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PATTERN FORMATION AND THE FINE STRUCTURE OF THE DEVELOPING CELL WALL IN COLONIES OF PEDIASTRUM BORYANUM
Author(s) -
Gawlik S. R.,
Millington W. F.
Publication year - 1969
Publication title -
american journal of botany
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.218
H-Index - 151
eISSN - 1537-2197
pISSN - 0002-9122
DOI - 10.1002/j.1537-2197.1969.tb09763.x
Subject(s) - reticulate , zoospore , cell wall , biology , biophysics , vesicle , ultrastructure , cleavage (geology) , layer (electronics) , membrane , anatomy , botany , materials science , spore , composite material , paleontology , genetics , fracture (geology)
A single‐layered disc of peripheral pronged cells and central prongless cells impart the typical gear shape to colonies of Pediastrum , while the walls of each cell have a characteristic reticulate triangular pattern. The two‐layered wall forms in the cells during colony formation following zoospore aggregation and adhesion. The uniformly thin outer layer reflects contours resulting from differential thickening in the reticulate pattern of the inner, thicker, more fibrillar and granular wall layer. The reticulate pattern thus imparted to the outer wall layer persists in empty zoosporangia following the release of zoospores. Columns of electron‐dense material extend through the outer wall layer except at the ridges and centers of the reticulum. Following mitosis and cleavage, the resulting zoospores are extruded within a vesicle membrane consisting of the inner wall layer. Separation of this membrane from the parent cell occurs in material of the inner layer adjacent to the outer wall. Vesicles containing swarming zoospores also contain a granular material which appears to become associated with the aggregating and adhering cells of new colonies. Microtubules occur in zoospores prior to adherence but are absent during wall deposition.

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