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MECHANICAL IMPACT ON THE CELL COVERING FINE STRUCTURE OF DINOFLAGELLATES PROROCENTRUM MINIMUM
Abstract:
Complex cell coverings (amphiesma) of potentially toxic dinoflagellates Prorocentrum minimum include plasma membrane and flattened amphiesmal vesicles with thecal cellulose plates. Two largest thecal plates surround the major portion of dinoflagellate cell as shell valves. We have revealed that P. minimum cells appear to be extremely sensitive to the physical stress: even low speed centrifugation (1200 and 2000 g) leads to a dropping of old coverings shedding (ecdysis) and the formation of viable spheroplasts. Spheroplasts are surrounded only by the plasma membrane beneath which the new amphiesma is formed. These spheroplasts can be a convenient model system for investigation of numerous aspects of cell and molecular biology of the dinoflagellates.
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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