The morphology and phylogenetic significance ofKerygmachela kierkegaardiBudd (Buen Formation, Lower Cambrian, N Greenland)
- 1 January 1998
- journal article
- research article
- Published by Cambridge University Press (CUP) in Earth and Environmental Science Transactions of the Royal Society of Edinburgh
- Vol. 89 (4) , 249-290
- https://doi.org/10.1017/s0263593300002418
Abstract
Specimens of Kerygmachela kierkegaardi Budd are described, from the Lower Cambrian Sirius Passet fauna of N Greenland. The cephalic region is characterised by a pair of stout unsegmented appendages each bearing long spinose processes, and an anterior mouth. The trunk shows alternating rows of tubercles and transverse annulations along the axis, to which are attached 11 pairs of gill-bearing lateral lobes and lobopodous limbs. The caudal region is small, and bears two long tail spines. There is some evidence for circular musculature arranged around the trunk and a dorsal, longitudinal sinus, and several details of the muscular pharynx have been preserved.The combination of characters found in Kerygmachela allows it to be allied with the lobopods, represented in the extant fauna by the onychophorans, tardigrades, and possibly the pentastomids, and in the Cambrian fossil record by a morphologically diverse set of taxa, some of which are not assignable to the extant groupings. It also shares important characters with the previously problematic Burgess Shale forms Opabinia regalis Walcott and AnomalocarisWhiteaves, and the Sirius Passet form Pambdelurion Budd. These taxa together form a paraphyletic group at the base of the clade of biramous arthropods. The position of the so-called ‘Uniramia’ remains unclear. It can be demonstrated from the reconstruction of the arthropod stem-group that full arthropod segmentation has a different derivation from that of the annelids. In line with other recent analyses, this suggests that the ‘Articulata’ of Cuvier should be dismantled, and the arthropods considered to be a group of protostomes which are phylogenetically distinct from the classic spiralians. Arthropod affinities may rather lie with the other moulting animals, in the so-called ‘Ecdysozoa’.Keywords
This publication has 97 references indexed in Scilit:
- Evidence for a clade of nematodes, arthropods and other moulting animalsNature, 1997
- The brain of Echiniscus viridissimus Peterfi, 1956 (Heterotardigrada): a key to understanding the phylogenetic position of tardigrades and the evolution of the arthropod headZoological Journal of the Linnean Society, 1996
- Constraints on the early Cambrian radiation and correlation of the Tommotian and Nemakit-Daldynian regional stages of eastern SiberiaJournal of the Geological Society, 1995
- Nucleic acid sequence data are notper sereliable for inference of phylogeniesJournal of Natural History, 1994
- Evidence for Monophyly and Arthropod Affinity of Cambrian Giant PredatorsScience, 1994
- A Cambrian gilled lobopod from GreenlandNature, 1993
- The zootype and the phylotypic stageNature, 1993
- Earliest-known uniramous arthropodNature, 1990
- The Middle Cambrian trilobite Naraoia , Burgess Shale, British ColumbiaPhilosophical Transactions of the Royal Society of London. B, Biological Sciences, 1977
- Restudy of some Burgess shale fossilsProceedings of the United States National Museum, 1930