4.7 Article

A flax mutant with impaired intrusive growth of phloem and xylem fibres demonstrates constitutive gravitropic response

期刊

PLANT SCIENCE
卷 323, 期 -, 页码 -

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2022.111399

关键词

Flax; Intrusive growth; Fibres; Biomechanics; Atomic force microscopy

资金

  1. Russian Science Foundation [21-74-10131]
  2. government assignment for FRC Kazan Scientific Center of RAS
  3. NSERC [Natural Sciences Research Council, Canada]

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Intrusive growth is a type of cell growth where a cell exceeds the growth rate of its neighbors and extends longer. Fibers, the most abundant cell type in plant mechanical tissues, play a fundamental role in the production of textiles and other materials. A mutant of flax, known as reduced fiber 1 (rdf), has impaired intrusive growth in both phloem and xylem. This mutant provides insights into the molecular mechanisms and principles of plant mechanical tissue functioning.
Intrusive growth is a type of growth in which a cell exceeds the growth rate of its neighbours and intrudes between them, reaching a much greater length. This process provides plant fibres with their exceptional length. Fibres are the most abundant cell type in the mechanical tissues of plants. At the same time, the plant fibres are of fundamental importance for the production of textiles, paper, biocomposites, etc. Here we describe a mutant of flax (reduced fibre 1, rdf) in which intrusive growth of fibres is impaired in both phloem and xylem. In addition to the intrinsic differences in fibre length, the mutant is characterized by a constitutive gravitropic response, me-chanical aberrations at the macro-and nanolevels, disruption of the cambium and uneven transition of xylem cells to secondary cell wall formation. Gelatinous cell walls in both phloem and xylem of mutant plants have disturbed structure and reduced elasticity. The existence of this mutant-control pair offers both prospects for finding the molecular players involved in triggering intrusive growth, cell wall thickening and for understanding the principles of plant mechanical tissue functioning.

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