期刊文献+

SDG714 Regulates Specific Gene Expression and Consequently Affects Plant Growth via H3K9 Dimethylation 被引量:5

SDG714 Regulates Specific Gene Expression and Consequently Affects Plant Growth via H3K9 Dimethylation
原文传递
导出
摘要 Histone lysine methylation is known to be involved in the epigenetic regulation of gene expression in all eukaryotes including plants. Here we show that the rice SDG714 is primarily responsible for dimethylation but not trimethylaUon on histone H3K9 in vivo. Overexpression of YFP-SDG714 in Arabidopsis significantly inhibits plant growth and this inhibition is associated with an enhanced level of H3K9 dimethylation. Our microarray results show that many genes essential for the plant growth and development were downregulated in transgenic Arabidopsis plants overexpressing YFP-SDG714. By chromatin immunoprecipitation analysis, we show that YFP-SDG714 is targeted to specific chromatin regions and dimethylate the H3Kg, which is linked with heterochromatinization and the downregulation of genes. Most interestingly, when YFP-SDG714 production is stopped, the inhibited plants can partially restore their growth, suggesting that the perturbation of gene expression caused by YFP-SDG714 is revertible. Taken together, our results point to an important role of SDG714 in H3K9 dimethylation, suppression of gene expression and plant growth, and provide a potential method to regulate gene expression and plant development by an on-off switch of SDG714 expression. Histone lysine methylation is known to be involved in the epigenetic regulation of gene expression in all eukaryotes including plants. Here we show that the rice SDG714 is primarily responsible for dimethylation but not trimethylaUon on histone H3K9 in vivo. Overexpression of YFP-SDG714 in Arabidopsis significantly inhibits plant growth and this inhibition is associated with an enhanced level of H3K9 dimethylation. Our microarray results show that many genes essential for the plant growth and development were downregulated in transgenic Arabidopsis plants overexpressing YFP-SDG714. By chromatin immunoprecipitation analysis, we show that YFP-SDG714 is targeted to specific chromatin regions and dimethylate the H3Kg, which is linked with heterochromatinization and the downregulation of genes. Most interestingly, when YFP-SDG714 production is stopped, the inhibited plants can partially restore their growth, suggesting that the perturbation of gene expression caused by YFP-SDG714 is revertible. Taken together, our results point to an important role of SDG714 in H3K9 dimethylation, suppression of gene expression and plant growth, and provide a potential method to regulate gene expression and plant development by an on-off switch of SDG714 expression.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2010年第4期420-430,共11页 植物学报(英文版)
基金 supported by the National Natural Science Foundation of China (30800629 and 30628004) the National Talent Training Fund in Basic Research of China (J0630643) Shanghai Educational Development Foundation (2007CG06) the Specialized Research Fund for the Doctoral Program of Higher Education (for the New Teachers) supported by the Scientific Research Foundation for the Returned Overseas Chinese Scholars,State Education Ministry
  • 相关文献

参考文献25

  • 1Ausio J,Abbott DW,Wang X,Moore SC (2001) Histone variants and histone modifications:a structural perspective.Biochem.Cell Biol.79,693-708.
  • 2Cowell IG,Aucott R,Mahadevaiah SK,Burgoyne PS,Huskisson N,Bongiorni S,Prantera G,Fanti L,Pimpinelli S,Wu R,Gilbert DM,Shi W,Fundele R,Morrison H,Jeppesen P,Singh PB (2002) Heterochromatin,HP1 and methylation at lysine 9 of histone H3 in animals.Chromosoma 111,22-36.
  • 3Ding B,Zhu Y,Gao J,Yu Y,Cao K,Shen WH,Dong A (2007a) Molecular characterization of three rice SET-domain proteins.Plant Sci.172,1072-1078.
  • 4Ding Y,Wang X,Su L,Zhai J,Cao S,Zhang D,Liu C,Bi Y,Qian Q,Cheng Z,Chu C,Cao X (2007b) SDG714,a histone H3K9 methyltransferase,is involved in Tos17 DNA methylation and transposition in rice.Plant Cell 19,9-22.
  • 5Ebbs ML,Bender J (2006) Locus-specific control of DNA methylation by the Arabidopsis SUVH5 histone methyltransferase.Plant Cell 18,1166-1176.
  • 6Ebbs ML,Bartee L,Bender J (2005) H3 lysine 9 methylation is maintained on a transcribed inverted repeat by combined action of SUVH6 and SUVH4 methyltransferases.Mol.Cell Biol.25,10507-10515.
  • 7Fischer A,Hofmann I,Naumann K,Reuter G (2006) Heterochromatin proteins and the control of heterochromatic gene silencing in Arabidopsis.J.Plant Physiol.163,358-368.
  • 8Jackson JP,Lindroth AM,Cao X,Jacobsen SE (2002) Control of CpNpG DNA methylation by the KRYPONITE histone H3 methyltransferase.Nature 416,556-560.
  • 9Lachner M,O'Sullivan RJ,Jenuwein T (2003) An epigenetic road map for histone lysine methylation.J.Cell Sci.116,2117-2124.
  • 10Liu S,Yu Y,Ruan Y,Meyer D,Wolff M,Xu L,Wang N,Steinmetz A,Shen WH (2007) Plant SET-and RING-associated domain proteins in heterochromatinization.Plant J.52,914-926.

同被引文献27

引证文献5

二级引证文献11

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