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Published on: July 3, 2020
Phagotrophy and two new structures in the malaria parasite Plasmodium berghei
Abstract:
Blood collected from rats infected with Plasmodium berghei was centrifuged and the pellet was fixed for 1 hour in 1 per cent buffered OsO(4) with 4.9 per cent sucrose. The material was embedded in n-butyl methacrylate and the resulting blocks sectioned for electron microscopy. The parasites were found to contain, in almost all sections, oval bodies of the same density and structure as the host cytoplasm. Continuity between these bodies and the host cytoplasm was found in a number of electron micrographs, showing that the bodies are formed by invagination of the double plasma membrane of the parasite. In this way the host cell is incorporated by phagotrophy into food vacuoles within the parasite. Hematin, the residue of hemoglobin digestion, was never observed inside the food vacuole but in small vesicles lying around it and sometimes connected with it. The vesicles are pinched off from the food vacuole proper and are the site of hemoglobin digestion. The active double limiting membrane is responsible not only for the formation of food vacuoles but also for the presence of two new structures. One is composed of two to six concentric double wavy membranes originating from the plasma membrane. Since no typical mitochondria were found in P. berghei, it is assumed that the concentric structure performs mitochondrial functions. The other structure appears as a sausage-shaped vacuole surrounded by two membranes of the same thickness, density, and spacing as the limiting membrane of the body. The cytoplasm of the parasite is rich in vesicles of endoplasmic reticulum and Palade's small particles. Its nucleus is of low density and encased in a double membrane. The host cells (reticulocytes) have mitochondria with numerous cristae mitochondriales. In many infected and intact reticulocytes ferritin was found in vacuoles, mitochondria, canaliculi, or scattered in the cytoplasm.
Insights
Plasmodium berghei parasites ingest host cytoplasm via phagotrophy, forming food vacuoles. Hemoglobin digestion occurs in specialized vesicles, and unique membrane structures likely perform mitochondrial functions in these malaria parasites.
Area of Science:
- Cell Biology
- Parasitology
- Microscopy
Background:
- Plasmodium berghei is a malaria parasite that infects red blood cells.
- Understanding parasite ultrastructure is crucial for developing antimalarial strategies.
Purpose of the Study:
- To investigate the ultrastructural details of Plasmodium berghei.
- To elucidate the mechanisms of host cell incorporation and hemoglobin digestion within the parasite.
Main Methods:
- Blood from infected rats was processed for electron microscopy.
- Parasite ultrastructure was examined using ultrathin sections.
Main Results:
- Parasites form food vacuoles by invaginating their plasma membrane to engulf host cytoplasm.
- Hemoglobin digestion occurs in vesicles budding from food vacuoles, not within them.
- Unique concentric membrane structures, potentially serving mitochondrial functions, were observed.
- A sausage-shaped vacuole with a double membrane was also identified.
Conclusions:
- Plasmodium berghei utilizes phagotrophy for nutrient acquisition.
- Specialized vesicles are responsible for hemoglobin digestion.
- The parasite possesses novel membrane-bound organelles potentially involved in energy metabolism.
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