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Phase separation in plants:New insights into cellular compartmentalization 被引量:7

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摘要 A fundamental challenge for cells is how to coordinate various biochemical reactions in space and time. To achieve spatiotemporal control, cells have developed organelles that are surrounded by lipid bilayer membranes. Further, membraneless compartmentalization, a process induced by dynamic physical association of biomolecules through phase transition offers another efficient mechanism for intracellular organization. While our understanding of phase separation was predominantly dependent on yeast and animal models, recent findings have provided compelling evidence for emerging roles of phase separation in plants. In this review, we first provide an overview of the current knowledge of phase separation, including its definition, biophysical principles, molecular features and regulatory mechanisms. Then we summarize plant-specific phase separation phenomena and describe their functions in plant biological processes in great detail. Moreover, we propose that phase separation is an evolutionarily conserved and efficient mechanism for cellular compartmentalization which allows for distinct metabolic processes and signaling pathways, and is especially beneficial for the sessile lifestyle of plants to quickly and efficiently respond to the changing environment.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2021年第11期1835-1855,共21页 植物学报(英文版)
基金 This study was supported by the National Key Research and Development Program(2020YFA0907600) the National Natural Science Foundation of China(U2004204) the 111 Project(#D16014,Q.W.) the Outstanding Talents Fund of Henan University,China.
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  • 1Xinxin Zhang,Yilong Yao,Jinghua Han,Yalan Yang,Yun Chen,Zhonglin Tang,Fei Gao.Longitudinal epitranscriptome profiling reveals the crucial role of N^(6)-methyladenosine methylation in porcine prenatal skeletal muscle development[J].Journal of Genetics and Genomics,2020,47(8):465-476. 被引量:9
  • 2Benkova 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.
  • 3Clark SE (2001) Cell signalling at the shoot meristem.Nat.Rev.Mol.Cell Biol.2,276-84.
  • 4Clark SE,Jacobsen SE,Levin JZ,Meyerowitz EM (1996) The CLAVATA and SHOOT MERISTEMLESS loci competitively regulate meristem activity in Arabidopsis.Development 122,1567-75.
  • 5de Reuille PB,Bohn-Courseau I,Godin C,Traas J (2005) A protocol to analyse cellular dynamics during plant development.Plant J.44,1045-53.
  • 6Endrizzi 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.
  • 7Fletcher JC,Meyerowitz EM (2000) Cell signaling within the shoot meristem.Curr.Opin.Plant Biol.3,23-30.
  • 8Gallois JL,Woodward C,Reddy GV,Sablowski R (2002) Combined SHOOT MERISTEMLESS and WUSCHEL trigger ectopic organo-genesis in Arabidopsis.Development 129,3207-3217.
  • 9Gordon 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.
  • 10Gordon 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.

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