Vertebrate Development Maternal to Zygotic Control (Advances in Experimental Medicine and Biology)

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Boterenbrood EC, Nieuwkoop PD (1973) The formation of the mesoderm in urodelean amphibi-
ans: V. Its regional induction by the endoderm. Wilhelm Roux Arch 173:319–332
Bounoure L (1925) L’origine des gonocytes et l'evolution de la premiere ebauche genitale chez les
Batraciens. Ann Sci Nat 8:201–278
Braat AK, Speksnijder JE, Zivkovic D (1999a) Germ line development in fishes. Int J Dev Biol
43(7):745–760
Braat AK, Zandbergen MA, De Vries E, Van Der Burg B, Bogerd J, Goos HJ (1999b) Cloning and
expression of the zebrafish germ cell nuclear factor. Mol Reprod Dev 53(4):369–375.
doi:10.1002/(SICI)1098-2795(199908)53:4<369::AID-MRD1>3.0.CQ;2-U
Braat AK, Zandbergen T, van de Water S, Goos HJ, Zivkovic D (1999c) Characterization of
zebrafish primordial germ cells: morphology and early distribution of vasa RNA. Dev Dyn
216(2):153–167. doi:10.1002/(SICI)1097-0177(199910)216:2<153::AID-DVDY6>3.0.CQ;2-1
Brook M, Smith JW, Gray NK (2009) The DAZL and PABP families: RNA-binding proteins with
interrelated roles in translational control in oocytes. Reproduction 137(4):595–617. doi:10.1530/
REP-08-0524
Brown FD, Swalla BJ (2007) Vasa expression in a colonial ascidian, Botrylloides violaceus. Evol
Dev 9(2):165–177. doi:10.1111/j.1525-142X.2007.00147.x
Brown FD, Tiozzo S, Roux MM, Ishizuka K, Swalla BJ, De Tomaso AW (2009) Early lineage
specification of long-lived germline precursors in the colonial ascidian Botryllus schlosseri.
Development 136(20):3485–3494. doi:10.1242/dev.037754
Bushati N, Cohen SM (2007) MicroRNA functions. Annu Rev Cell Dev Biol 23:175–205.
doi:10.1146/annurev.cellbio.23.090506.123406
Campolo F, Gori M, Favaro R, Nicolis S, Pellegrini M, Botti F, Rossi P, Jannini EA, Dolci S (2013)
Essential role of Sox2 for the establishment and maintenance of the germ cell line. Stem Cells
31(7):1408–1421. doi:10.1002/stem.1392
Cao Y, Knochel S, Donow C, Miethe J, Kaufmann E, Knochel W (2004) The POU factor Oct-25
regulates the Xvent-2B gene and counteracts terminal differentiation in Xenopus embryos.
J Biol Chem 279(42):43735–43743. doi:10.1074/jbc.M407544200
Cao Y, Siegel D, Knochel W (2006) Xenopus POU factors of subclass V inhibit activin/nodal
signaling during gastrulation. Mech Dev 123(8):614–625. doi:10.1016/j.mod.2006.06.004
Cao Y, Siegel D, Oswald F, Knochel W (2008) Oct25 represses transcription of nodal/activin target
genes by interaction with signal transducers during Xenopus gastrulation. J Biol Chem 283(49):34168–



  1. doi:10.1074/jbc.M803532200
    Chambers I, Silva J, Colby D, Nichols J, Nijmeijer B, Robertson M, Vrana J, Jones K, Grotewold
    L, Smith A (2007) Nanog safeguards pluripotency and mediates germline development. Nature
    450(7173):1230–1234. doi:10.1038/nature06403, nature06403
    Chan AP, Kloc M, Bilinski S, Etkin LD (2001) The vegetally localized mRNA fatvg is associated
    with the germ plasm in the early embryo and is later expressed in the fat body. Mech Dev
    100(1):137–140
    Chan AP, Kloc M, Etkin LD (1999) fatvg encodes a new localized RNA that uses a 25-nucleotide
    element (FVLE1) to localize to the vegetal cortex of Xenopus oocytes. Development
    126(22):4943–4953
    Chan AP, Kloc M, Larabell CA, LeGros M, Etkin LD (2007) The maternally localized RNA fatvg
    is required for cortical rotation and germ cell formation. Mech Dev 124(5):350–363.
    doi:10.1016/j.mod.2007.02.001
    Chang H, Matzuk MM (2001) Smad5 is required for mouse primordial germ cell development.
    Mech Dev 104(1–2):61–67
    Chang P, Torres J, Lewis RA, Mowry KL, Houliston E, King ML (2004) Localization of RNAs to
    the mitochondrial cloud in Xenopus oocytes through entrapment and association with endo-
    plasmic reticulum. Mol Biol Cell 15(10):4669–4681. doi:10.1091/mbc.E04-03-0265
    Chatfield J, O’Reilly MA, Bachvarova RF, Ferjentsik Z, Redwood C, Walmsley M, Patient R,
    Loose M, Johnson AD (2014) Stochastic specification of primordial germ cells from mesoderm
    precursors in axolotl embryos. Development 141(12):2429–2440. doi:10.1242/dev.105346


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