期刊文献+

Dynamic Actin Controls Polarity Induction de novo in Protoplasts 被引量:1

Dynamic Actin Controls Polarity Induction de novo in Protoplasts
原文传递
导出
摘要 Cell polarity and axes are central for plant morphogenesis. To study how polarity and axes are induced de novo, we investigated protoplasts of tobacco Nicotiana tabacum cv. BY-2 expressing fluorescently- tagged cytoskeletal markers. We standardized the system to such a degree that we were able to generate quantitative data on the temporal patterns of regeneration stages. The synthesis of a new cell wall marks the transition to the first stage of regeneration, and proceeds after a long preparatory phase within a few minutes. During this preparatory phase, the nucleus migrates actively, and cytoplasmic strands remodel vigorously. We probed this system for the effect of anti-cytoskeletal compounds, inducible bundling of actin, RGD-peptides, and temperature. Suppression of actin dynamics at an early stage leads to aberrant tripolar cells, whereas suppression of microtubule dynamics produces aberrant sausage- like cells with asymmetric cell walls. We integrated these data into a model, where the microtubular cytoskeleton conveys positional information between the nucleus and the membrane controlling the release or activation of components required for cell wall synthesis. Cell wall formation is followed by the induction of a new cell pole requiring dynamic actin filaments, and the new cell axis is manifested as elongation growth perpendicular to the orientation of the aligned cortical microtubules. Cell polarity and axes are central for plant morphogenesis. To study how polarity and axes are induced de novo, we investigated protoplasts of tobacco Nicotiana tabacum cv. BY-2 expressing fluorescently- tagged cytoskeletal markers. We standardized the system to such a degree that we were able to generate quantitative data on the temporal patterns of regeneration stages. The synthesis of a new cell wall marks the transition to the first stage of regeneration, and proceeds after a long preparatory phase within a few minutes. During this preparatory phase, the nucleus migrates actively, and cytoplasmic strands remodel vigorously. We probed this system for the effect of anti-cytoskeletal compounds, inducible bundling of actin, RGD-peptides, and temperature. Suppression of actin dynamics at an early stage leads to aberrant tripolar cells, whereas suppression of microtubule dynamics produces aberrant sausage- like cells with asymmetric cell walls. We integrated these data into a model, where the microtubular cytoskeleton conveys positional information between the nucleus and the membrane controlling the release or activation of components required for cell wall synthesis. Cell wall formation is followed by the induction of a new cell pole requiring dynamic actin filaments, and the new cell axis is manifested as elongation growth perpendicular to the orientation of the aligned cortical microtubules.
机构地区 Botanical Institute
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2013年第2期142-159,共18页 植物学报(英文版)
基金 supported by funds from the Sino-German Center for Research Promotion, GZ 614 "Probing the Self-Organization of Plant Cells by Micropattern and Microfluidics"
关键词 ACTIN axis formation MICROTUBULES polarity induction tobacco BY-2 protoplasts. Actin axis formation microtubules polarity induction tobacco BY-2 protoplasts.
  • 相关文献

参考文献2

二级参考文献40

  • 1Benkova E,Michniewicz M,Sauer M,Teichmann T,Seifertova D,Jürgens G,Friml J (2003) Local,efflux-dependent auxin gradients as a common module for plant organ formation.Cell 115,591-602.
  • 2Clark SE (2001) Cell signalling at the shoot meristem.Nat.Rev.Mol.Cell Biol.2,276-84.
  • 3Clark SE,Jacobsen SE,Levin JZ,Meyerowitz EM (1996) The CLAVATA and SHOOT MERISTEMLESS loci competitively regulate meristem activity in Arabidopsis.Development 122,1567-75.
  • 4de Reuille PB,Bohn-Courseau I,Godin C,Traas J (2005) A protocol to analyse cellular dynamics during plant development.Plant J.44,1045-53.
  • 5Endrizzi K,Mousslan B,Haecker A,Levin JZ,Laux T (1996) The SHOOT MERISTEMLESS gene is required for maintenance of undifferentiated cells in Arabidopsis shoot and floral meristems and acts at a different regulatory level than the meristem genes WUSCHEL and ZWILLE.Plant J.10,967-79.
  • 6Fletcher JC,Meyerowitz EM (2000) Cell signaling within the shoot meristem.Curr.Opin.Plant Biol.3,23-30.
  • 7Gallois JL,Woodward C,Reddy GV,Sablowski R (2002) Combined SHOOT MERISTEMLESS and WUSCHEL trigger ectopic organo-genesis in Arabidopsis.Development 129,3207-3217.
  • 8Gordon SP,Chickarmane VS,Ohno C,Meyerowitz EM (2009) Multiple feedback loops through cytokinin signaling control stem cell number within the Arabidopsis shoot meristem.Proc.Natl.Acad.Sci.USA 106,16529-16534.
  • 9Gordon SP,Heisler MG,Reddy GV,Ohno C,Das P,Meyerowitz EM (2007) Pattern formation during de novo assembly of the Arabidopsis shoot meristem.Development 134,3539-3548.
  • 10Grandjean O,Vernoux T,Laufs P,Belcram K,Mlzukami Y,Traas J (2004) In vivo analysis of cell division,cell growth,and differentiation at the shoot apical meristem in Arabidopsis.Plant Cell 16,74-87.

共引文献33

同被引文献4

引证文献1

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