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Electrophysiology of turgor regulation in marine siphonous green algae

  • University of New South Wales

Research output: Contribution to journalReview articlepeer-review

17 Scopus citations

Abstract

We review electrophysiological measures of turgor regulation in some siphonous green algae, primarily the giant-celled marine algae, Valonia and Ventricaria, with particular comparison to the well studied charophyte algae Chara and Lamprothamnium. The siphonous green algae have a less negative plasma membrane potential, and are unlikely to have a proton-based chemiosmotic transport system, dominated by active electrogenic K+ uptake. We also make note of the unusual cellular structure of the siphonous green algae. Hypertonic stress, due to increased external osmotic pressure, is accompanied by positive-going potential difference (PD), increase in conductance, and slow turgor regulation. The relationship between these is not yet resolved, but may involve changes in K+ conductance (G K) or active K + transport at both membranes. Hypotonic turgor regulation, in response to decreased external osmotic pressure, is ∼3 times faster than hypertonic turgor regulation. It is accompanied by a negative-going PD, although conductance also increases. The conductance increase and the magnitude of the PD change are strongly correlated with the magnitude of hypotonic stress.

Original languageEnglish
Pages (from-to)1-14
Number of pages14
JournalJournal of Membrane Biology
Volume211
Issue number1
DOIs
StatePublished - May 2006

Keywords

  • Cell Physiology
  • Cell signaling
  • Cell structure
  • Electrophysiology of plants
  • Green algae
  • Ion and water transport in plants
  • Osmotic stress
  • Transport physiology
  • Turgor

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