Carriker's Round-eared Bat vs
Lophostoma carrikeri compared with Clitopilus passeckerianus
Key Differences
- Carriker's Round-eared Bat is Least Concern while is Not Evaluated.
Taxonomic Classification
| Rank | Carriker's Round-eared Bat | |
|---|---|---|
| Kingdom | Animalia (動物) | Fungi (菌界) |
| Phylum | Chordata (脊索動物) | Basidiomycota (担子菌門) |
| Class | Mammalia (哺乳類) | Agaricomycetes (真正担子菌綱) |
| Order | Chiroptera (翼手目) | Agaricales (ハラタケ目) |
| Family | Phyllostomidae | Entolomataceae |
| Genus | Lophostoma | Clitopilus |
| Species | Lophostoma carrikeri | Clitopilus passeckerianus |
Conservation Status
Carriker's Round-eared Bat
LC — Least ConcernPhysical Characteristics
| Attribute | Carriker's Round-eared Bat | |
|---|---|---|
| Diet | — | — |
| Average Lifespan | — | — |
| Average Length | — | — |
| Average Weight | — | — |
Habitat & Geographic Range
Carriker's Round-eared Bat
Typically found in diverse terrestrial and aquatic ecosystems.
Distributed across Colombia, Ecuador, and Venezuela.
Typically found in forest floors, decomposing wood, and soil ecosystems.
Distributed across Norway and Sweden.
Carriker's Round-eared Bat
The Carriker's Round-eared Bat (Lophostoma carrikeri) is a species in the genus Lophostoma. It is currently classified as Least Concern on the IUCN Red List. Typically found in diverse terrestrial and aquatic ecosystems.
Clitopilus passeckerianus is a white-rot agaric fungus in the family Entolomataceae notable for its role as a natural producer of pleuromutilin, a diterpenoid antibiotic compound that serves as the biosynthetic precursor for the veterinary and human antibiotic drugs tiamulin and valnemulin, used to treat Mycoplasma infections in livestock. First described from European woodland habitats, the species produces the characteristic Clitopilus fruiting body: a pale, whitish cap with decurrent, crowded gills becoming pinkish at maturity from angular spores, and a farinaceous odor. Its antibiotic-producing capacity makes C. passeckerianus of significant pharmaceutical interest, and biosynthetic studies of pleuromutilin production have informed synthetic chemistry approaches to antibiotic development. The species inhabits temperate deciduous woodland floors in Europe, fruiting in autumn among leaf litter. Discovery of its pleuromutilin biosynthetic pathway has opened avenues for heterologous expression and semi-synthetic modification aimed at developing novel antibiotics to counter antibiotic-resistant bacterial pathogens.
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