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Seydoux, G., and Schedl, T. (2001). The germline in C. elegans: Origins, proliferation, and silencing. Int.
Rev. Cytol. 203 , 139-185.
Shakes, D. C., and Ward, S. (1989). Initiation of spermiogenesis in C. elegans: A pharmacological and
genetic analysis. Dev. Biol. 134 , 189-200.
Shakes, D. C., and Wu, J. C., et al. (2009). Spermatogenesis-specific features of the meiotic program in
Caenorhabditis elegans. PLoS Genet. 5 (8), e1000611.
Singaravelu, G., and Chatterjee, I., et al. (2011). Isolation and in vitro activation of Caenorhabditis
elegans sperm. J. Vis. Exp. 47.
Singson, A. (2001). Every sperm is sacred: Fertilization in Caenorhabditis elegans. Dev. Biol. 230 (2),
101-109.
Singson, A. (2006). Sperm activation: Time and tide wait for no sperm. Curr. Biol. 16 (5), R160-R162.
Singson, A., and Hang, J. S., et al. (2008). Genes required for the common miracle of fertilization in
Caenorhabditis elegans. Int. J. Dev. Biol. 52 (5-6), 647-656.
Singson, A., and Hill, K. L., et al. (1999). Sperm competition in the absence of fertilization in
Caenorhabditis elegans. Genetics 152 (1), 201-208.
Singson, A., and Mercer, K. B., et al. (1998). The C. elegans spe-9 gene encodes a sperm transmembrane
protein that contains EGF-like repeats and is required for fertilization. Cell 93 , 71-79.
Singson, A., and Zannoni, S., et al. (2001). Molecules that function in the steps of fertilization. Cytokine
Growth Factor Rev. 12 (4), 299-304.
Sonneville, R., and Gonczy, P. (2004). Zyg-11 and cul-2 regulate progression through meiosis II and
polarity establishment in C. elegans. Development 131 (15), 3527-3543.
Stanfield, G. M., and Villeneuve, A. M. (2006). Regulation of sperm activation by SWM-1 is required for
reproductive success of C. elegans males. Curr. Biol.
Stitzel, M. L., and Cheng, K. C., et al. (2007). Regulation of MBK-2/Dyrk kinase by dynamic cortical
anchoring during the oocyte-to-zygote transition. Curr. Biol. 17 (18), 1545-1554.
Stitzel, M. L., and Seydoux, G. (2007). Regulation of the oocyte-to-zygote transition. Science 316 (5823),
407-408.
Strome, S., and Powers, J., et al. (2001). Spindle dynamics and the role of gamma-tubulin in early
Caenorhabditis elegans embryos. Mol. Biol. Cell 12 (6), 1751-1764.
Sumiyoshi, E., and Sugimoto, A., et al. (2002). Protein phosphatase 4 is required for centrosome
maturation in mitosis and sperm meiosis in C. elegans. J. Cell Sci. 115 (Pt 7), 1403-1410.
Tenenhaus, C., and Subramaniam, K., et al. (2001). PIE-1 is a bifunctional protein that regulates maternal
and zygotic gene expression in the embryonic germ line of Caenorhabditis elegans. Genes Dev. 15 (8),
1031-1040.
Timmons, L., and Court, D. L., et al. (2001). Ingestion of bacterially expressed dsRNAs can produce
specific and potent genetic interference in Caenorhabditis elegans. Gene 263 (1-2), 103-112.
Timmons, L., and Fire, A. (1998). Specific interference by ingested dsRNA. Nature 395 (6705), 854.
Wakimoto, B. T., and Lindsley, D. L., et al. (2004). Toward a comprehensive genetic analysis of male
fertility in Drosophila melanogaster. Genetics 167 (1), 207-216.
Ward, S., and Argon, Y., et al. (1981). Sperm morphogenesis in wild-type and fertilization-defective
mutants of Caenorhabditis elegans. J. Cell Biol. 91 (1), 26-44.
Ward, S., and Carrel, J. S. (1979). Fertilization and sperm competition in the nematode Caenorhabditis
elegans. Dev. Biol. 73 , 304-321.
Wassarman, P. M. (1999). Mammalian fertilization: Molecular aspects of gamete adhesion, exocytosis,
and fusion. Cell 96 , 175-183.
Wessel, G. M., and Brooks, J. M., et al. (2001). The biology of cortical granules.
Int. Rev. Cytol. 209 ,
117-206.
Wu, T. F., and Nera, B., et al. (2010). Elucidating gene regulatory mechanisms for sperm function through
the integration of classical and systems approaches in C. elegans. Syst. Biol. Reprod. Med. 56 (3),
222-235.
Xu, X. Z., and Sternberg, P. W. (2003). A C. elegans
sperm TRP protein required for sperm-egg
interactions during fertilization. Cell 114 (3), 285-297.
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