期刊文献+

植物类病变突变体及其信号传导途径 被引量:4

Plant Lesion Mimic Mutants and Their Signaling Pathways
在线阅读 下载PDF
导出
摘要 植物类病变突变体是研究细胞程序性死亡和防卫反应的理想材料。越来越多的研究表明,类病变突变体易受环境因子和遗传背景的影响。本文综述了植物类病变突变体的发生机制及相关的信号传导途径,以期对植物超敏反应的研究提供有益的借鉴。 Lesion mimic mutants (LMM) are ideal tools defense response. A growing body of evidence suggests genetic background. In this paper, we presented the signaling pathways as to provide some useful references to dissect various aspects of programmed cell death (PCD) and their phenotype is easily influenced by environmental factors and mechanism of lesion mimic formation and progress on defense for the study of hypersensitive response in plant.
出处 《核农学报》 CAS CSCD 北大核心 2014年第10期1811-1818,共8页 Journal of Nuclear Agricultural Sciences
基金 国家转基因重大专项抗病转基因水稻新品种培育课题(2011ZX08001-002) 国家科技支撑计划水稻新品种培育与扩繁课题(2011BAD35B02)
关键词 类病变 超敏反应 细胞程序性死亡 信号传导 Lesion mimic Hypersensitive response Programmed cell death Signaling pathway
  • 相关文献

参考文献54

  • 1Johal G S, Hulbert S H, Briggs S P. Disease lesion mimics of maize: a model for cell death in plants[ J]. Bioessays, 1995, 17 (8): 685-692.
  • 2Lorrain S, Vailleau F, Balague C, Roby D. Lesion mimic mutants: keys for deciphering cell death and defense pathways in plants [ J ]. Trends in Plant Science, 2003, 8(6) : 263 -271.
  • 3Yamanouchi U, Yano M, Lin H X, Ashikari M, Yamada K. A riee spotted leaf gene, Spl7, encodes a heat stress transcription factor protein[ J]. Proceeding of the National Academy of the United States of America, 2002, 99(11 ): 7530-7535.
  • 4Zeng L R, Qu S H, Bordeos A, Yang C W, Baraoidan M, Yan H Y, Xie Q, Nahm B H, Leung H, Wang G L. Spotted leafll , a negative regulator of plant cell death and defense, encodes a u-Box/ armadillo repeat protein endowed with E3 Ubiquitin ligase activity [J]. The Plant Cell, 2004, 16(10) : 2795 -2808.
  • 5Qiao Y L, Jiang W Z, Lee J H, Park B B, Choi M S, Piao R H, Woo M O, Roh J H, Han L Z,Paek N C, Seo H S, Koh H J. SPL28 encodes a clathrin-associated adaptor protein complex 1, medium subunit ul ( API M1 ) and is responsible for spotted leaf and early senescence in rice (Oryza sativa) [ J ]. New Phytologist, 2010, 185(1) : 258 -274.
  • 6Chen X F, Hao L, Pan J W, Zheng X X, Jiang G H, Jin Y, Gu Z M, Qian Q, Zhai W X, Ma B J. SPL5, a cell death and defense- related gene, encodes a putative splicing factor 3b subanit 3 (SF3b3) in rice[J]. Molecular Breeding, 2012, 30(2): 939- 949.
  • 7Mittler R, Rizhsky L. Transgene-lnduced lesion mimic [ J]. Plant Molecular Biology, 2000, 44(3 ) : 335 - 344.
  • 8刘道峰,程祝宽,刘国庆,刘国振,王赟,赵显峰,朱立煌.水稻类病变突变体lmi的鉴定及其基因定位[J].科学通报,2003,48(8):831-835. 被引量:21
  • 9王建军,张礼霞,王林友,张利华,竺朝娜,何祖华,金庆生,范宏环,于新.水稻类病变(Lesion Resembling Disease)突变体对光照和温度的诱导反应[J].中国农业科学,2010,43(10):2039-2044. 被引量:12
  • 10Genoud T, Millar A J, Nishizawa N, Kay S A, Schafer E, Nagatani A, Chua N H. An arabidopsis mutant hypersensitive to red and far- Red light signals[ J]. The Plant Cell, 1998, 10(6) : 889 -904.

二级参考文献65

  • 1CHENGZhakuan,GUMingkang.Morphology and inheritance of a new rice leaf death mutant[J].Chinese Rice Research Newsletter,1998,6(3):2-2. 被引量:6
  • 2王丽娟,田颖川,何朝族.新基因水稻OsLSD1的克隆及拟南芥和水稻类LSD1基因家族的生物信息学分析[J].生物化学与生物物理进展,2005,32(3):268-274. 被引量:17
  • 3王忠华.植物类病变突变体的诱发与突变机制[J].细胞生物学杂志,2005,27(5):530-534. 被引量:11
  • 4Urquhart W, Gunawardena A H, Moedcr W, Ali R, Bcrkowitz G A, Yoshioka K. The chimeric cyclic nucleotidc-gated ion channel ATCNGC11/12 constitutively reduces programmed.cell death in a Ca2+ dependent manner. Plant Molecular Biology, 2007, 65: 747-761.
  • 5Reddy A S N. Calcium: Silver bullet in signaling. Plant Science, 2001, 160: 381-404.
  • 6Lorrain S, Vailleau F, Balague C, Roby D. Lesion mimic mutants: Keys for deciphering cell death and defense pathways in plants? Trends in Plant Science, 2003, 8: 263-271.
  • 7Yamanouchi U, Yano M, Lin H, Ashikari M, Yamada K. A rice spotted leaf gene, Sp17, encodes a heat stress transcription factor protein. Proceedings of the National Academy of Sciences of the USA, 2002, 99: 7530-7535.
  • 8Takahashi A, Kawasaki T, Henmi K, ShiI K, Kodama O, Satoh H, Shimamoto K. Lesion mimic mutants of rice with alterations in early singaling events of defense. The Plant Journal, 1999, 17: 535-545.
  • 9Yin Z C, Chen J, Zeng L, Goh M, Leung H, Khush G S, Wang G L. Characterizing rice lesion mimic mutants and identifying a mutant with broad-spectrum resistance to rice blast and bacterial blight. Molecular Plant-Microbe Interactions, 2000, 13: 869-876.
  • 10Wu C, Bordeos A, Madamba M R, Baraoidan M, Ramos M, Wang G L, Leach J E, Leung H. Rice lesion mimic mutants with enhanced resistance to diseases. Molecular Genetics Genomics, 2008, 279: 605-619.

共引文献56

同被引文献64

  • 1沈瑛,朱培良,袁筱萍,M.Levy,M.Decker,N.Talbot,J.E.Hamer.中国稻瘟病菌的遗传多样性[J].植物病理学报,1993,23(4):309-313. 被引量:58
  • 2郭龙彪,储成才,钱前.水稻突变体与功能基因组学[J].植物学通报,2006,23(1):1-13. 被引量:54
  • 3Lorrain S, Vailleau F, Balagué C, Roby D. Lesion mimic mutants: keys for deciphering cell death and defense pathways in plants? [J]. Trends in Plant Science, 2003, 8(6): 263-271.
  • 4FAO/IAEA, Mutant Variety Database [DB/OL]. (2014-10-05)[2015-10-5].http://mvgs.iaea. org/About Mutant Varities. aspx.
  • 5Nurul M, Devendra P, Hyun B, Sun L, Heon L, Duck K, Gu K. Phenotypic and genotypic analysis of rice lesion mimic mutants[J]. The Plant Pathology Journal, 2010, 26(2): 159-169.
  • 6Qiao Y, Jiang W, Lee J, Park B, Choi M S, Piao R, Woo M O, Roh J H, Han L Z, Paek N C, Seo S H, Koh H J. Spl28 encodes a clathrin-associated adaptor protein complex 1, medium subunit μ1 (AP1M1) and is responsible for spotted leaf and early senescence in rice ( Oryza sativa )[J]. New Phytologist, 2009, 185(1): 258-274.
  • 7Undan J, Tamiru M, Abe A, Yoshida K, Kosugi S, Takagi H, Yoshida K, Kanzaki H, Saitoh H, Fekih R, Sharma S, Undan J, Yano M, Terauchi R . Mutation in OsLMS, a gene encoding a protein with two double-stranded RNA binding motifs, causes lesion mimic phenotype and early senescence in rice ( Oryza sativa )[J]. Genes Genetic System, 2012, 87(3):169-179.
  • 8Marchetti M, Bollich C, Uecker F. Spontaneous occurrence of the Sekiguchi lesion in two American rice lines: its induction, inheritance, and utilization[J]. Genetics, 1983, 73(4): 603-606.
  • 9Ueno M, Shibata H, Kihara J, Honda Y, Arase S. Increased tryptophan decarboxylase and monoamine oxidase activities induces Sekiguchi lesion formation in rice infected with Magnaporthe grisea [J]. The Plant Journal, 2003, 36(2): 215-225.
  • 10Arase S, Fukuyama R, Honda Y. Light-dependent inducetion of Sekiguchi lesion formation by Bipolaris oryzae in rice cv. Sekiguchi-asahi[J]. Journal of Phytopathology, 2000, 148(4): 193-196.

引证文献4

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部