Tools for Assessing Cell-Cycle Progression in Plants.


Journal

Plant & cell physiology
ISSN: 1471-9053
Titre abrégé: Plant Cell Physiol
Pays: Japan
ID NLM: 9430925

Informations de publication

Date de publication:
10 Nov 2021
Historique:
received: 08 03 2021
revised: 27 04 2021
accepted: 25 05 2021
pubmed: 23 5 2021
medline: 18 12 2021
entrez: 22 5 2021
Statut: ppublish

Résumé

Estimation of cell-cycle parameters is crucial for understanding the developmental programs established during the formation of an organism. A number of complementary approaches have been developed and adapted to plants to assess the cell-cycle status in different proliferative tissues. The most classical methods relying on metabolic labeling are still very much employed and give valuable information on cell-cycle progression in fixed tissues. However, the growing knowledge of plant cell-cycle regulators with defined expression pattern together with the development of fluorescent proteins technology enabled the generation of fusion proteins that function individually or in conjunction as cell-cycle reporters. Together with the improvement of imaging techniques, in vivo live imaging to monitor plant cell-cycle progression in normal growth conditions or in response to different stimuli has been possible. Here, we review these tools and their specific outputs for plant cell-cycle analysis.

Identifiants

pubmed: 34021583
pii: 6280789
doi: 10.1093/pcp/pcab066
pmc: PMC8579159
doi:

Substances chimiques

Fluorescent Dyes 0

Types de publication

Journal Article Review

Langues

eng

Sous-ensembles de citation

IM

Pagination

1231-1238

Subventions

Organisme : Ministerio de Ciencia e Innovación
ID : BIO2017-92329-EXP
Organisme : MCEI and Fondo Europeo de Desarrollo Regional FEDER
ID : RTI2018-094793-B-I00
Organisme : European Research Council
ID : 2018-AdG_833617
Pays : International
Organisme : Banco de Santander and Fundación Ramon Areces

Informations de copyright

© The Author(s) 2021. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists.

Références

New Phytol. 2016 Sep;211(4):1462-9
pubmed: 27121010
Enzymes. 2016;39:231-54
pubmed: 27241932
Proc Natl Acad Sci U S A. 2021 Feb 9;118(6):
pubmed: 33526654
Plant Physiol. 2007 May;144(1):105-20
pubmed: 17351056
Plant J. 2006 Nov;48(4):619-27
pubmed: 17087761
Wiley Interdiscip Rev Dev Biol. 2015 Sep-Oct;4(5):469-87
pubmed: 25827130
PLoS One. 2015 Feb 11;10(2):e0117459
pubmed: 25671308
Proc Natl Acad Sci U S A. 2012 Apr 3;109(14):5370-5
pubmed: 22431625
Curr Biol. 2009 Jul 28;19(14):1194-9
pubmed: 19576770
Plant J. 2014 Nov;80(3):541-52
pubmed: 25158977
Proc Natl Acad Sci U S A. 2011 Dec 20;108(51):20404-9
pubmed: 22143759
Nat Plants. 2020 Nov;6(11):1330-1334
pubmed: 32989288
Trends Cell Biol. 2007 Dec;17(12):580-5
pubmed: 17997094
Science. 2003 Apr 4;300(5616):91-6
pubmed: 12677059
Plant Cell. 2002 Apr;14(4):903-16
pubmed: 11971144
Cell. 2008 Feb 8;132(3):487-98
pubmed: 18267078
PLoS Genet. 2012;8(5):e1002658
pubmed: 22570629
Front Plant Sci. 2019 Aug 02;10:1000
pubmed: 31428118
Hum Genet. 1998 Feb;102(2):241-51
pubmed: 9521598
Curr Biol. 2010 Dec 7;20(23):2137-43
pubmed: 21093266
Cytometry A. 2013 Nov;83(11):979-88
pubmed: 24115313
Plant Cell. 2011 Dec;23(12):4382-93
pubmed: 22167058
Front Plant Sci. 2020 Aug 28;11:1275
pubmed: 32983190
Methods Mol Biol. 2015;1242:93-103
pubmed: 25408447
Plant Cell. 2016 Jun;28(6):1361-71
pubmed: 27207857
Sci Rep. 2016 Jul 15;6:29657
pubmed: 27417498
Trends Cell Biol. 2013 Jul;23(7):345-56
pubmed: 23566594
Nat Methods. 2016 Dec;13(12):993-996
pubmed: 27798610
Plant Cell. 2001 Mar;13(3):495-509
pubmed: 11251092
Plant Physiol. 2006 Jan;140(1):67-80
pubmed: 16361519
EMBO J. 2016 Oct 4;35(19):2068-2086
pubmed: 27497297
Trends Biochem Sci. 2017 Feb;42(2):111-129
pubmed: 27814948
Plant J. 1999 Nov;20(4):503-8
pubmed: 10607302
Proc Natl Acad Sci U S A. 2009 Dec 8;106(49):20984-8
pubmed: 19933334
PLoS Biol. 2013 Nov;11(11):e1001724
pubmed: 24302889
Nat Commun. 2017 Apr 27;8:15060
pubmed: 28447614
Plant Methods. 2019 Mar 25;15:30
pubmed: 30988691
Sci Rep. 2013 Oct 14;3:2723
pubmed: 24121463
J Cell Sci. 2018 Jan 29;131(2):
pubmed: 28483825
Arabidopsis Book. 2009;7:e0120
pubmed: 22303246
Proc Natl Acad Sci U S A. 1957 Jan 15;43(1):122-8
pubmed: 16589984
Nat Methods. 2012 Apr 01;9(5):483-5
pubmed: 22466793
Proc Natl Acad Sci U S A. 2008 Feb 19;105(7):2415-20
pubmed: 18272492
Plant Cell. 2004 Sep;16(9):2380-93
pubmed: 15316110
J Exp Bot. 2016 Nov;67(21):6077-6087
pubmed: 27697785
Chembiochem. 2014 Apr 14;15(6):789-93
pubmed: 24644275
Curr Biol. 2007 Dec 4;17(23):2047-53
pubmed: 17997308

Auteurs

Clara Echevarría (C)

Department of Genome Dynamics and Function, Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Nicolás Cabrera 1, Madrid 28049, Spain.

Crisanto Gutierrez (C)

Department of Genome Dynamics and Function, Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Nicolás Cabrera 1, Madrid 28049, Spain.

Bénédicte Desvoyes (B)

Department of Genome Dynamics and Function, Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Nicolás Cabrera 1, Madrid 28049, Spain.

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Classifications MeSH