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颈卵器植物MADS-box基因的研究进展 被引量:3

Advances in the Study on MADS-box Genes of Archegoniatae
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摘要 作者通过对颈卵器植物MADS_box基因最新研究结果的概述 ,介绍了MADS_box基因与颈卵器植物生殖器官决定、发育和进化的关系以及被子植物花器官发育的ABCD模型在三类颈卵器植物中的表现形式和进化关系。这些结果表明MADS_box基因的结构、功能和表达模式的变化是植物生殖器官决定、发育和进化的主要原因。 This paper reviewed the recent studies on MADS_box genes in archegoniatae. These MADS_box genes are strongly correlated with the identity, development and evolution of archegiatae reproductive organs. The expressive pattern and evolutionary of ABCD model of angiosperm floral organ development are different in the three phylums of archegiatae.The research results so far suggest that changes in the structure, expression and function of MADS_box genes are the cause for the identity, development and evolution of plant reproductive organs.
出处 《植物学通报》 CSCD 北大核心 2002年第2期150-155,共6页 Chinese Bulletin of Botany
关键词 颈卵器植物 MADS-BOX基因 研究进展 进化 蕨类植物 裸子植物 MADS_box genes, Evolution, Fern, Gymnosperm, Archegoniatae
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  • 1张宪省,阎先喜,马小杰,邢树平.蝶兰胚珠的cDNA文库构建及其特异基因表达的研究[J].实验生物学报,1995,28(2):227-233. 被引量:2
  • 2胡适宜.-[J].植物学报,1998,40:1-13.
  • 3种康 谭克辉 等.-[J].中国科学:B辑,1994,24:964-970.
  • 4杨弘远 周嫦.-[J].植物学报,1998,40:95-101.
  • 5Zhang X S,Plant Cell,1993年,5卷,403页
  • 6胡适宜,被子植物胚胎学,1982年
  • 7Long J A,Nature,1996年,379卷,66页
  • 8Luo D,Nature,1996年,383卷,794页
  • 9Lu P,Plant Cell,1996年,8卷,2155页
  • 10雍伟东,科学通报,1999年,44卷,623页

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  • 1张伟媚,陈善娜.花器官发育的ABC模型[J].云南大学学报(自然科学版),2001,23(S1):102-105. 被引量:3
  • 2张大勇,赵松岭,张鹏云,陈庆诚.青杄林恢复演替过程中的邻体竞争效应及邻体干扰指数的改进模型[J].生态学报,1989,9(1):52-58. 被引量:55
  • 3Angenent G C, Franken J, Busscher M, van Dijken A, van Went J L, Dons H J M, van Tunen A J, 1995. A novel class of MADS box genes is involved in ovule development in Petunia. Plant Cell, 7:1569-1582
  • 4Coen E S, Meyerowitz E M, 1991. The war of the whorls: genetic interactions controlling flower development.Nature, 353:31-37
  • 5Colombo L, Franken J, Koetje E, van Went J, Dons H J M, Angenent G C, van Tunen A J, 1995. The Petunia MADS box gene FBPll determines ovule identity. Plant Cell, 7:1859-1868
  • 6Egea-Cortines M, Saedler H, Sommer H, 1999. Ternary complex formation between the MADS-box proteins SQUAMOSA, DEFICIENS and GLOBOSA is involved in the control of floral architecture in Antirrhinum majus.EMBO J, 18:5370~5379
  • 7Jeon J S, Jang S, Lee S, Nam J, Kim C, Lee S H, Chung Y Y, Kim S R, Lee Y H, Cho Y G, An G, 2000. leafy hull sterilel is a homeotic mutation in a rice MADS box gene affecting rice flower development. Plant Cell, 12:871~884
  • 8Kotilainen M, Elomaa P, Uimari A, Albert V A, Yu D, Teeri T H, 2000. GRCD1, an AGL2-1ike MADS-box gene,participates in the C function during stamen development in Gerbera hybrida. Plant Cell, 12:1893-1902
  • 9Pelaz S, Ditta G S, Baumann E, Wisman E, Yanofsky M F, 2000. B and C floral organ identity functions require SEPALLATA MADS-box genes. Nature, 405:200-203
  • 10Schneitz K, 1999. The molecular and genetic control of ovule development. Curr Opin Plant Biol, 2:13-17

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