Biology Reference
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Bartel, D. P. (2009). MicroRNAs: Target recognition and regulatory functions. Cell 136,
215-233.
Batista, P. J., Ruby, J. G., Claycomb, J. M., Chiang, R., Fahlgren, N., Kasschau, K. D.,
Chaves, D. A., Gu, W., Vasale, J. J., Duan, S., Conte, D., Jr., Luo, S., et al . (2008).
PRG-1 and 21U-RNAs interact to form the piRNA complex required for fertility in
C. elegans. Mol. Cell 31, 67-78.
Bernstein, E., Kim, S. Y., Carmell, M. A., Murchison, E. P., Alcorn, H., Li, M. Z.,
Mills, A. A., Elledge, S. J., Anderson, K. V., and Hannon, G. J. (2003). Dicer is essential
for mouse development. Nat. Genet. 35, 215-217.
Blaser, H., Eisenbeiss, S., Neumann, M., Reichman-Fried, M., Thisse, B., Thisse, C., and
Raz, E. (2005). Transition from non-motile behaviour to directed migration during early
PGC development in zebrafish. J. Cell Sci. 118, 4027-4038.
Borges, F., Pereira, P. A., Slotkin, R. K., Martienssen, R. A., and Becker, J. D. (2011).
MicroRNA activity in the Arabidopsis male germline. J. Exp. Bot. 62, 1611-1620.
Boterenbrood, E. C., and Nieuwkoop, P. D. (1973). The formation of the mesoderm in
urodelian amphibians. V. Its regional induction by the endoderm. Wilhelm Roux' Arch.
Devl. Biol. 173, 319-332.
Bourc'his, D., and Voinnet, O. (2010). A small-RNA perspective on gametogenesis,
fertilization, and early zygotic development. Science (New York, N.Y.) 330, 617-622.
Braat, A., Zandbergen, T., van de Water, S., Goos, H., and Zivkovic, D. (1999). Charac-
terization of zebrafish primordial germ cells: Morphology and early distribution of vasa
RNA. Dev. Dyn. 216, 153-167.
Brennecke, J., Aravin, A. A., Stark, A., Dus, M., Kellis, M., Sachidanandam, R., and
Hannon, G. J. (2007). Discrete small RNA-generating loci as master regulators of
transposon activity in Drosophila. Cell 128, 1089-1103.
Brennecke, J., Malone, C. D., Aravin, A. A., Sachidanandam, R., Stark, A., and
Hannon, G. J. (2008). An epigenetic role for maternally inherited piRNAs in transposon
silencing. Science (New York, N.Y.) 322, 1387-1392.
Brower-Toland, B., Findley, S. D., Jiang, L., Liu, L., Yin, H., Dus, M., Zhou, P.,
Elgin, S. C., and Lin, H. (2007). Drosophila PIWI associates with chromatin and interacts
directly with HP1a. Genes Dev.
2300-2311.
Bushati, N., Stark, A., Brennecke, J., and Cohen, S. M. (2008). Temporal reciprocity of
miRNAs and their targets during the maternal-to-zygotic transition in Drosophila. Curr.
Biol. 18, 501-506.
Carmell, M. A., and Hannon, G. J. (2004). RNase III enzymes and the initiation of gene
silencing. Nat. Struct. Mol. Biol. 11, 214-218.
Carmell, M. A., Girard, A., van de Kant, H. J., Bourc'his, D., Bestor, T. H., de Rooij, D. G.,
and Hannon, G. J. (2007). MIWI2 is essential for spermatogenesis and repression of
transposons in the mouse male germline. Dev. Cell 12, 503-514.
Carrington, J. C., and Ambros, V. (2003). Role of microRNAs in plant and animal
development. Science (New York, N.Y.) 301, 336-338.
Chen, Y., Pane, A., and Schupbach, T. (2007). Cutoff and aubergine mutations result in
retrotransposon upregulation and checkpoint activation in Drosophila. Curr. Biol. 17,
637-642.
Chung, W. J., Okamura, K., Martin, R., and Lai, E. C. (2008). Endogenous RNA
interference provides a somatic defense against Drosophila transposons. Curr. Biol. 18,
795-802.
Claycomb, J. M., Batista, P. J., Pang, K. M., Gu, W., Vasale, J. J., van Wolfswinkel, J. C.,
Chaves, D. A., Shirayama, M., Mitani, S., Ketting, R. F., Conte, D., Jr., and
Mello, C. C. (2009). The Argonaute CSR-1 and its 22G-RNA cofactors are required
for holocentric chromosome segregation. Cell 139, 123-134.
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