Cell patterning in branched and unbranched fruiting bodies of the cellular slime mold Polysphondylium pallidum |
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Authors: | Fay O. Stenhouse Keith L. Williams |
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Affiliation: | Department of Genetics, Research School of Biological Sciences, The Australian National University, P.O. Box 475, Canberra, ACT 2601, Australia |
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Abstract: | Cell patterning, the percentage of spores and stalk cells, was measured in branched and unbranched asexual fruiting bodies of Polysphondylium pallidum. Unlike D. discoideum, where small and large fruiting bodies are more stalky than average-sized fruiting bodies, the overall cell patterning was the same in branched and unbranched fruiting bodies of all sizes in P. pallidum. Light greatly increased the numbers of fruiting bodies in P. pallidum per unit area (or decreased aggregation territory size) so that most fruiting bodies formed in the light were small and unbranched. By contrast, light had little effect on the cell patterning of P. pallidum, although there was a slight increase in the percentage of stalk cells in the light compared to the dark. This indicates that the mechanisms governing light sensitivity of aggregation territory size and cell patterning have different components in P. pallidum. The accuracy of cell patterning of individual branches of branched fruiting bodies was so imprecise as to leave doubt that patterning is occurring at the branch level. Individual whorls of branched fruiting bodies had a greater percentage spores (90%) than whole fruiting bodies (78%) and the cell patterning was relatively imprecise. Only in whole fruiting bodies was the spore:stalk ratio highly correlated. These findings are consistent with cell pattern determination operating at the whole aggregate level, rather than at the individual whorl or branch level in P. pallidum. |
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Keywords: | To whom requests for reprints and all correspondence should be addressed: Max Planck Institut für Biochemie D-8033 Martinsried bei München Federal Republic of Germany. |
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