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Updated: Feb 6, 2026

Spore Adsorption as a Nonrecombinant Display System for Enzymes and Antigens
Published on: March 19, 2019
ULTRASTRUCTURAL STUDIES OF IN SITU DEVONIAN SPORES: BARINOPHYTON CITRULLIFORME
Thomas N Taylor1,2, David F Brauer1,2
1Department of Botany, The Ohio State University, Columbus, Ohio.
Abstract:
Each sporangium in the Upper Devonian taxon Barinophyton citrulliforme contains both microspores and megaspores. Microspores range up to 50 μm in diam and possess a homogeneous sporoderm characterized by an outer separable layer. The sporoderm of the megaspores (up to 900 μm) is constructed of sporopollenin units that are loosely arranged in the outer portion of the wall, and that give the megaspore wall a spongy organization. Ultrastructural evidence suggests that the small spores were not abortive megaspores, but that both spore types were functional. The spores of this plant, as well as other Devonian spores that show less dramatic size differences, are suggested as demonstrating a phase in the evolution of heterospory where sex determination was established in spores within the same sporangium prior to the evolution of micro- and megasporangia.
Insights
The Upper Devonian plant Barinophyton citrulliforme had sporangia containing both functional microspores and megaspores. This finding suggests a key evolutionary step towards heterospory in early land plants.
Area of Science:
- Paleobotany
- Evolutionary Biology
- Reproductive Biology
Background:
- The evolution of heterospory, the production of spores of different sizes, is a critical event in plant evolution.
- Devonian period flora provides crucial insights into early land plant adaptations.
Purpose of the Study:
- To investigate the spore morphology and organization within the sporangia of Barinophyton citrulliforme.
- To determine the functional significance of different spore types found within the same sporangium.
- To elucidate the evolutionary stage of heterospory represented by Barinophyton citrulliforme.
Main Methods:
- Microscopic examination of sporangia from Barinophyton citrulliforme.
- Ultrastructural analysis of microspore and megaspore walls.
- Comparative analysis of spore size and morphology.
Main Results:
- Sporangia of Barinophyton citrulliforme contain both microspores (up to 50 μm) and megaspores (up to 900 μm).
- Microspores have a homogeneous sporoderm with a separable outer layer.
- Megaspore walls exhibit a spongy organization due to loosely arranged sporopollenin units.
- Ultrastructural evidence indicates both spore types were functional, not abortive.
Conclusions:
- Barinophyton citrulliforme demonstrates a significant phase in the evolution of heterospory.
- This taxon suggests that sex determination in spores may have occurred within the same sporangium before the evolution of distinct micro- and megasporangia.
- The findings contribute to understanding the early evolution of reproductive strategies in land plants.
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