435
Leitch HG, Smith A (2013) The mammalian germline as a pluripotency cycle. Development
140(12):2495–2501. doi:10.1242/dev.091603
Liu W, Collodi P (2010) Zebrafish dead end possesses ATPase activity that is required for primor-
dial germ cell development. FASEB J 24(8):2641–2650. doi:10.1096/fj.09-148403
Lund E, Liu M, Hartley RS, Sheets MD, Dahlberg JE (2009) Deadenylation of maternal mRNAs
mediated by miR-427 in Xenopus laevis embryos. RNA 15(12):2351–2363. doi:10.1261/
rna.1882009
Luo X (2011) Translational control of maternal Nanos1 and VegT in Xenopus germline. University
of Miami School of Medicine
Luo X, Nerlick S, An W, King ML (2011) Xenopus germline nanos1 is translationally repressed
by a novel structure-based mechanism. Development 138(3):589–598. doi:10.1242/dev.056705
MacArthur H, Houston DW, Bubunenko M, Mosquera L, King ML (2000) DEADSouth is a germ
plasm specific DEAD-box RNA helicase in Xenopus related to eIF4A. Mech Dev
95(1-2):291–295
Machado RJ, Moore W, Hames R, Houliston E, Chang P, King ML, Woodland HR (2005) Xenopus
Xpat protein is a major component of germ plasm and may function in its organisation and
positioning. Dev Biol 287(2):289–300. doi:10.1016/j.ydbio.2005.08.044
Magnusdottir E, Dietmann S, Murakami K, Gunesdogan U, Tang F, Bao S, Diamanti E, Lao K,
Gottgens B, Azim Surani M (2013) A tripartite transcription factor network regulates primor-
dial germ cell specification in mice. Nat Cell Biol 15(8):905–915. doi:10.1038/ncb2798
Mahowald AP, Hennen S (1971) Ultrastructure of the “germ plasm” in eggs and embryos of Rana
pipiens. Dev Biol 24(1):37–53
Makita R, Mizuno T, Koshida S, Kuroiwa A, Takeda H (1998) Zebrafish wnt11: pattern and regu-
lation of the expression by the yolk cell and No tail activity. Mech Dev 71(1–2):165–176
Marinos E, Billett FS (1981) Mitochondrial number, cytochrome oxidase and succinic dehydroge-
nase activity in Xenopus laevis oocytes. J Embryol Exp Morphol 62:395–409
Marlow FL (2010) Maternal control of development in vertebrates: my mother made me do it!
Developmental Biology, San Rafael, CA
Marlow FL, Mullins MC (2008) Bucky ball functions in Balbiani body assembly and animal-
vegetal polarity in the oocyte and follicle cell layer in zebrafish. Dev Biol 321(1):40–50.
doi:10.1016/j.ydbio.2008.05.557
Matsui Y, Zsebo K, Hogan BL (1992) Derivation of pluripotential embryonic stem cells from
murine primordial germ cells in culture. Cell 70(5):841–847,
doi:10.1016/0092-8674(92)90317-6
Mei W, Jin Z, Lai F, Schwend T, Houston DW, King ML, Yang J (2013) Maternal Dead-End1 is
required for vegetal cortical microtubule assembly during Xenopus axis specification.
Development 140(11):2334–2344. doi:10.1242/dev.094748
Mendez R, Richter JD (2001) Translational control by CPEB: a means to the end. Nat Rev Mol
Cell Biol 2(7):521–529. doi:10.1038/35080081
Michael P (1984) Are the primordial germ cells (PGCs) in urodela formed by the inductive action
of the vegetative yolk mass? Dev Biol 103(1):109–116
Minshall N, Reiter MH, Weil D, Standart N (2007) CPEB interacts with an ovary-specific eIF4E
and 4E-T in early Xenopus oocytes. J Biol Chem 282(52):37389–37401. doi:10.1074/jbc.
M704629200
Mishima Y, Giraldez AJ, Takeda Y, Fujiwara T, Sakamoto H, Schier AF, Inoue K (2006) Differential
regulation of germline mRNAs in soma and germ cells by zebrafish miR-430. Curr Biol
16(21):2135–2142. doi:10.1016/j.cub.2006.08.086
Mizoguchi T, Verkade H, Heath JK, Kuroiwa A, Kikuchi Y (2008) Sdf1/Cxcr4 signaling controls
the dorsal migration of endodermal cells during zebrafish gastrulation. Development
135(15):2521–2529. doi:10.1242/dev.020107
Mochizuki K, Nishimiya-Fujisawa C, Fujisawa T (2001) Universal occurrence of the vasa-related genes
among metazoans and their germline expression in Hydra. Dev Genes Evol 211(6):299–308
Morichika K, Kataoka K, Terayama K, Tazaki A, Kinoshita T, Watanabe K, Mochii M (2010)
Perturbation of Notch/Suppressor of Hairless pathway disturbs migration of primordial germ cells
in Xenopus embryo. Dev Growth Differ 52(2):235–244. doi:10.1111/j.1440-169X.2009.01164.x
8 Mechanisms of Vertebrate Germ Cell Determination