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A comparative mechanical analysis of plant and animal cells reveals convergence across kingdoms

  • Pauline Durand-Smet
  • , Nicolas Chastrette
  • , Axel Guiroy
  • , Alain Richert
  • , Annick Berne-Dedieu
  • , Judit Szecsi
  • , Arezki Boudaoud
  • , Jean Marie Frachisse
  • , Mohammed Bendhamane
  • , Oliver Hamant
  • , Atef Asnacios
  • Laboratoire Matière et Systèmes Complexes
  • Université de Lyon
  • Laboratoire Joliot Curie
  • UPR2355 CNRS

Research output: Contribution to journalArticlepeer-review

36 Citations (Scopus)

Abstract

Plant and animals have evolved different strategies for their development. Whether this is linked to major differences in their cell mechanics remains unclear, mainly because measurements on plant and animal cells relied on independent experiments and setups, thus hindering any direct comparison. In this study we used the same micro-rheometer to compare animal and plant single cell rheology. We found that wall-less plant cells exhibit the same weak power law rheology as animal cells, with comparable values of elastic and loss moduli. Remarkably, microtubules primarily contributed to the rheological behavior of wall-less plant cells whereas rheology of animal cells was mainly dependent on the actin network. Thus, plant and animal cells evolved different molecular strategies to reach a comparable cytoplasmic mechanical core, suggesting that evolutionary convergence could include the internal biophysical properties of cells.

Original languageEnglish
Pages (from-to)2237-2244
Number of pages8
JournalBiophysical Journal
Volume107
Issue number10
DOIs
Publication statusPublished - 18 Nov 2014
Externally publishedYes

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