Amazon Dwarf Squirrel vs Choke

Microsciurus flaviventer compared with Epichloe typhina

Key Differences

  • Amazon Dwarf Squirrel is Data Deficient while Choke is Not Evaluated.

Taxonomic Classification

Rank Amazon Dwarf Squirrel Choke
Kingdom Animalia (Animals) Fungi (Fungi)
Phylum Chordata (Chordates) Ascomycota (Sac Fungi)
Class Mammalia (Mammals) Sordariomycetes (Sordariomycetes)
Order Rodentia (Rodents) Hypocreales (Hypocreales)
Family Sciuridae (Squirrels) Clavicipitaceae
Genus Microsciurus Epichloe
Species Microsciurus flaviventer Epichloe typhina

Conservation Status

Amazon Dwarf Squirrel

DD — Data Deficient

Choke

NE — Not Evaluated

Physical Characteristics

Attribute Amazon Dwarf Squirrel Choke
Diet
Average Lifespan
Average Length
Average Weight

Habitat & Geographic Range

Amazon Dwarf Squirrel

Habitat

Typically found in diverse terrestrial and aquatic ecosystems.

Range

Distributed across Colombia and Ecuador.

Choke

Habitat

Native to North America, inhabiting ecosystems characteristic of the region.

Range

Found in United States.

Amazon Dwarf Squirrel

The Amazon Dwarf Squirrel (Microsciurus flaviventer) is a species in the genus Microsciurus. Its conservation status is listed as Data Deficient, indicating insufficient data for assessment. Typically found in diverse terrestrial and aquatic ecosystems.

Choke

Choke (Epichloe typhina) is an endophytic and pathogenic fungus in the family Clavicipitaceae, phylum Ascomycota, that colonises the tissues of various cool-season grasses (Poaceae) across Europe and North America. The name refers to the disease it causes — infected grass tillers are typically 'choked' (prevented from flowering) when the fungus produces a dense, white to cream-coloured, stromata (a compact fungal structure) that surrounds the flowering stem before it can emerge, suppressing seed production. Epichloe species exist along a mutualism-parasitism continuum; some strains are biotrophic endophytes living almost entirely within grass tissues without obvious symptoms and conferring benefits to the host such as increased drought resistance and deterrence of herbivores through alkaloid production, while others — including E. typhina — are more parasitic in nature, sterilising infected host tillers. The fungus spreads via airborne ascospores produced on its stroma that infect new host plants. Related Epichloe/Neotyphodium endophytes are of great practical importance to agriculture as they produce ergot alkaloids and other compounds that can cause toxicosis in livestock grazing infected pasture grasses. As a fungal pathogen/endophyte rather than a wildlife species, it is Not Evaluated by the IUCN.

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