4.7 Article

Arabidopsis FH1 Formin Affects Cotyledon Pavement Cell Shape by Modulating Cytoskeleton Dynamics

期刊

PLANT AND CELL PHYSIOLOGY
卷 57, 期 3, 页码 488-504

出版社

OXFORD UNIV PRESS
DOI: 10.1093/pcp/pcv209

关键词

Arabidopsis thaliana; Confocal microscopy; Cotyledon pavement cells; Cytoskeleton; Formin; Variable angle epifluorescence microscopy

资金

  1. Czech Science Foundation [15-02610S]
  2. Ministry of Education of the Czech Republic [NPUI LO1417]
  3. OPEC-ESF [CZ.1.07/2.3.00/20.0165]
  4. Colombian Ministry of Agriculture

向作者/读者索取更多资源

Plant cell morphogenesis involves concerted rearrangements of microtubules and actin microfilaments. We previously reported that FH1, the main Arabidopsis thaliana housekeeping Class I membrane-anchored formin, contributes to actin dynamics and microtubule stability in rhizodermis cells. Here we examine the effects of mutations affecting FH1 (At3g25500) on cell morphogenesis and above-ground organ development in seedlings, as well as on cytoskeletal organization and dynamics, using a combination of confocal and variable angle epifluorescence microscopy with a pharmacological approach. Homozygous fh1 mutants exhibited cotyledon epinasty and had larger cotyledon pavement cells with more pronounced lobes than the wild type. The pavement cell shape alterations were enhanced by expression of the fluorescent microtubule marker GFP-microtubule-associated protein 4 (MAP4). Mutant cotyledon pavement cells exhibited reduced density and increased stability of microfilament bundles, as well as enhanced dynamics of microtubules. Analogous results were also obtained upon treatments with the formin inhibitor SMIFH2 (small molecule inhibitor of formin homology 2 domains). Pavement cell shape in wild-type (wt) and fh1 plants in some situations exhibited a differential response towards anti-cytoskeletal drugs, especially the microtubule disruptor oryzalin. Our observations indicate that FH1 participates in the control of microtubule dynamics, possibly via its effects on actin, subsequently influencing cell morphogenesis and macroscopic organ development.

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