Anthracite Bee-fly vs
Anthrax anthrax compared with Chrysosphaerella longispina
Key Differences
- Anthracite Bee-fly is Least Concern while is Not Evaluated.
Taxonomic Classification
| Rank | Anthracite Bee-fly | |
|---|---|---|
| Kingdom | Animalia (Animals) | Chromista (Chromista) |
| Phylum | Arthropoda (Arthropods) | Ochrophyta (Ochrophyta) |
| Class | Insecta (Insects) | Chrysophyceae (Chrysophyceae) |
| Order | Diptera (Diptera) | Ochromonadales (Ochromonadales) |
| Family | Bombyliidae | Paraphysomonadaceae |
| Genus | Anthrax | Chrysosphaerella |
| Species | Anthrax anthrax | Chrysosphaerella longispina |
Conservation Status
Anthracite Bee-fly
LC — Least ConcernPhysical Characteristics
| Attribute | Anthracite Bee-fly | |
|---|---|---|
| Diet | — | — |
| Average Lifespan | — | — |
| Average Length | — | — |
| Average Weight | — | — |
Habitat & Geographic Range
Anthracite Bee-fly
Typically found in virtually all terrestrial and freshwater habitats.
Distributed across Belgium, Denmark, Norway, Portugal, and Sweden.
Native to Europe, inhabiting ecosystems characteristic of the region.
Distributed across Denmark, Norway, and Sweden.
Anthracite Bee-fly
The Anthracite Bee-fly (Anthrax anthrax) is a species in the genus Anthrax. It is currently classified as Least Concern on the IUCN Red List. Typically found in virtually all terrestrial and freshwater habitats.
Chrysosphaerella longispina is a colonial chrysophyte alga in the genus Chrysosphaerella, notable for the long silica spines (longispina: Latin, long spine) that project from each cell in the colony. The genus is characterized by spherical or discoid colonies of photosynthetic cells that each secrete siliceous scales and elongated spine-like appendages, making Chrysosphaerella colonies distinctively bristled and visible under light microscopy. The long spines of C. longispina likely serve as anti-predation structures that make the colonies more difficult for zooplankton to ingest. C. longispina is found in cold, oligotrophic freshwater lakes, particularly in Scandinavia, where comprehensive chrysophyte surveys have documented its presence. Chrysosphaerella colonies contribute to freshwater primary production and the cycling of biogenic silica, which upon cell dissolution is deposited in lake sediments as microscopically identifiable remains. These silica structures are widely used by paleolimnologists to reconstruct past changes in lake water chemistry, thermal stratification, and climate. The conservation status of C. longispina has not been assessed by the IUCN; the species is listed as Not Evaluated.
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