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雌、雄哺乳动物性腺的发育及调控 被引量:2

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摘要 哺乳动物中精巢和卵巢在性别决定之前不能通过形态、细胞表面蛋白分布、细胞基质组成来区别,雌、雄性腺的分化则通过初级和次级性别的决定产生。卵巢和精巢的形成都是基因指导的主动过程,二者都是由同样的前体,即有双向分化潜能的性腺(bipotential gonad)衍生而来。
出处 《南昌大学学报(医学版)》 CAS 2013年第1期79-82,共4页 Journal of Nanchang University:Medical Sciences
基金 国家自然科学基金(81160081)
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  • 1Macgregor G R, Zambrowicz B P, Soriano P, et al. Tissue non- specific alkaline phospatase is expressed in both embryonic and extraembryonic lineages during mouse embryogenesis but is not required for migration of primordial germ cells[J]. Devel- opment, 1995,121 (5) : 1487-1496.
  • 2Mooyottu S,Anees C,Cherian S. Ovarian stem cells and neo-o- ogenesis:A breakthrough in reproductive biology research[J]. Vet World,2011,4(2) :89-91.
  • 3Du H,Taylor H S. Stem cells and reproduction[J]. Curr Opin Obstet Gynecol,2010,22(3) :235-241.
  • 4江玲霞,李纪委,李美丽,方威,李贵强,徐银学.哺乳动物的性别决定相关基因的作用机理[J].生物技术通报,2009,25(1):40-44. 被引量:4
  • 5Muscatelli F,Strom T M,Walker A P,et al. Mutations in the DAX-1 gene give rise to both X-linked adrenal hypoplasia con- genita and hypogonadotropic hypogonadism[J]. Nature, 1994, 372(6507) :672-676.
  • 6Pellegrino M,Maiorino R,Schonauer S. WNT4 signaling in fe- male gonadal development[J]. Endocr Metab Immune Disord Drug Targets,2010,10(2) :1668-1674.
  • 7De Felici M. Germ stem cells in the mammalian adult ovary: considerations by a fan of the primordial germ cells[J]. Molec- ular Human Reproduction,2010,16(9) :632-636.
  • 8Johnson J,Canning J, Kaneko T, et al. Germline stem cells and follicular renewal in the postnatal mammalian ovary[J]. Na- ture, 2004,428(6979) : 145-150.
  • 9Zou K, Yuan Z, Yang Z, et al. Production of offspring from a germline stem cell line derived from neonatal ovaries[J]. Nat Cell Biol,2009,11(5) :631-636.
  • 10Zou K, Hou L, Sun K, et al. Improved efficiency of female germtine stem cell purification using fragilis-based magnetic bead sorting[J]. Stem Cells Dev,2011,20(12) :2197-2204.

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  • 1冯振月,潘敏慧,鲁成.果蝇生殖腺干细胞和它们的微环境[J].细胞生物学杂志,2006,28(2):169-172. 被引量:8
  • 2赵梅,韩伟.Notch信号传导通路相关疾病的研究进展[J].生物化学与生物物理进展,2006,33(12):1154-1160. 被引量:12
  • 3Assa-Kunik E, Torres IL, Schejter ED, Johnston DS, Shilo BZ. Drosophila follicle cells are patterned by multiple levels of Notch signaling and antagonism between the Notch and JAKISTAT pathways. Development 2007; 134(6): 1161-9.
  • 4Morgan TH. The role of the environment in the realization of a sex-linked Mendelian character in Drosophila. Am Nat 1915; 49: 358-429.
  • 5Morgan TH, Bridges CB. Dilution effects and bicolorism in certain eye colors of Drosophila. J Exp Zool 1913; 15(4): 429-66.
  • 6Mohr OL. Character changes caused by mutation of an entire region of a chromosome in Drosophila. Genetics 1919; 4(3): 275-82.
  • 7Artavanis- Tsakonas S, Matsuno K, Fortini ME. Notch signaling. Science 1995; 268(5208): 225-32.
  • 8Artavanis- Tsakonas S, Rand MD, Lake RJ. Notch signaling: Cell fate control and signal integration in development. Science 1999; 284(5415): 770-6.
  • 9Go MJ, Eastman DS, Artavanis-Tsakonas S. Cell proliferation control by Notch signaling in Drosophila development. Development 1998; 125: 2031-40.
  • 10Mitsiadis TA, Hirsinger E, Lendah lV, Goridis C. Delta-notch signaling in odontogenesis: Correlation with cyto differentiation and evidence for feed back regulation. Dev Biol 1998; 204(2): 420-31.

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