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花序分生组织特性基因TFL1的系统发育及其功能分析 被引量:7

Phylogenetic Tree and Function Analysis of Inflorescence Meristem Identity Gene TFL1
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摘要 TFL1同源基因在维持植物营养生长和花序分生组织特性方面起着非常重要的作用,其功能的丧失常导致植物提早开花,花序的正常发育受到抑制,最终茎端形成顶花。至今已经有28种植物的TFL1基因被克隆到,其中包括拟南芥、金鱼草和番茄等模式植物。TFL1蛋白的系统发育树基本符合物种的亲缘关系。作为花序分生组织特性基因的TFL1与花分生组织特性基因LFY和AP1相互作用,抑制花序分生组织向花分生组织的转变。TFL1和LFY等基因可用来培育早花新品种,也可用于培育无果的新品种,减少悬铃木、杨、柳等果毛的污染。 TFL1 homologs play important roles in maintaining vegetative growth and inflorescence meristem identity. The plants without the function of this gene usually are flowering earlier. Their normal inflorescence development is inhibited, the inflorescence meristem eventually acquired floral identity, which producing a terminal flower. Up to now, the TFL1 homologs have been isolated from 28 species of plants, including Arabidopsis, Snapdrogen and Tomato. The phylogenic tree of TFL1 proteins is almost accordance with the relative of those plants. The inflorescence identity gene TFL1 interacted with floral meristem identity genes LFY and AP1, so as to retard the transformation from inflorescence identity into floral identity. These meristem identity genes such as TFL1 and LFY can be applied in breeding of earlflowering cultivars, there also have plenty of potentials in breeding fruit-free plantanus, popular or willows.
出处 《中国生物工程杂志》 CAS CSCD 北大核心 2008年第1期106-112,共7页 China Biotechnology
基金 国家"863"计划资助项目(2006AA10Z87)
关键词 TFL1 系统发育树 功能 应用 TFL1 Phylogenic tree Function Application
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参考文献20

  • 1Shannon S, Meeks-Wagner D R. A mutation in the Arabidopsis TFL1 gene affects inflorescence meristem development. The Plant Cell, 1991, 3:877-892
  • 2Bradley D, Carpenter R, Copsey L, et al. Control of inflorescence architecture in Antirrhinum. Nature, 1996,376 : 791 - 797
  • 3Bradley D, Ratcliffe O, Vincent C, et al. Inflorescence commitment and architecture in Arabidopsis. Science, 1997, 275 : 80 - 83
  • 4Esumi T, Tao R, Yonemori K. Isolation of LEAFY and TERMINAL FLOWER 1 homologues from six fruit tree species in the subfamily Maloideae of the Rosaceae. Sex Plant Reprod, 2005, 17:277-287
  • 5Amaya I, Rateliffe O J, Bradley D J. Expression of CENTRORADIALIS (CEN) and CEN-like genes in tobacco reveals a conserved mechanism controlling phase change in diverse species. The Plant Cell, 1999, 11:1405-1417
  • 6Coen E S, Romero J M, Doyle S, et al. FLORICAULA: a homeotic gene required for flower development in Antirrhinum majus. Cell, 1990, 63:1311 -1322
  • 7Ratcliffe O J, Amaya I, Vincent C A, et al. A common mechanism controls the life cycle and architecture of plants. Development, 1998, 125:1609-1615
  • 8Foueher F, Morin J, Courtiade J, et al. DDTERMINATE and LATE FLOWERING are two TERMINAL FLOWER1/CENTRORADIALIS homologs that control two distinct phases of flowering initiation and development in pea. The Plant Cell, 2003, 15:2742-2754
  • 9Guo X Z, Zhao Z, Chen J G, et al. A putative CENTRORADIALIS/TERMINAL FLOWER 1-like gene, Ljcen1, plays a role in phase transition in Lotus japonicus. Journal of Plant Physiology 2006, 163:436 -444
  • 10Carmona M J, Calonje M, Marti'nez-Zapater J M. The FT/TFL1 gene family in grapevine. Plant Mol Biol, 2007, 63:637 - 650

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