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The cell biology of lignification in higher plants

Annals of Botany · 2015 · Vol. 115(7) · pp. 1053–1074
Jaime BarrosHenrik SerkIrene GranlundEdouard Pesquet

Abstract

The lignification process ranges from full autonomy to complete co-operation depending on the cell type. The different roles of lignin for the function of each specific plant cell type are clearly illustrated by the multiple phenotypic defects exhibited by knock-out mutants in lignin synthesis, which may explain why no general mechanism for lignification has yet been defined. The range of phenotypic effects observed include altered xylem sap transport, loss of mechanical support, reduced seed protection and dispersion, and/or increased pest and disease susceptibility.

Plant Gene Expression AnalysisHorticultural and Viticultural ResearchLignin and Wood ChemistryLigninMonolignolBiologyCell wallXylemSecondary cell wallCell typeCellCell biologyBiochemistry

MeSH terms

Cell WallLigninArabidopsisGene Expression Regulation, PlantEmbryophyta

Funding

  • Kempe Foundation
  • Vetenskapsrådet
Citations
691
FWCI
17.63
field-weighted impact
References
239
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100%
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Cited by
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References
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Trends in Plant Science · 2004 · 916 citations
A Large Family of Class III Plant Peroxidases
Plant and Cell Physiology · 2001 · 921 citations
Reactive Oxygen Species Signaling in Response to Pathogens
PLANT PHYSIOLOGY · 2006 · 1,654 citations
ROS as signalling molecules: mechanisms that generate specificity in ROS homeostasis
Nature Reviews Molecular Cell Biology · 2007 · 3,543 citations
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