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This coral had been hot glued onto a stone and later grew over it. Depending on the species and location, Acropora species may grow as plates or slender or broad branches. Like other corals, Acropora corals are colonies of individual polyps, which are about 2 mm across and share tissue and a nerve net. The polyps can withdraw back into the ...
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Acropora millepora is a zooxanthellate species of coral and harbours symbiotic dinoflagellates in its tissues. The larvae of Acropora millepora preferentially settle on vertical surfaces and on encrusting coralline algae. It has been found that at lower temperatures (22.5 °C (72.5 °F)) the larvae were less specific as to their choice of ...
Acropora aspera is found in the Indian Ocean and western parts of the Pacific Ocean. It inhabits reef flats and lagoons and grows in water up to 5 metres (16 ft) deep. Where coral zoning occurs, it is found between the shallow water Acropora pulchra, which it closely resembles, and the deeper water Acropora mille
Acropora grandis forest. Acropora grandis is a colonial species of staghorn coral that can grow into a large clump as much as 7 metres (23 ft) across. In shallow water it tends to grow as a prostrate, tangled bush with thick branches but in deeper water it has a more upright and open structure.
Acropora cytherea is a stony coral which forms horizontal table like structures. It occurs in the Indo-Pacific Ocean in areas with little wave action, favouring back reef environments from 3 to 20 m (10 to 66 ft) depth.
Acropora abrolhosensis is a species of acroporid coral that was first described by John Veron in 1985. Found in sheltered lagoons and shallow reefs, it is listed as a vulnerable species on the IUCN Red List. The population of the species is decreasing, and most specimens are found in Western Australia, but occurs in many other areas.
Branching corals of the genus Acropora are among the fastest-growing taxa on most coral reefs. A. hyacinthus has an average growth rate that ranges from 3–10 centimetres (1.2–3.9 in) diameter increase per year, with much of this variation thought to be a response to temperature, in addition to competition and other abiotic and biotic factors.