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胚乳的发育及其调控 被引量:10

Endosperm Development and Its Regulation
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摘要 文章对胚乳的发育及其调控进行了概述。
出处 《植物生理学通讯》 CSCD 北大核心 2006年第2期182-190,共9页 Plant Physiology Communications
基金 科技部国家科技基础条件平台工作项目(2004DKA30430) 湖南省自然科学基金(03JJY3026) 湖南省教育厅青年基金(03B020)
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参考文献56

  • 1Becraft PW, Kang SH, Sub SG (2001). The maize CRINKLY4 receptor kinase controls a cell-autonomous differentiation response. Plant Physiol, 127:486-496.
  • 2Becraft PW, Li K, Dey N, Asuncion-Crabb Y (2002). The maize dekl gene functions in embryonic pattern formation and in cell fate specification. Development, 129:5217-5225.
  • 3Berger F (1999). Endosperm development. Curr Opin Plant Biol, 2:28-32.
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  • 5Brink RA, Cooper DC (1947). The endosperm in seed development. Bot Rev, 13:423-541.
  • 6Cheng WH, Chourey PS (1999). Genetic evidence that invertasemediated release of hexoses is critical for appropriate carbon partitioning and normal seed development in maize. Theor Appl Gen, 98:485-495.
  • 7Cheng WH, Talliercio EW, Chourey PS (1996). The Miniature1 seed locus of maize encodes a cell wall invertase required for normal development of endosperm and maternal cells in the pedicel. Plant Cell, 8:971-983.
  • 8Choi Y, Gehring M, Johnson L, Hannon M, Harada JJ, Goldberg RB, Jacobsen SE, Fischer RL (2002). DEMETER, a DNA glycosylase domain protein, is required for endosperm gene imprinting and seed viability in Arabidopsis. Cell, 110:33-42.
  • 9Damato F (1984). Role of polyploidy in reproductive organs and tissues. In: Johri BM (ed). Embryology of Angiosperms. Berlin: Springer-Verlag, 519-566.
  • 10Dumas C, Mogensen HL (1993). Gamete and fertilization: maize as a model system for experimental embryogenesis in flowering plants. Plant Cell, 5:1337-1348.

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