Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/20085
Title: The early Cambrian tommotiid genus Dailyatia from South Australia
Contributor(s): Skovsted, Christian B (author); Betts, Marissa J  (author)orcid ; Topper, Timothy P (author); Brock, Glenn A (author)
Publication Date: 2015
Handle Link: https://hdl.handle.net/1959.11/20085
Abstract: The camenellan tommotiid Dailyatia is one of the most common fossils in shallow water carbonates from Cambrian Stages 2-4 in South Australia (Arrowie and Stansbury basins). Six species of Dailyatia are documented and new terminology for describing camenellan sclerites is introduced. Dailyatia sclerites are found in three fundamental sclerite types (A-C), each of which may be present in one to three sub-types depending on species. The previously described species Dailyatia ajax Bischoff 1976 and D. macroptera (Tate 1892) are revised and four additional species are described for the first time from South Australia. These include D. odyssei Evans & Rowell 1990, previously known only from Antarctica, and two new species; D. bacata sp. nov. and D. helica sp. nov. as well as a species left under open nomenclature. Two of the recognised species (D. macroptera and D. helica) occur in two different ecophenotypic variants. Species and variants are defined by differences in sclerite types present in the scleritome, sclerite morphology and ornament. The sclerites of Dailyatia are finely laminated with distal expansion of laminae supporting the prominent concentric ribs. The external surface is covered by a fine reticulate network which indicates that the sclerites were at least partly embedded in soft integument. The pattern of incremental growth reveals specific initial and possible gerontic growth stages with unique surface sculptures. Evidence of physical damage and growth disturbances is common in Dailyatia sclerites and many specimens reveal preferential abrasion of the apex. Apical canals are present in all sclerites and are connected to specialised internal apical structures. The internal surface of the sclerites in most species reveals raised platforms and depressed, scar like areas forming unique patterns in each sclerite type, presumably representing muscular attachment. Two specimens revealing ontogenetic fusion of Dailyatia sclerites have been recovered. Based on all available evidence, a new reconstruction of the Dailyatia scleritome is proposed. In the reconstruction, a central row of A and paired B sclerites is flanked on both sides by one or two lateral rows of C sclerites. The exact number of sclerites may vary between species. This reconstruction is based on an assumed slug-like bodyplan and the Dailyatia animal is considered to be a vagrant, benthic animal living in and around archaeocyathan-microbial buildups and in other shallow water carbonate environments.
Publication Type: Journal Article
Grant Details: ARC/DP120104251
Source of Publication: Memoirs of the Association of Australasian Palaeontologists, 48(1), p. 1-117
Publisher: Australasian Palaeontologists
Place of Publication: Australia
ISSN: 0810-8889
2205-8877
Fields of Research (FoR) 2008: 060206 Palaeoecology
040308 Palaeontology (incl. Palynology)
060301 Animal Systematics and Taxonomy
Fields of Research (FoR) 2020: 310306 Palaeoecology
370506 Palaeontology (incl. palynology)
310401 Animal systematics and taxonomy
Socio-Economic Objective (SEO) 2008: 970104 Expanding Knowledge in the Earth Sciences
970106 Expanding Knowledge in the Biological Sciences
Socio-Economic Objective (SEO) 2020: 280107 Expanding knowledge in the earth sciences
280102 Expanding knowledge in the biological sciences
Peer Reviewed: Yes
HERDC Category Description: C1 Refereed Article in a Scholarly Journal
Appears in Collections:Journal Article

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