期刊文献+

PIF3 Is Involved in the Primary Root Growth Inhibition of Arabidopsis Induced by Nitric Oxide in the Light 被引量:3

PIF3 Is Involved in the Primary Root Growth Inhibition of Arabidopsis Induced by Nitric Oxide in the Light
原文传递
导出
摘要 PHYTOCHROME INTERACTING FACTOR3 (PIF3) is an important component in the phytochrome signaling pathway and mediates plant responses to various environmental conditions. We found that PIF3 is involved in the inhibition of root growth of Arabidopsis thaliana seedlings induced by nitric oxide (NO) in light. Overexpression of PIF3 partially alleviated the inhibitory effect of NO on root growth, whereas the pif3-1 mutant displayed enhanced sensitivity to NO in terms of root growth. During phytochrome signaling, the photoreceptor PHYB mediates the degradation of PIF3. We found that the phyB-9 mutant had a similar phenotype to that of PIF3ox in terms of responsiveness to NO. Furthermore, NO treatment promoted the accumulation of PHYB, and thus reduced PIF3 content. Our results further show that the activity of PIF3 is regulated by the DELLA protein RGL3[RGA (repressor of gal-3) LIKE 3]. Therefore, we speculate that PIF3 lies downstream of PHYB and RGL3, and plays an important role in the inhibitory effect of NO on root growth of Arabidopsis seedlings in light. PHYTOCHROME INTERACTING FACTOR3 (PIF3) is an important component in the phytochrome signaling pathway and mediates plant responses to various environmental conditions. We found that PIF3 is involved in the inhibition of root growth of Arabidopsis thaliana seedlings induced by nitric oxide (NO) in light. Overexpression of PIF3 partially alleviated the inhibitory effect of NO on root growth, whereas the pif3-1 mutant displayed enhanced sensitivity to NO in terms of root growth. During phytochrome signaling, the photoreceptor PHYB mediates the degradation of PIF3. We found that the phyB-9 mutant had a similar phenotype to that of PIF3ox in terms of responsiveness to NO. Furthermore, NO treatment promoted the accumulation of PHYB, and thus reduced PIF3 content. Our results further show that the activity of PIF3 is regulated by the DELLA protein RGL3[RGA (repressor of gal-3) LIKE 3]. Therefore, we speculate that PIF3 lies downstream of PHYB and RGL3, and plays an important role in the inhibitory effect of NO on root growth of Arabidopsis seedlings in light.
出处 《Molecular Plant》 SCIE CAS CSCD 2014年第4期616-625,共10页 分子植物(英文版)
关键词 nitric oxide PIF3 PHYB RGL3 root growth inhibition. nitric oxide PIF3 PHYB RGL3 root growth inhibition.
  • 相关文献

参考文献46

  • 1Abramoff, M.D. Magalhaes, RJ. and Ram, S.J. (2004). Image processing with ImageJ. Biophotonics Int. 11, 36-42.
  • 2Achard, P. Liao, L. Jiang, C. Desnos, T. Bartlett, J. Fu, X. and Harberd, N.R (2007). DELLAs contribute to plant photomorpho- genesis. Plant Physiol. 143, 1163-1172.
  • 3Alabadi, D. and Blazquez, M. (2009). Molecular interactions between light and hormone signaling to control plant growth. Plant Mol. BioL 69, 409-417.
  • 4Bai, S. Li, M. Yao, T. Wang, H. Zhang, Y. Xiao, L. Wang, J. Zhang, Z. Hu, Y. Liu, W. et al. (2012). Nitric oxide restrain root growth by DNA damage induced cell cycle arrest in Arabidopsis tha/iana. Nitric Oxide. 26, 54-60.
  • 5Bauer, D. Viczian, A. Kircher, S. Nobis, T. Nitschke, R. Kunkel, T. Panigrahi, K.C.S. Eva, A. Erzsebet, Fo, Schefer, E. et al. (2004). Constitutive photomorphogenesis 1 and multiple photorecep- tots control degradation of phytochrome interacting factor 3, a transcription factor required for light signaling in Arabidopsis. Plant Cell. 16. 1433-1445.
  • 6Castillon, A. Shen, H. and Huq, E. (2007). Phytochrome inter- acting factors: central players in phytochrome-mediated light signaling networks. Trends Plant Sci. 12, 514-521.
  • 7Clark, J.B. Maddison, W.R, and Kidwell, M.G. (1994). Phylogenetic analysis supports horizontal transfer of P transposable ele- ments. Mol. Biol. Evol. 11, 40-50.
  • 8Correll, M.J. and Kiss, J.Z. (2005). The roles of phytochromes in elongation and gravitropism of roots. Plant Cell Physiol. 46, 317-323.
  • 9Crawford, N.M. and Guo, F.Q. (2005). New insights into nitric oxide metabolism and regulatory functions. Trends Plant Sci. 10, 195-200.
  • 10de Lucas, M. Daviere, J.M. Rodriguez-Falcon, M. Pontin, M. Iglesias-Pedraz, J.M. Lorrain, S. Fankhauser, C. Blazquez, M.A. Titarenko, E. and Prat, S. (2008). A molecular framework for light and gibberellin control of cell elongation. Nature. 451, 480-484.

同被引文献19

引证文献3

二级引证文献7

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