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Zebrafish and Medaka as model organisms for climate change research: Global literature scientometric analysis

Journal

FRONTIERS IN EARTH SCIENCE
Volume 10, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/feart.2022.988710

Keywords

bibliometrics; Citespace; environmental sciences; global warming; hypoxia number of articles affiliations

Funding

  1. PYPA Initiative

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Determining the impact of climate change on aquatic organisms is crucial for analyzing food and protein sources important for human nutrition. This study aimed to review the current development and frontiers of climate change model organisms. Results showed that Zebrafish and Medaka are important model organisms for climate change research, with Zebrafish gaining increasing importance due to its simple anatomy and established studies.
Determining how climate change affects aquatic organisms, such as fish is vital, since this could directly or indirectly impact food and protein sources that are important for human nutrition. Thus, identifying suitable organisms for studying the impacts of climate change on aquatic species is essential. It is most effective to select model organisms for climate change study and determine how each organism might adapt within the diversity of organisms present. This study aimed to review the current development and frontiers of climate change's model organism based on the literature. We conducted a scientometric analysis by differentiating between publications on different model species, the number and origin of authors and affiliations involved, the citation analysis, and the most common keywords used. Increased publication numbers for Zebrafish and Medaka were detected during the analysis of the networks. Our results showed that both species are among the most important aquatic model organisms for climate change related research. Furthermore, we found that these model organisms, especially the Zebrafish are becoming increasingly important towards climate change related studies, because of their simple anatomy and established biological studies. Our analysis could be on the forefront for disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, policymakers, and to the public worldwide for future contribution to the community resources preservation.

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