
Hydroids belong to the diverse invertebrate class Hydrozoa (predominantly the subclass Hydroidolina), a group containing approximately 3,700 known species within the phylum Cnidaria. Related closely to true jellyfish and corals, these predatory organisms are overwhelmingly marine, though a tiny fraction has adapted to freshwater habitats. Hydroids range from solitary polyps to intricate, multi-individual colonies that anchor themselves to hard benthic substrates or drift through open ocean waters. The typical hydroid life cycle is biphasic, alternating between asexual benthic polyps and sexual pelagic stages. It begins with a microscopic, ciliated planula larva roughly one millimetre long. Upon finding a suitable surface, the larva metamorphoses into a sessile polyp. In colonial species, budding creates interconnected networks anchored by horizontal, root-like stolons and vertical tubelike hydrocauli. These polyps eventually liberate gamete-producing medusae—tiny bell-shaped jellies ranging from 0.5 to 6 centimetres—or retain them as attached reproductive structures called gonophores. For scuba divers, hydroids represent a fascinating element of reef architecture. Their growth forms vary dramatically, appearing as delicate tree-like fronds, feathery fans, or dense "furry mats" encrusting shells and rock faces. Though individual polyps are usually only a few millimetres tall, whole colonies create micro-habitats that enhance structural complexity, harbouring diverse micro-fauna and offering outstanding opportunities for close-up macro photography.
Size
Unknown
Weight
Less than 1 g to 1 kg
Lifespan
Months to several years; some species are biologically immortal
Status
Not Evaluated
Hydroid colonies exhibit polymorphism, where individual polyps physically differentiate to perform specific roles like feeding, defense, or reproduction.
The deep-sea hydroid Branchiocerianthus imperator can reach a height of two metres, making it an extreme giant compared to typical polyps that measure just a few millimetres.
Certain species, such as Hydractinia echinata, form dense 'furry mats' on snail shells inhabited by hermit crabs, providing protection while gaining mobility.
Hydrozoan stinging cells contain explosive organelles called cnidocysts that discharge barbed, venomous, or adhesive threads at high speed when triggered.
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