Buffalo Sallow-wattle vs

Acacia phlebophylla compared with Clitocybe subspadicea

Key Differences

  • Buffalo Sallow-wattle is Critically Endangered while is Data Deficient.

Taxonomic Classification

Rank Buffalo Sallow-wattle
Kingdom Plantae (bitki) Fungi (mantar)
Phylum Magnoliophyta (Flowering Plants) Basidiomycota (Bazitli mantarlar)
Class Magnoliopsida (Dicots) Agaricomycetes (Mushrooms)
Order Fabales (Legumes & Allies) Agaricales (Lamelli mantarlar)
Family Fabaceae Tricholomataceae
Genus Acacia Clitocybe
Species Acacia phlebophylla Clitocybe subspadicea

Conservation Status

Buffalo Sallow-wattle

CR — Critically Endangered

DD — Data Deficient

Physical Characteristics

Attribute Buffalo Sallow-wattle
Diet
Average Lifespan
Average Length
Average Weight

Habitat & Geographic Range

Buffalo Sallow-wattle

Habitat

Typically found in diverse terrestrial habitats from tropical forests to temperate regions.

Habitat

Typically found in forest floors, decomposing wood, and soil ecosystems.

Range

Distributed across Denmark, Norway, and Sweden.

Buffalo Sallow-wattle

The Buffalo Sallow-Wattle (Acacia phlebophylla) is a species in the genus Acacia. It is currently classified as Critically Endangered on the IUCN Red List. Typically found in diverse terrestrial habitats from tropical forests to temperate regions.

Clitocybe subspadicea is an agaric fungus in the family Tricholomataceae native to temperate European forests. The species epithet subspadicea indicates a date-brown or chestnut-brown coloration ('spadiceus' meaning date-brown in Latin), somewhat darker than the whitish or pale grey tones typical of many Clitocybe species, making it more readily distinguished in the field. It fruits in autumn on forest floors of deciduous and mixed woodlands, where it decomposes leaf litter and organic matter as a saprotrophic fungus. The cap is depressed to funnel-shaped, gills are decurrent and crowded, and the stipe is cylindrical and slender, following the typical Clitocybe growth form. The darker pigmentation may reflect production of melanins or other pigment compounds providing protection against UV radiation or desiccation during fruiting. Documentation of species like C. subspadicea through careful field work and herbarium specimens contributes to understanding the remarkable macrofungal diversity of European temperate forests, where hundreds of agaric species perform essential ecological roles in energy flow and nutrient cycling.

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