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水稻光敏色素相互作用因子基因OsPIL11的表达模式及其在光信号传导中作用的初步分析 被引量:4

Expression Patterns of OsPIL11,a Phytochrome-interacting Factor in Rice,and Preliminary Analysis of Its Roles in Light Signal Transduction
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摘要 分析了OsPIL11基因(6个潜在的PIF转录因子之一)的表达模式,结果表明OsPIL11在水稻中的表达具有器官特异性,并且受叶片发育、脱落酸、茉莉酮酸和水杨酸调控。为了进一步分析OsPIL11在植物光信号传导中的作用,构建了OsPIL11基因的过量表达载体,并将其转化至烟草。通过比较转基因和野生型烟草植株幼苗在红光和远红光下的光形态建成特征,发现红光下生长的OsPIL11转基因烟草下胚轴较短、真叶和子叶较大;然而在远红光下,转基因和野生型烟草植株的表型没有差异。这些结果表明,OsPIL11参与红光诱导的幼苗去黄化反应,但是不参与远红光诱导的幼苗去黄化反应。 The expression patterns of OsPILll one of six putative phytochrome-interacting lactors (PIPs), were analyzed, revealing that expression of OsPILllwas organ-specific and regulated by leaf development, ABA, JA and SA. To further explore the role of OsPILll in plant light signal transduction, plant expression vector of OsPILll was constructed and introduced into tobacco(Nicotiana tabacum). In continuous red light(R), OsPILll overexpressed transgenic lines exhibited shorter hypocotyls and larger cotyledons and leaves compared to wild-type seedlings. While in continuous faired light(FR), either transgenic or wild-type seedlings showed similar phenotypes. These results indica ted that OsPILll was involved in R-induced de etiolation, but not in FR-induced de-etiolation in transgenic tobacco.
出处 《中国水稻科学》 CAS CSCD 北大核心 2012年第3期255-260,共6页 Chinese Journal of Rice Science
基金 国家自然科学基金资助项目(30971744 31171182) 河南省科技创新杰出青年计划资助项目(104100510012)
关键词 水稻 光敏色素相互作用因子 转基因烟草 光信号传导 rice phytochromeqnteracting factor transgenic tobacco light signal transduction
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  • 1刘明,赵琦,王小菁,赵玉锦,童哲.植物的光受体及其调控机制的研究[J].生物学通报,2005,40(5):10-12. 被引量:20
  • 2周波,李玉花.植物的光敏色素与光信号转导[J].植物生理学通讯,2006,42(1):134-140. 被引量:15
  • 3Alabadi D, Oyama T, Yanovsky M J, Harmon FG, Mas P, Kay SA(2001). Reciprocal regulation between TOC1 and LHY/ CCA1 within the Arabidopsis circadian clock. Science, 293: 880-883 被引量:1
  • 4Al-Sady B, Ni W, Kircher S, Schafer E, Quail PH (2006). Photoactivated phytochrome induces rapid PIF3 phosphorylation prior to proteasome-mediated degradation. Mol Cell, 23:439-446 被引量:1
  • 5Bailey PC, Martin C, Toledo-Ortiz G, Quail PH, Huq E, Heim MA, Jakoby M, Werber M, Weisshaar B (2003). Update on the basic helix-loop-helix transcription factor gene family in Arabidopsis thaliana. Plant Cell, 15 (11): 2497-2502 被引量:1
  • 6Bauer D, Viczian A, Kircher S, Nobis T, Nitschke R, Kunkel T, Panigrahi KC, Adam E, Fejes E, Schafer E et al (2004). Constitutive photomorphogenesis 1 and multiple photoreceptors control degradation of phytochrome interacting factor 3, a transcription factor required for light signaling in Arabidopsis. Plant Cell, 16:1433-1445 被引量:1
  • 7Duek PD, Fankhauser C (2003). HFR1, a putative bHLH transcription factor, mediates both phytochrome A and cryptochrome signaling. Plant J, 34:827-836 被引量:1
  • 8Fairchild CD, Schumaker MA, Quail PH (2000). HFR1 encodes an atypical bHLH protein that acts in phytochrome a signal transduction. Genes Dev, 14:2377-2391 被引量:1
  • 9Franklin KA, Whitelam GC (2004). Light signals, phytochromes and cross-talk with other environmental cues. J Exp Bot, 55:271-276 被引量:1
  • 10Fujimori T, Yamashino T, Kato T, Mizuno T (2004). Circadiancontrolled basic/helix-loop-helix factor, PIL6, implicated in light-signal transduction in Arabidopsis thaliana. Plant Cell Physiol, 45:1078-1086 被引量:1

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