Biology Reference
In-Depth Information
Blackler, A.W., 1958. Contribution to the study of germ-cells in the anura. J. Embryol. Exp.
Morphol. 6, 491-503.
Blower, M.D., Feric, E., Weis, K., Heald, R., 2007. Genome-wide analysis demonstrates
conserved localization of messenger RNAs to mitotic microtubules. J. Cell Biol. 179,
1365-1373.
Bontems, F., Stein, A., Marlow, F., Lyautey, J., Gupta, T., Mullins, M.C., Dosch, R., 2009.
Bucky ball organizes germ plasm assembly in zebrafish. Curr. Biol. 19, 414-422.
Bottenberg, W., Sanchez-Soriano, N., Alves-Silva, J., Hahn, I., Mende, M., Prokop, A.,
2009. Context-specific requirements of functional domains of the Spectraplakin Short
stop in vivo. Mech. Dev. 126, 489-502.
Bounoure, L., 1934. Recherches sur la lign´e germinale chez la grenouille rousse aux pre-
miers stades du d´veloppement. Ann. Sci. Nat. 17, 67-248.
Bruce, A.E.E., Howley, C., Zhou, Y., Vickers, S.L., Silver, L.M., King, M.L., Ho, R.K.,
2003. The maternally expressed zebrafish T-box gene eomesodermin regulates organizer
formation. Development 130, 5503-5517.
Bubunenko, M., Kress, T.L., Vempati, U.D., Mowry, K.L., King, M.L., 2002. A consensus
RNA signal that directs germ layer determinants to the vegetal cortex of Xenopus
oocytes. Dev. Biol. 248, 82-92.
Callery, E.M., Fang, H., Elinson, R.P., 2001. Frogs without polliwogs: evolution of anuran
direct development. Bioessays 23, 233-241.
Carpenter, C.D., Klein, W.H., 1982. A gradient of poly(A) þ RNA sequences in Xenopus
laevis eggs and embryos. Dev. Biol. 91, 43-49.
Cha, S.-W., Tadjuidje, E., Wylie, C.C., Heasman, J., 2011. The roles of maternal Vangl2 and
aPKC in Xenopus oocyte and embryo patterning. Development 138, 3989-4000.
Chalmers, A.D., Welchman, D., Papalopulu, N., 2002. Intrinsic differences between the
superficial and deep layers of the Xenopus ectoderm control primary neuronal differen-
tiation. Dev. Cell 2, 171-182.
Chan, A.P., Kloc, M., Etkin, L.D., 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, 4943-4953.
Chan, A.P., Kloc, M., Bilinski, S., Etkin, L.D., 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, 137-140.
Chan, A.P., Kloc, M., Larabell, C.A., LeGros, M., Etkin, L.D., 2007. The maternally local-
ized RNA fatvg is required for cortical rotation and germ cell formation. Mech. Dev.
124, 350-363.
Chang, P., Torres, J., Lewis, R.A., Mowry, K.L., Houliston, E., King, M.L., 2004. Local-
ization of RNAs to the mitochondrial cloud in Xenopus oocytes through entrapment
and association with endoplasmic reticulum. Mol. Biol. Cell 15, 4669-4681.
Choi, S.-C., Kim, J., Han, J.-K., 2000. Identification and developmental expression of par-6
gene in Xenopus laevis. Mech. Dev. 91, 347-350.
Claussen, M., Pieler, T., 2004. Xvelo1 uses a novel 75-nucleotide signal sequence that
drives vegetal
localization along the late pathway in Xenopus oocytes. Dev. Biol.
266, 270-284.
Claussen, M., Horvay, K., Pieler, T., 2004. Evidence for overlapping, but not identical, pro-
tein machineries operating in vegetal RNA localization along early and late pathways in
Xenopus oocytes. Development 131, 4263-4273.
Claussen, M., Tarbashevich, K., Pieler, T., 2011. Functional dissection of the RNA signal
sequence responsible for vegetal localization of XGrip2.1 mRNA in Xenopus oocytes.
RNA Biol. 8, 873-882.
Clavert, J., 1962. Symmetrization of the egg of vertebrates. Adv. Morphogenesis 2, 27-60.
 
Search WWH ::




Custom Search