4.6 Article

Complete substitution of a secondary cell wall with a primary cell wall in Arabidopsis

Journal

NATURE PLANTS
Volume 4, Issue 10, Pages 777-783

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41477-018-0260-4

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Funding

  1. JST ALCA program [JPMJAL1107]
  2. German Research Foundation (DFG) [344523413]
  3. University of Melbourne R@MAP Professorship
  4. ARC [FT160100218]
  5. UoM IRRTF RNC [501892]
  6. NSERC Discovery Grant

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The bulk of a plant's biomass, termed secondary cell walls, accumulates in woody xylem tissues and is largely recalcitrant to biochemical degradation and saccharificationl. By contrast, primary cell walls, which are chemically distinct, flexible and generally unlignified 2 , are easier to deconstruct. Thus, engineering certain primary wall characteristics into xylem secondary walls would be interesting to readily exploit biomass for industrial processing. Here, we demonstrated that by expressing AP2/ERF transcription factors from group Illd and Ille in xylem fibre cells of mutants lacking secondary walls, we could generate plants with thickened cell wall characteristics of primary cell walls in the place of secondary cell walls. These unique, newly formed walls displayed physicochemical and ultrastructural features consistent with primary walls and had gene expression profiles illustrative of primary wall synthesis. These data indicate that the group Illd and Ille AP2/ERFs are transcription factors regulating primary cell wall deposition and could form the foundation for exchanging one cell wall type for another in plants.

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