MECHANICAL IMPACT ON THE CELL COVERING FINE STRUCTURE OF DINOFLAGELLATES PROROCENTRUM MINIMUM

Tsitologiia
|September 11, 2018
PubMed

Insights

Toxic dinoflagellates, Prorocentrum minimum, shed their complex cell coverings under physical stress, forming viable spheroplasts. This discovery offers a new model for studying dinoflagellate cell biology.

Area of Science:

  • Marine biology
  • Protistology
  • Cell biology

Background:

  • Prorocentrum minimum, a potentially toxic dinoflagellate, possesses complex cell coverings called amphiesma.
  • The amphiesma consists of a plasma membrane and thecal cellulose plates, with two large plates forming shell valves.

Purpose of the Study:

  • To investigate the sensitivity of Prorocentrum minimum to physical stress.
  • To explore the formation of spheroplasts and their potential as a model system.

Main Methods:

  • Low-speed centrifugation (1200 and 2000 g) was applied to Prorocentrum minimum cultures.
  • Observation of cell coverings shedding (ecdysis) and spheroplast formation.

Main Results:

  • Prorocentrum minimum cells demonstrated extreme sensitivity to physical stress.
  • Centrifugation induced ecdysis, leading to the formation of viable spheroplasts surrounded by only the plasma membrane.
  • New amphiesma formation was observed beneath the plasma membrane in developing spheroplasts.

Conclusions:

  • Prorocentrum minimum spheroplasts represent a novel and convenient model system.
  • This model can be utilized for investigating various aspects of dinoflagellate cell and molecular biology.

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