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Nieuwkoop, P., Faber, J., 1967. Normal Table of Xenopus laevis (Daudin). North Holland,
Amsterdam.
Nieuwkoop, P.D., Sutasurya, L.A., 1976. Embryological evidence for a possible polyphyletic
origin of the recent amphibians. J. Embryol. Exp. Morphol. 35, 159-167.
Nojima, H., Shimizu, T., Kim, C.-H., Yabe, T., Bae, Y.-K.,Muraoka, O., Hirata, T., Chitnis, A.,
Hirano, T., Hibi, M., 2004. Genetic evidence for involvement of maternally derived Wnt
canonical signaling in dorsal determination in zebrafish. Mech. Dev. 121, 371-386.
Nojima, H., Rothhamel, S., Shimizu, T., Kim, C.H., Yonemura, S., Marlow, F.L.,
Hibi, M., 2010. Syntabulin, a motor protein linker, controls dorsal determination.
Development 137, 923-933.
Olson, D.J., Hulstrand, A.M., Houston, D.W., 2012. Maternal mRNA Knock-down Stud-
ies: Antisense Experiments Using the Host-Transfer Technique in Xenopus laevis and
Xenopus tropicalis. Humana Press, Totowa, NJ, 167-182.
Ota, R., Kotani, T., Yamashita, M., 2011. Biochemical characterization of Pumilio1 and
Pumilio2 in Xenopus oocytes. J. Biol. Chem. 286, 2853-2863.
Pan, H.-A., Lee, Y.-C., Teng, Y.-N., Tsai, S.-J., Lin, Y.-M., Kuo, P.-L., 2009. CDC25
protein expression and interaction with DAZL in human corpus luteum. Fertil. Steril.
92, 1997-2003.
Pannese, M., Cagliani, R., Pardini, C.L., Boncinelli, E., 2000. Xotx1 maternal transcripts are
vegetally localized in Xenopus laevis oocytes. Mech. Dev. 90, 111-114.
Parfitt, D.-E., Zernicka-Goetz, M., 2010. Epigenetic modification affecting expression of
cell polarity and cell fate genes to regulate lineage specification in the early mouse
embryo. Mol. Biol. Cell 21, 2649-2660.
Pepling, M.E., Spradling, A.C., 2001. Mouse ovarian germ cell cysts undergo programmed
breakdown to form primordial follicles. Dev. Biol. 234, 339-351.
Pepling, M.E., de Cuevas, M., Spradling, A.C., 1999. Germline cysts: a conserved phase of
germ cell development? Trends Cell Biol. 9, 257-262.
Pepling, M.E., Wilhelm, J.E., O'Hara, A.L., Gephardt, G.W., Spradling, A.C., 2007. Mouse
oocytes within germ cell cysts and primordial follicles contain a Balbiani body. Proc.
Natl. Acad. Sci. U.S.A. 104, 187-192.
Pfeiffer, D.C., Gard, D.L., 1999. Microtubules in Xenopus oocytes are oriented with their
minus-ends towards the cortex. Cell Motil. Cytoskeleton 44, 34-43.
Piotrowska-Nitsche, K., Perea-Gomez, A., Haraguchi, S., Zernicka-Goetz, M., 2005. Four-
cell stage mouse blastomeres have different developmental properties. Development 132,
479-490.
Pogoda, H.M., Solnica-Krezel, L., Driever, W., Meyer, D., 2000. The zebrafish forkhead
transcription factor FoxH1/Fast1 is a modulator of nodal signaling required for organizer
formation. Curr. Biol. 10, 1041-1049.
Pondel, M.D., King, M.L., 1988. Localized maternal mRNA related to transforming growth
factor beta mRNA is concentrated in a cytokeratin-enriched fraction from Xenopus
oocytes. Proc. Natl. Acad. Sci. U.S.A. 85, 7612-7616.
Rasar, M.A., Hammes, S.R., 2006. The physiology of the Xenopus laevis ovary. Methods
Mol. Biol. 322, 17-30.
Rebagliati, M.R., Weeks, D.L., Harvey, R.P., Melton, D.A., 1985. Identification and clon-
ing of localized maternal RNAs from Xenopus eggs. Cell 42, 769-777.
Reim, G., Mizoguchi, T., Stainier, D.Y., Kikuchi, Y., 2004. The POU domain protein spg
(pou2/Oct4) is essential for endoderm formation in cooperation with the HMG domain
protein casanova. Dev. Cell 6, 91-101.
Roberts, S.J., Leaf, D.S., Moore, H.P., Gerhart, J.C., 1992. The establishment of polarized
membrane traffic in Xenopus laevis embryos. J. Cell Biol. 118, 1359-1369.
Rossant, J., Tam, P.P.L., 2009. Blastocyst lineage formation, early embryonic asymmetries
and axis patterning in the mouse. Development 136, 701-713.
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