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Abyssocladia falkor

Abyssocladia falkor

Australia
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Status
Not Evaluated

IUCN conservation assessment category

Habitat
Ocean

Primary ecological niche & biome

Diet
Omnivorous

Dietary type and primary food source

Activity
Diurnal

Diurnal, nocturnal, or active patterns

Scientific Summary

GBIF Taxonomic Backbone & Wikipedia Registry Profile

Description: Growth form: The holotype consists of a pedunculated sponge, with a short stem and a disc shaped body with filaments radiating out in a single plane from the disc margin. (Figs. 4 A – C). The paratype has the entire stem and roots as well, which were lost from the holotype during collection. The holotype has a body diameter of 7.8 mm, and 1.3 mm thick. The filaments are 2.3 mm long and 0.1 mm in width. The paratype has a body with a 6.7 mm diameter and 1.6 mm width, the stem and root are 40 mm in length, the filaments are up to 4.0 mm in length. Colour: Cream in situ, on deck and in ethanol. Ectosomal skeleton: Thin membranous layer of the filaments is encrusted with small sigmancistras and abyssochelae. The sponge body and stem are encrusted with the predominately spherical microstrongyles, but also include the abyssochelae. Immediately under the encrusting layer are the sinuous styles. The ectosomal skeleton of the roots is a thin membranous layer with occasional abyssochelae, sigmas and sigmancistras. Endosomal skeleton: The axis of the stem consists of longitudinally arranged mycalostyles, styles and sinuous styles (Figs. 5 D, F, J). The main body consists of the radiating bundles of subtylostyles that form the filaments (Figs. 5 H, I). Within the body between the bundles, the styles form a disorganised almost cross hatching skeleton. The roots are composed of the large mycalostyles, styles, sinuous styles, occasional subtylostyles and rarely strongyles (Fig. 4 G). The filaments axis is composed of subtylostyles only (Fig. 4 D). Megascleres: Mycalostyles are long and generally straight, sometimes with a slight curve, and have a rounded point (Figs. 5 D, E). Styles usually straight, sometimes with a slight curve, thickest in the centre also with a blunt point, sometimes with a very faint tyle swelling (Figs. 5 F, G). They are separated from the mycalostyles often by their location in the body but could well be a continuum of a single category of megasclere. The sinuous styles occur around the mycalostyles that make up the stem, under the dermal microstrongyles (Figs. 5 J, K). Subtylostyles are long and straight, with a sharp tip and compose the filaments (Figs. 5 H, I). There are also very rare strongyles present from the roots (Figs. 5 L, M). Microscleres: Abyssochelae isochelae with curved shaft, and opposing alae touching (Fig. 5 A). There are small sigmas and small sigmancistras that usually occur on the exterior surfaces (Figs. 5 C, N, respectively). There are also long thin sigmas that only occur on the sponge body, these were rare and only occurred on the paratype and so may not be native (Fig. 5 B). The predominately spherical to subspherical shaped microstrongyles are microspined (Figs. 4 E, F; 5 O). However, they are also dumbbell-shaped and rarely dildo — shaped (Fig. 5 P). The microstrongyles have either a rounded end (tylomicrostrongyle) or a sharp point (tylomicrostyles).
Biology & Conservation

Ecologically, the conservation status of Abyssocladia falkor is officially designated as Not Evaluated. Current field registries estimate a global population composed of an unquantified number of individuals, making habitat preservation critical to maintaining their wild populations.

It is typically endemic to ocean, showing great physiological synergy with its surroundings. In terms of dietary preferences, it relies primarily on a diet of diverse organic matter. It exhibits specialized adaptations centered around a its natural cycle activity pattern, optimizing its energy conservation and interactions within its native ecosystem.

Ongoing biological monitoring and ecological advocacy emphasize the importance of protecting this species. The stability of its food chain and the prevention of fragmentation in its primary range are vital for the continued survival of Abyssocladia falkor.

Energy & Activity Profile
Habitat & Adaptation Index
Quick Facts
Native RangeAustralia
Habitat RangeOcean
Lifespan
StatusData Deficient
ScientificAbyssocladia falkor
Registry Info
LifespanUnknown
KingdomAnimalia
FamilyCladorhizidae