Bovine Reproduction. Группа авторов

Чтение книги онлайн.

Читать онлайн книгу Bovine Reproduction - Группа авторов страница 59

Bovine Reproduction - Группа авторов

Скачать книгу

the number of A spermatogonia accompanies increased SC number during the breeding season [64].

      1 1 Oatley, J. and Brinster, R. (2006). Spermatogonial stem cells. Methods Enzymol. 419: 259–282.

      2 2 Waqas M. Enhancing sperm production in the bull. PhD Dissertation 2018 (accessed 9 November 2020). Available from https://research.libraries.wsu.edu/xmlui/bitstream/handle/2376/16407/waqas_wsu_0251e_12450.pdf?sequence=1&isallowed=y.

      3 3 Oatley, J. (2010). Spermatogonial stem cell biology in the bull: development of isolation, culture, and transplantation methodologies and their potential impacts on cattle production. Soc. Reprod. Fertil. Suppl. 67: 133–143.

      4 4 Griswold, M. and Oatley, J. (2013). Concise review: defining characteristics of mammalian spermatogenic stem cells. Stem Cells 31: 8–11.

      5 5 McLaren, A. (2000). Establishment of the germ cell lineage in mammals. J. Cell. Physiol. 182: 141–143.

      6 6 McLaren, A. (1998). Gonad development: assembling the mammalian testis. Curr. Biol. 8: R175–R177.

      7 7 Yoshioka, H., McCarrey, J., and Yamazaki, Y. (2009). Dynamic nuclear organization of constitutive heterochromatin during fetal male germ cell development in mice. Biol. Reprod. 80: 804–812.

      8 8 Tagelenbosch, R. and de Rooij, D. (1993). A quantitative study of spermatogonial multiplication and stem cell renewal in the C3H/101 F 1 hybrid mouse. Mutat. Res./Fundam. Mol. Mech. Mutagen. 290: 193–200.

      9 9 Huckins, C. (1971). The spermatogonial stem cell population in adult rats. I. Their morphology, proliferation and maturation. Anat. Rec. 169: 533–557.

      10 10 Oakberg, E. (1971). Spermatogonial stem‐cell renewal in the mouse. Anat. Rec. 169: 515–531.

      11 11 Nakagawa, T., Sharma, M., Nabeshima, Y. et al. (2010). Functional hierarchy and reversibility within the murine spermatogenic stem cell compartment. Science 328: 62–67.

      12 12 Nagano, M. (2003). Homing efficiency and proliferation kinetics of male germ line stem cells following transplantation in mice. Biol. Reprod. 69: 701–707.

      13 13 Chuma, S., Kanatsu‐Shinohara, M., Inoue, K. et al. (2005). Spermatogenesis from epiblast and primordial germ cells following transplantation into postnatal mouse testis. Development 132: 117–122.

      14 14 Oatley, J. and Brinster, R. (2012). The germline stem cell niche unit in mammalian testes. Physiol. Rev. 92: 577–595.

      15 15 Yoshida, S., Sukeno, M., and Nabeshima, Y. (2007). A vasculature‐associated niche for undifferentiated spermatogonia in the mouse testis. Science 317: 1722–1726.

      16 16 Staub, C. and Johnson, L. (2018). Review: spermatogenesis in the bull. Animal: 1–9.

      17 17 Helsel, A., Oatley, M., and Oatley, J. (2017). Glycolysis‐optimized conditions enhance maintenance of regenerative integrity in mouse spermatogonial stem cells during long‐term culture. Stem Cell Rep. 8: 1430–1441.

      18 18 Zheng, Y., Zhang, Y., Qu, R. et al. (2014). Spermatogonial stem cells from domestic animals: progress and prospects. Reproduction 147: R65–R74.

      19 19 Brown, H. (1885). Memoirs: On spermatogenesis in the rat. J. Cell Sci. 2: 343–369.

      20 20 Oakberg, E. (1956). Duration of spermatogenesis in the mouse and timing of stages of the cycle of the seminiferous epithelium. Am. J. Anat. 99: 507–516.

      21 21 Jan, S., Hamer, G., and Repping, S. (2012). Molecular control of rodent spermatogenesis. Biochim. Biophys. Acta 1822: 1838–1850.

      22 22 Curtis, G. (1918). The morphology of the mammalian seminiferous tubule. Am. J. Anat. 24: 339–394.

      23 23 Curtis, S. and Amann, R. (1981). Testicular development and establishment of spermatogenesis in Holstein bulls 1, 2. J. Anim. Sci. 53: 1645–1657.

      24 24 Berndston, W. and Desjardins, C. (1918). The cycle of the seminiferous epithelium and spermatogenesis in the bovine testis. Am. J. Anat. 24: 339–394.

      25 25 Regaud, C. (1901). Etudes sur la structure des tubes seminiferes et sur la spermatogenese chez les mammiferes. Arch. Anat. Microsc. 4: 101–155.

      26 26 Perey, B., Clermont, Y., and Leblond, C.P. (1961). The wave of the seminiferous epithelium in the rat. Dev. Dyn 108: 47–77.

      27 27 Griswold, M. (2015). Spermatogenesis: the commitment to meiosis. Physiol. Rev. 96: 1–17.

      28 28 Amann, R., Johnson, L., Thompson, D. Jr. et al. (1976). Daily spermatozoal production, epididymal spermatozoal reserves and transit time of spermatozoa through the epididymis of the rhesus monkey. Biol. Reprod. 15: 586–592.

      29 29 Amann, R. (1981). A critical review of methods for evaluation of spermatogenesis from seminal characteristics. J. Androl. 2: 37–58.

      30 30 Johnson, L. (1986). Spermatogenesis and aging in the human. J. Androl. 7: 331–354.

      31 31 Wolf, F., Almquist, J., and Hale, E. (1965). Prepuberal behavior and puberal characteristics of beef bulls on high nutrient allowance. J. Anim. Sci. 24: 761–765.

      32 32 Lunstra, D., Ford, J., and Echternkamp, S. (1978). Puberty in beef bulls: hormone concentrations, growth, testicular development, sperm production and sexual aggressiveness in bulls of different breeds. J. Anim. Sci. 46: 1054.

      33 33 Johnson, L., Thompson, D., and Varner, D. (2008). Role of Sertoli cell number and function on regulation of spermatogenesis. Anim. Reprod. Sci. 105: 23–51.

      34 34 Mruk, D. and Cheng, C. (2004). Sertoli–Sertoli and Sertoli–germ cell interactions and their significance in germ cell movement in the seminiferous epithelium during spermatogenesis. Endocr. Rev. 25: 747–806.

      35 35 Franca, L., Hess, R., Dufour, J. et al. (2016). The Sertoli cell: one hundred and fifty years of beauty and plasticity. Andrology 4: 189–212.

      36 36 Sertoli, E. (1865). On the existence of special branched cells in the seminiferous tubule of the human testes. Morgagni 7: 31–39.

      37 37 Russell, L., Ren, H., Hikim, I. et al. (1990). A comparative study in twelve mammalian species of volume densities, volumes, and numerical densities of selected testis components, emphasizing those related to the Sertoli cell. Dev. Dyn. 188: 21–30.

      38 38 Morales, C. (1993). Dynamics of Sertoli cell structure and function: structural changes of the Sertoli cell during the cycle of the seminiferous epithelium. Sertoli Cell: 305–329.

      39 39 Russell, L. and Griswold, M. (1993). The Sertoli Cell. Clearwater, FL: Cache River Press.

      40 40 Dym, M. and Fawcett, D. (1970). The blood–testis barrier in the rat and the physiological compartmentation of the seminiferous epithelium. Biol. Reprod. 3: 308–326.

      41 41 Cheng, C. and Mruk, D. (2002). Cell junction dynamics in the testis: Sertoli–germ cell interactions and male contraceptive development. Physiol. Rev. 82: 825–874.

      42 42 Vogl, A. (1990;119). Distribution and function of organized concentrations of actin filaments in mammalian spermatogenic

Скачать книгу