Scratch Traces of Large Ediacara Bilaterian Animals
Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea region of Russia, represent the earliest known evidence in the fossil record of feeding traces associated with the responsible bilaterian organism...
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Published in | Journal of paleontology Vol. 88; no. 2; pp. 284 - 298 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
New York, USA
The Paleontological Society
01.03.2014
Cambridge University Press Paleontological Society |
Subjects | |
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Abstract | Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea region of Russia, represent the earliest known evidence in the fossil record of feeding traces associated with the responsible bilaterian organism. These feeding patterns exclude arthropod makers and point to the systematic feeding excavation of seafloor microbial mats by large bilaterians of molluscan grade. Since the scratch traces were made into microbial mats, animals could crawl over previous traces without disturbing them. The trace maker is identified as Kimberella quadrata, whose death masks co-occur with the mat excavation traces in both Russia and South Australia. The co-occurrence of animals and their systematic feeding traces in the record of the Ediacara biota supports previous trace fossil evidence that bilaterians existed globally before the Cambrian explosion of life in the ocean. |
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AbstractList | Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea region of Russia, represent the earliest known evidence in the fossil record of feeding traces associated with the responsible bilaterian organism. These feeding patterns exclude arthropod makers and point to the systematic feeding excavation of seafloor microbial mats by large bilaterians of molluscan grade. Since the scratch traces were made into microbial mats, animals could crawl over previous traces without disturbing them. The trace maker is identified as Kimberella quadrata, whose death masks co-occur with the mat excavation traces in both Russia and South Australia. The co-occurrence of animals and their systematic feeding traces in the record of the Ediacara biota supports previous trace fossil evidence that bilaterians existed globally before the Cambrian explosion of life in the ocean. Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea region of Russia, represent the earliest known evidence in the fossil record of feeding traces associated with the responsible bilaterian organism. These feeding patterns exclude arthropod makers and point to the systematic feeding excavation of seafloor microbial mats by large bilaterians of molluscan grade. Since the scratch traces were made into microbial mats, animals could crawl over previous traces without disturbing them. The trace maker is identified as Kimberella quadrata, whose death masks co-occur with the mat excavation traces in both Russia and South Australia. The co-occurrence of animals and their systematic feeding traces in the record of the Ediacara biota supports previous trace fossil evidence that bilaterians existed globally before the Cambrian explosion of life in the ocean. [PUBLICATION ABSTRACT] Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea region of Russia, represent the earliest known evidence in the fossil record of feeding traces associated with the responsible bilaterian organism. These feeding patterns exclude arthropod makers and point to the systematic feeding excavation of seafloor microbial mats by large bilaterians of molluscan grade. Since the scratch traces were made into microbial mats, animals could crawl over previous traces without disturbing them. The trace maker is identified as Kimberella quadrata , whose death masks co-occur with the mat excavation traces in both Russia and South Australia. The co-occurrence of animals and their systematic feeding traces in the record of the Ediacara biota supports previous trace fossil evidence that bilaterians existed globally before the Cambrian explosion of life in the ocean. |
Author | Gehling, James G Runnegar, Bruce N Droser, Mary L |
Author_xml | – sequence: 1 givenname: James G surname: Gehling fullname: Gehling, James G email: jim.gehling@samuseum.sa.gov.au organization: > – sequence: 2 givenname: Bruce N surname: Runnegar fullname: Runnegar, Bruce N email: runnegar@ucla.edu organization: >; and – sequence: 3 givenname: Mary L surname: Droser fullname: Droser, Mary L email: mary.droser@ucr.edu organization: > |
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Copyright | Copyright © The Paleontological Society GeoRef, Copyright 2020, American Geosciences Institute. Reference includes data from GeoScienceWorld @Alexandria, VA @USA @United States. Abstract, Copyright, The Paleontological Society Copyright © 2014 The Paleontological Society Copyright Paleontological Society Mar 2014 |
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Snippet | Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea... Ediacara fan-shaped sets of paired scratches Kimberichnus teruzzii from the Ediacara Member of the Rawnsley Quartzite, South Australia, and the White Sea... |
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SubjectTerms | Algae Animals Arctic Ocean Arthropoda Australasia Australia Barents Sea Bilateria Biota Cambrian Commonwealth of Independent States Ediacara Ediacaran Excavation feeding Flinders Ranges Fossils ichnofossils Invertebrata invertebrate Kimberella quadrata Kimberichnus teruzzii Lava Marine Mollusca Mollusks morphology National parks Neoproterozoic Ocean floor Organisms paleoecology Paleontology Precambrian Proterozoic Rawnsley Quartzite Russian Federation Shellfish South Australia Stratigraphy taxonomy Trace fossils upper Precambrian White Sea |
Title | Scratch Traces of Large Ediacara Bilaterian Animals |
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