Blistering Ammania vs

Ammannia baccifera compared with Clostridium botulinum

Key Differences

  • Blistering Ammania is Least Concern while is Not Evaluated.

Taxonomic Classification

Rank Blistering Ammania
Kingdom Plantae (Plants) Bacteria (Bacteria)
Phylum Magnoliophyta (Flowering Plants) Firmicutes_A
Class Magnoliopsida (Dicots) Clostridia (Clostridia)
Order Myrtales (Myrtales) Clostridiales (Clostridiales)
Family Lythraceae Clostridiaceae
Genus Ammannia Clostridium
Species Ammannia baccifera Clostridium botulinum

Conservation Status

Blistering Ammania

LC — Least Concern

NE — Not Evaluated

Physical Characteristics

Attribute Blistering Ammania
Diet
Average Lifespan
Average Length
Average Weight

Habitat & Geographic Range

Blistering Ammania

Habitat

Found across multiple habitat types including tropical and subtropical moist broadleaf forests, montane grasslands and shrublands, and mangrove forests and coastal wetlands, among 4 distinct biome types spanning the Indomalayan and Oceanian and Palearctic realms. Populations are also found in montane and highland environments at higher elevations.

Range

Widely distributed across Asia (5 countries), Europe (Greece, Italy, North Macedonia), and Oceania and the Pacific (Palau).

Habitat

Native to Europe, inhabiting ecosystems characteristic of the region.

Range

Found in Sweden.

Blistering Ammania

The Blistering Ammania (Ammannia baccifera) is a species in the genus Ammannia. It is currently classified as Least Concern on the IUCN Red List. Found across multiple habitat types including tropical and subtropical moist broadleaf forests, montane grasslands and shrublands, and mangrove forests and coastal wetlands, among 4 distinct biome types spanning the Indomalayan and Oceanian

Clostridium botulinum is an anaerobic, endospore-forming bacterium in the family Clostridiaceae and the causative agent of botulism, a potentially fatal neuroparalytic illness caused by its potent botulinum neurotoxin — the most acutely toxic substance known. The neurotoxin acts by blocking acetylcholine release at neuromuscular junctions, causing flaccid paralysis and potentially respiratory failure. Seven serologically distinct toxin types (A through G) are produced by different strains, with types A, B, E, and F responsible for human botulism occurring through foodborne intoxication, wound infection, and infant intestinal colonization. C. botulinum spores are ubiquitous in soil and sediments worldwide, resisting boiling for extended periods and requiring autoclaving to destroy. Home-canned low-acid foods provide ideal anaerobic, low-acid conditions for germination and toxin production. Paradoxically, purified botulinum toxin has extensive medical applications, used clinically to treat spasticity, hyperhidrosis, chronic migraine, and cosmetically to reduce facial wrinkles (Botox). Strains are distributed globally and isolated from soils, sediments, and animal intestines across all continents.

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