vs Fly Agaric
Acanthocorbis asymmetrica compared with Amanita muscaria
Key Differences
- is Not Evaluated while Fly Agaric is Least Concern.
Taxonomic Classification
| Rank | Fly Agaric | |
|---|---|---|
| Kingdom | Protozoa (protozoa) | Fungi (Fungi) |
| Phylum | Choanozoa (Choanozoa) | Basidiomycota (Club Fungi) |
| Class | Choanoflagellatea (Choanoflagellatea) | Agaricomycetes (Mushrooms) |
| Order | Choanoflagellida (Choanoflagellida) | Agaricales (Gilled Mushrooms) |
| Family | Acanthoecidae | Agaricaceae (Agarics) |
| Genus | Acanthocorbis | Amanita (Amanitas) |
| Species | Acanthocorbis asymmetrica | Amanita muscaria |
Conservation Status
Fly Agaric
LC — Least ConcernTrend: Stable →
Physical Characteristics
| Attribute | Fly Agaric | |
|---|---|---|
| Diet | — | Decomposer |
| Average Lifespan | — | 1 years |
| Average Length | — | 20 cm |
| Average Weight | — | 100 g |
Habitat & Geographic Range
Native to Europe, inhabiting ecosystems characteristic of the region.
Distributed across Norway and Sweden.
Fly Agaric
Typically found in forest floors, decomposing wood, and soil ecosystems.
Widely distributed across Europe (4 countries), North America (United States), Oceania and the Pacific (New Zealand), and South America (Brazil, Chile, Colombia).
Acanthocorbis asymmetrica is a marine choanoflagellate, a unicellular organism closely related to the ancestors of animals, living in coastal and open ocean waters. Its cells are enclosed within a lorica (basket-like cage) constructed from siliceous costal strips that form an asymmetric pattern, distinguishing it from related species. It feeds on bacteria, playing a role in marine microbial food webs.
Fly Agaric
Among the most iconic and recognizable fungi on Earth, fly agaric mushrooms display striking red caps with white flecked warts across boreal forests of the Northern Hemisphere. Despite their fairy-tale appearance, they contain potent psychoactive compounds including muscimol and ibotenic acid and are moderately toxic. They form critical mycorrhizal symbioses with birch, pine, and spruce trees, exchanging mineral nutrients for carbon and playing essential roles in boreal forest nutrient cycling.
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