A 480-million-year-old parasitic spionid annelid
Data files
Aug 05, 2025 version files 64.21 GB
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MCZ_IP_202859_202863_Dragonfly.ORSSession
20.78 GB
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MCZ_IP_202859_202863.zip
23.62 GB
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MCZ_IP_202864_202865_Dragonfly.ORSSession
13.37 GB
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MCZ_IP_202864_202865.zip
6.44 GB
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README.md
5.04 KB
Abstract
The Paleozoic fossil record can provide unique insights into the evolution of life history traits through the direct preservation of interspecific interactions in deep time. However, evidence of direct interactions between different species is relatively rare, even among localities with exceptional soft-tissue preservation, with most examples being known from Cambrian marine deposits. Here we provide the first evidence of parasitic organisms from the Fezouata Shale biota of Morocco, the most diverse and abundant Ordovician site with exceptional preservation, but that has heretofore shown no evidence for parasitism. Seven specimens of the bivalve mollusc Babinka show highly characteristic, question mark-shaped shell borings consistent with those produced by modern and fossil parasitic spionid polychaetes. Our results include anatomical and quantitative comparisons with modern and fossil spionid borings and underscore two major conclusions. The first is that the spionid polychaetes were present in the Early Ordovician, which evidences a significant biostratigraphic shift in their temporal origins from their accepted Devonian occurrence. The second is that many unique life history strategies, which were significant components of the Fezouata Shale biota, remain undiscovered, despite the high concentration of taxonomic attention the site has received.
Dataset DOI: 10.5061/dryad.wwpzgmsxm
Description of the data and file structure
Methods:
Fossil specimens were scanned using a SkyScan1273 (Bruker Corporation) micro-computed tomography (micro-CT) scanner at the Museum of Comparative Zoology Digital Imaging Facilities. The slab containing MCZ.IP.202864 and MCZ.IP.202865 was scanned with a 1mm copper filter with energy set at 130 kV/61 μA and an imaging pixel size of 44.41μm. The slab containing MCZ.IP.202859 to MCZ.IP.202863 was scanned with a 2mm copper filter with energy set at 130 kV/278 μA and an imaging pixel size of 35.63μm. The scan files were reconstructed as cross-sectional TIFF stacks in NRecon (Bruker Corporation) and visualized using Dragonfly software, Version 2021.1 for Windows. Comet Technologies Canada Inc., Montreal, Canada; software available at https://dragonfly.comet.tech/.
File Types:
This README file includes combined instructions for two forms of data:
The Dragonfly Sessions work best when opened with the eponymous software (https://dragonfly.comet.tech/; see details below), and include all the information regarding the parameters used for visualizing the data used in the results and discussion of the published manuscript.
The TIFF Stacks contain the raw data (after minimal processing/reconstruction from the micro-CT scanner), consisting of grayscale TIFF files that correspond to the tomographic sections of all the datasets analyzed. This option allows users to examine the data without the need to use Dragonfly, and can be accessed with other freeware options, including SPIERS (https://spiers-software.org/) and Drishti (https://github.com/nci/drishti).
The compressed ZIP files were compressed using Windows and will be unzipped.ORSSession files or to folders of .tif image files.
ORSSession files may be opened in Dragonfly using a free noncommercial license.
Dragonfly 2024.1 [Computer software]. Comet Technologies Canada Inc., Montreal, Canada; software available at https://dragonfly.comet.tech/
Folders of reconstructed .tif stacks may be visualized in many programs. The authors used Dragonfly 2019 4.0 (Object Research Systems, Montreal, Canada); the corresponding sessions are archived here. Other visualization tools can import the images here, including the free software Drishti, cited below.
Ajay Limaye; Drishti: a volume exploration and presentation tool. Proc. SPIE 8506, Developments in X-Ray Tomography VIII, 85060X (October 17, 2012). https://github.com/nci/drishti/wiki
- MCZ_IP_202859_202863_Dragonfly.ORSSession
This zipped file corresponds to the scan of MCZ.IP.202859, MCZ.IP.20260, MCZ.IP.20261, MCZ.IP.20262, and MCZ.IP.20263, in Figure 1. The Dragonfly Session may be opened in the Dragonfly program.
- MCZ_IP_202859_202863.zip
This zipped folder of reconstructed .tif images corresponds to the scan of MCZ.IP.202859, MCZ.IP.20260, MCZ.IP.20261, MCZ.IP.20262, and MCZ.IP.20263, in Figure 1. The .tif files may be opened in Dragonfly, Drishti, or other 3D image processing software.
- MCZ_IP_202864_202865_Dragonfly.ORSSession
This zipped file corresponds to the scan of MCZ.IP.202864 and MCZ.IP.20265, in Figure 2. The Dragonfly Session may be opened in the Dragonfly program.
- MCZ_IP_202864_202865.zip
This zipped folder of reconstructed .tif images corresponds to the scan of MCZ.IP.202864 and MCZ.IP.20265, in Figure 2. The .tif files may be opened in Dragonfly, Drishti, or other 3D image processing software.
