Expression of Dazl and Vasa in turtle embryos and ovaries: Evidence for inductive specification of germ cells Journal Article


Authors: Bachvarova, R. F.; Crother, B. I.; Manova, K.; Chatfield, J.; Shoemaker, C. M.; Crews, D. P.; Johnson, A. D.
Article Title: Expression of Dazl and Vasa in turtle embryos and ovaries: Evidence for inductive specification of germ cells
Abstract: In bilaterian animals, germ cells are specified by the inductive/regulative mode or the predetermined (germ plasm) mode. Among tetrapods, mammals and urodeles use the inductive mode, whereas birds and anurans use the predetermined mode. From histological data it has been predicted that some reptiles including turtles use the inductive mode. Examining turtle oocytes, we find that Dazl RNA, Vasa RNA, and Vasa protein are not localized, suggesting that germ plasm is not present. In turtle embryos at somite stages, primordial germ cells (PGCs) expressing Dazl lie on a path from the lateral posterior extraembryonic endoderm through the gut to the gonad as previously described. In gastrulating embryos, cells expressing Dazl are found in the blastoporal plate and subsequently below the blastoporal plate, indicating that PGCs are generated at the equivalent of the early posterior primitive streak of mammals. Vasa RNA is expressed in somatic cells of gastrula to early somite stages, and Vasa RNA and protein are expressed in PGCs of later embryos. Taken together the evidence strongly suggests that turtles, and other reptiles (lacertoid lizards) with the same location of PGCs in embryos, use the inductive mode of germ cell specification. Phylogenetic analysis of the available evidence supports the following hypotheses: (1) the inductive mode is basal among reptiles, indicating that this mode was maintained as basal tetrapods evolved to amniotes, (2) the predetermined mode arose twice within reptiles, and (3) the induced mode may be used in several lepidosaurs whose PGCs are located in an unusual pattern distributed around the embryo. © 2009 Wiley Periodicals, Inc.
Keywords: genetics; animal; metabolism; mammalia; animals; gene expression; germ cell; protein; histology; animalia; dead box protein; rna binding protein; evolutionary biology; phylogenetics; rna; specialization; turtle; animal embryo; enzyme immunoassay; gene expression regulation; growth, development and aging; in situ hybridization; molecular cloning; ovary; prenatal development; cloning, molecular; dead-box rna helicases; embryo, nonmammalian; gene expression regulation, developmental; germ cells; immunoenzyme techniques; rna-binding proteins; turtles; amniota; anura; aves; bilateria; lacertoidea; lepidosauria; reptilia; squamata; testudines; tetrapoda
Journal Title: Evolution and Development
Volume: 11
Issue: 5
ISSN: 1520-541X
Publisher: Wiley Periodicals, Inc  
Date Published: 2009-09-01
Start Page: 525
End Page: 534
Language: English
DOI: 10.1111/j.1525-142X.2009.00360.x
PUBMED: 19754709
PROVIDER: scopus
DOI/URL:
Notes: --- - "Cited By (since 1996): 6" - "Export Date: 30 November 2010" - "CODEN: ELDMF" - "Source: Scopus"
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