the germ cells enter either mitotic arrest in the testis or meiotic arrest in the ovary. Finally, we show that Rhox8 (Tox) is the only member of the Rhox gene family that is expressed in the somatic compartment of the embryonic gonads. Our results indicate that the regulation of Rhox gene expression and its potential function during embryogenesis are quite distinct from those previously reported for Rhox gene regulation in postnatal gonads.
Original languageEnglish
JournalBiology of Reproduction
Volume79
Issue number3
Pages (from-to)468-474
Number of pages7
ISSN0006-3363
DOIs
Publication statusPublished - 2008
Externally publishedYes

Keywords

  • Animals
  • Embryo, Mammalian
  • Embryonic Development
  • Female
  • Gene Expression Regulation, Developmental
  • Genes, Homeobox
  • Germ Cells
  • Gonads
  • Homeodomain Proteins
  • Male
  • Mice
  • Mice, Inbred C57BL
  • Multigene Family
  • RNA, Messenger
  • Sex Characteristics
  • Sex Differentiation
  • animal cell
  • article
  • cell differentiation
  • controlled study
  • embryo development
  • female
  • gene expression
  • gene function
  • genome
  • germ cell
  • gonad development
  • homeobox
  • male
  • meiosis
  • mitosis inhibition
  • mouse
  • nonhuman
  • ovary
  • priority journal
  • reproductive homeobox gene on the x chromosome 1
  • reproductive homeobox gene on the x chromosome 10
  • reproductive homeobox gene on the x chromosome 11
  • reproductive homeobox gene on the x chromosome 12
  • reproductive homeobox gene on the x chromosome 2
  • reproductive homeobox gene on the x chromosome 2a
  • reproductive homeobox gene on the x chromosome 3
  • reproductive homeobox gene on the x chromosome 4a
  • reproductive homeobox gene on the x chromosome 5
  • reproductive homeobox gene on the x chromosome 6
  • reproductive homeobox gene on the x chromosome 7
  • reproductive homeobox gene on the x chromosome 8
  • reproductive homeobox gene on the x chromosome 9
  • sex difference
  • testis
  • Mus
  • Gene regulation
  • Germ cells
  • Gonad development
  • Homeobox
  • Reproduction
  • Rhox genes
  • REPRODUCTIVE
  • PRIMORDIAL GERM-CELLS
  • SEX DETERMINATION
  • RAPID EVOLUTION
  • TESTIS
  • MICE
  • PROLIFERATION
  • DIFFERENTIATION
  • LOCALIZATION
  • MEIOSIS
  • PROTEIN
  • gene regulation
  • germ cells
  • reproduction
  • embryonic gonad development
  • reproductive capacity
  • sexually dimorphic
  • Rodentia Mammalia Vertebrata Chordata Animalia (Animals, Chordates, Mammals, Nonhuman Vertebrates, Nonhuman Mammals, Rodents, Vertebrates) - Muridae [86375] Swiss mouse common strain-C57BL/6
  • mouse Rhox gene [Muridae] mouse reproductive homebox on the X chromosome gene expression, regulation
  • 02506, Cytology - Animal
  • 03502, Genetics - General
  • 03506, Genetics - Animal
  • 16504, Reproductive system - Physiology and biochemistry
  • 17002, Endocrine - General
  • Biochemistry and Molecular Biophysics
  • gonad reproductive system, endocrine system
  • somatic cell
  • testis reproductive system
  • Molecular Genetics
  • Reproductive System

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