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  5. Molecular fingerprints resolve affinities of Rhynie chert organic fossils

Molecular fingerprints resolve affinities of Rhynie chert organic fossils

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Resource type
Journal article
Creator (person)
Loron, C C
Rodriguez Dzul, E
Orr, P J
Gromov, A V
Fraser, Nicholas C
ORCIDORCID logo
McMahon, S
Date published
March 13, 2023
Abstract
The affinities of extinct organisms are often difficult to resolve using morphological data alone. Chemical analysis of carbonaceous specimens can complement traditional approaches, but the search for taxon-specific signals in ancient, thermally altered organic matter is challenging and controversial, partly because suitable positive controls are lacking. Here, we show that non-destructive Fourier Transform Infrared Spectroscopy (FTIR) resolves in-situ molecular fingerprints in the famous 407 Ma Rhynie chert fossil assemblage of Aberdeenshire, Scotland, an important early terrestrial Lagerstà¤tte. Remarkably, unsupervised clustering methods (principal components analysis and K-mean) separate the fossil spectra naturally into eukaryotes and prokaryotes (cyanobacteria). Additional multivariate statistics and machine-learning approaches also differentiate prokaryotes from eukaryotes, and discriminate eukaryotic tissue types, despite the overwhelming influence of silica. We find that these methods can clarify the affinities of morphologically ambiguous taxa; in the Rhynie chert for example, we show that the problematic “nematophytes” have a plant-like composition. Overall, we demonstrate that the famously exquisite preservation of cells, tissues and organisms in the Rhynie chert accompanies similarly impressive preservation of molecular information. These results provide a compelling positive control that validates the use of infrared spectroscopy to investigate the affinity of organic fossils in chert.
Journal title
Nature Communications
Volume
14
Issue
1387
Publisher
Springer Nature
eISSN
2041-1723
Date accepted
July 12, 2022
Official URL
https://doi.org/10.1038/s41467-023-37047-1
Related URL
https://www.nms.ac.uk/explore-our-collections/stories/natural-sciences/closing-romers-gap/
https://www.ed.ac.uk/news/2023/fossil-site-is-rosetta-stone-for-understanding-ear?utm_source=twitter&utm_medium=organic_post&utm_campaign=cam_news&utm_content=fossil_site_rosetta_stone
https://blog.nms.ac.uk/2021/05/13/the-scottish-fossil-record-or-what-lies-beneath/
https://www.nms.ac.uk/collections-research/collections-departments/natural-sciences/meet-the-team/dr-nick-fraser/
Rights statement
In Copyright
Keywords
Eukaryote
Prokaryote
Biogeochemistry
Palaeontology
Additional information
Full article is now available via the official URL
Managed by the British Library and supported by the AHRC

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