Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Insights from big data into the fossilization potential of marine communities

View through CrossRef
<p>Only a small percentage of all life that ever existed is preserved in the rock record. Some animals and environments are particularly unlikely to fossilize—e.g., soft-bodied organisms and high-energy habitats—biasing fossil deposit faunal composition and resultant inferences about macroevolution and macroecology. To estimate the extent of information loss caused by non-preservation we compared diversity data in over 20,000 modern marine assemblages (Ocean Biogeographic Information System; OBIS) with fossil occurrence data (Paleobiology Database; PBDB) to yield a global assessment of assemblage-level fossilization potential as it varies across depth, habitats, and environments. We used two different metrics, taxon fossilization potential and within-environment fossilization potential, to assess the proportion of taxa in a modern community with PBDB occurrences or with PBDB occurrences in the same environment, respectively. Averaged across all 20,000+ marine assemblages, mean taxon fossilization potential is 38% and mean values vary between environments: from 34% in shallow and deep water, 44% in coral reefs, 51% on seamounts, to 15% in pelagic assemblages. Mean within-environment fossilization potential, in contrast, does not exceed 32% (in shallow water), a lower value than that obtained in other studies, and may approach zero (on seamounts and pelagic environments). Differences between these two metrics indicate the large control of environment on fossilization potential. Our results provide a means to include and compare palaeoecological dynamics across a broader range of settings in the fossil record, while accounting for differences in fossilization potential among environments.</p>
Title: Insights from big data into the fossilization potential of marine communities
Description:
<p>Only a small percentage of all life that ever existed is preserved in the rock record.
Some animals and environments are particularly unlikely to fossilize—e.
g.
, soft-bodied organisms and high-energy habitats—biasing fossil deposit faunal composition and resultant inferences about macroevolution and macroecology.
To estimate the extent of information loss caused by non-preservation we compared diversity data in over 20,000 modern marine assemblages (Ocean Biogeographic Information System; OBIS) with fossil occurrence data (Paleobiology Database; PBDB) to yield a global assessment of assemblage-level fossilization potential as it varies across depth, habitats, and environments.
We used two different metrics, taxon fossilization potential and within-environment fossilization potential, to assess the proportion of taxa in a modern community with PBDB occurrences or with PBDB occurrences in the same environment, respectively.
Averaged across all 20,000+ marine assemblages, mean taxon fossilization potential is 38% and mean values vary between environments: from 34% in shallow and deep water, 44% in coral reefs, 51% on seamounts, to 15% in pelagic assemblages.
Mean within-environment fossilization potential, in contrast, does not exceed 32% (in shallow water), a lower value than that obtained in other studies, and may approach zero (on seamounts and pelagic environments).
Differences between these two metrics indicate the large control of environment on fossilization potential.
Our results provide a means to include and compare palaeoecological dynamics across a broader range of settings in the fossil record, while accounting for differences in fossilization potential among environments.
</p>.

Related Results

Burden of the Beast
Burden of the Beast
Introduction Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...
Phonological Fossilization in the Prosess of Mandarin Native Speakers Learning Indonesian as a Second Language
Phonological Fossilization in the Prosess of Mandarin Native Speakers Learning Indonesian as a Second Language
Phonological fossilization, particularly in terms of pronunciation, presents a significant obstacle for second language learners in further advancing their language proficiency. Th...
Fossilization potential of marine assemblages and environments
Fossilization potential of marine assemblages and environments
AbstractThe fossil record provides the only direct record of the history of life, but it is an incomplete one. Discriminating between what is absent and what is simply not preserve...
Fossilization Analysis on Segmental and Suprasegmental Features of EFL Learners (Javanese-English): A Comparative Study
Fossilization Analysis on Segmental and Suprasegmental Features of EFL Learners (Javanese-English): A Comparative Study
EFL learners ( Javanese-English) have the same background in that their mother tongue is Javanese. Although students of the English Education Study Program (hereafter PBI) have exp...
GEOSPATIAL ASPECTS OF FINANCIAL CAPACITY OF TERRITORIAL COMMUNITIES OF TERNOPIL REGION
GEOSPATIAL ASPECTS OF FINANCIAL CAPACITY OF TERRITORIAL COMMUNITIES OF TERNOPIL REGION
In the article geospatial aspects of the financial capacity of territorial communities of Ternopil region are described. The need to conduct such a study has been updated, since no...
FOSSILIZATION IN THE INTERLANGUAGE OF DUSUN TINDAL TRIBE YOUNGER GENERATION
FOSSILIZATION IN THE INTERLANGUAGE OF DUSUN TINDAL TRIBE YOUNGER GENERATION
The majority of Dusun Tindal tribe learners in Sabah failed to achieve competency as native Malay speakers due to the fossilization mechanism which is performance-related. Hence, t...
Research on the dynamic co-evolution of the complex system of economy-innovation-environment of the marine industry in China
Research on the dynamic co-evolution of the complex system of economy-innovation-environment of the marine industry in China
IntroductionIn the context of accelerating the construction of a marine power, relying on scientific and technological innovation to drive the high-quality growth of the marine eco...
Digital Learning to Prevent Arabic Language Fossilization: A Systematic Review
Digital Learning to Prevent Arabic Language Fossilization: A Systematic Review
Fossilization is one of the main problems in learning Arabic as a foreign language. It happens when phonological, lexical, and grammatical errors stay in the learner's language eve...

Back to Top