THE CHANGING PATTERN OF BIREFRINGENCE IN PLASMODIA OF THE SLIME MOLD, PHYSARUM POLYCEPHALUM
Open Access
- 1 May 1965
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 25 (2) , 361-374
- https://doi.org/10.1083/jcb.25.2.361
Abstract
Plasmodia of the acellular slime mold, Physarum polycephalum, reveal a complex and changing pattern of birefringence when examined with a sensitive polarizing microscope. Positively birefringent fibrils are found throughout the ectoplasmic region of the plasmodium. In the larger strands they may be oriented parallel to the strand axis, or arranged circularly or spirally along the periphery of endoplasmic channels. Some fibrils exist for only a few minutes, others for a longer period. Some, particularly the circular fibrils, undergo changes in birefringence as they undergo cyclic deformations. In the ramifying strand region and the advancing margin there is a tendency for fibrils of various sizes to become organized into mutually orthogonal arrays. In some plasmodia the channel wall material immediately adjacent to the endoplasm has been found to be birefringent. The sign of endoplasmic birefringence is negative, and its magnitude is apparently constant over the streaming cycle. The pattern of plasmodial birefringence and its changes during the shuttle streaming cycle of Physarum are considered in the light of several models designed to explain either cytoplasmic streaming alone or the entire gamut of plasmodial motions. The results of this and other recent physical studies suggest that both streaming and the various other motions of the plasmodium may very likely be explained in terms of coordinated contractions taking place in the fibrils which are rendered visible in polarized light.Keywords
This publication has 10 references indexed in Scilit:
- Two-exposure, film densitometric method measuring phase retardations due to weak birefringence in fibrillar or membranous cell constituentsExperimental Cell Research, 1965
- Shuttle-Streaming: Synchronization with Heat Production in Slime MoldScience, 1963
- Protoplasmic streaming as a process of jet propulsionDevelopmental Biology, 1963
- Protoplasmic movement in slime mold plasmodia: The diffusion drag force hypothesisExperimental Cell Research, 1959
- Physical and chemical studies of myxomyosin, an ATP-sensitive protein in cytoplasmBiochimica et Biophysica Acta, 1957
- THE ISOLATION OF MYXOMYOSIN, AN ATP-SENSITIVE PROTEIN FROM THE PLASMODIUM OF A MYXOMYCETEThe Journal of general physiology, 1956
- OBSERVATIONS ON AN ATP-SENSITIVE PROTEIN SYSTEM FROM THE PLASMODIA OF A MYXOMYCETEThe Journal of general physiology, 1956
- Torsion in a protoplasmic threadExperimental Cell Research, 1954
- A theory of protoplasmic streaming.1949
- A Theory of Protoplasmic StreamingScience, 1937