Abstract
Coronaviruses have been extensively detected in bats over the past few decades. However, increasing evidence suggests that other taxa, such as Rodentia, Eulipotyphla, and Lagomorpha, may have played a significant role in the ecology and evolution of some coronaviruses. Here, we compile recent contributions illuminating these mammals' enigmatic role in coronavirus evolution. We highlight how taxonomic and technical biases in coronavirus surveillance may have diminished the perceived importance of these animals in the ecology and evolution of certain coronaviruses and propose future directions to uncover the role of these small terrestrial mammals in coronavirus circulation. Additionally, we examine ecological factors that drive the maintenance and circulation of coronaviruses within small mammal populations and explore the importance of host dynamics on viral circulation within these groups. Furthermore, we address the potential risk small terrestrial mammals pose as sources or intermediate hosts for newly emergent human and livestock pathogenic coronaviruses. We address the under-investigation of specific taxa like Eulipotyphla in coronavirus evolution, emphasizing the need for comprehensive surveillance and research efforts. By recommending these future directions, we aim to enhance our understanding of coronavirus ecology and improve our ability to manage potential zoonotic threats.
Full text
2,238 characters
· extracted from
oa-doi-fallback
· click to expand
This is a Preprint and has not been peer reviewed. This is version 1 of this Preprint.
You must log in to post a comment.
There are no comments or no comments have been made public for this article.
This is a Preprint and has not been peer reviewed. This is version 1 of this Preprint.
Add a Comment
You must log in to post a comment.
Comments
There are no comments or no comments have been made public for this article.
Coronaviruses have been extensively detected in bats over the past few decades. However, increasing evidence suggests that other taxa, such as Rodentia, Eulipotyphla, and Lagomorpha, may have played a significant role in the ecology and evolution of some coronaviruses. Here, we compile recent contributions illuminating these mammals' enigmatic role in coronavirus evolution. We highlight how taxonomic and technical biases in coronavirus surveillance may have diminished the perceived importance of these animals in the ecology and evolution of certain coronaviruses and propose future directions to uncover the role of these small terrestrial mammals in coronavirus circulation. Additionally, we examine ecological factors that drive the maintenance and circulation of coronaviruses within small mammal populations and explore the importance of host dynamics on viral circulation within these groups. Furthermore, we address the potential risk small terrestrial mammals pose as sources or intermediate hosts for newly emergent human and livestock pathogenic coronaviruses. We address the under-investigation of specific taxa like Eulipotyphla in coronavirus evolution, emphasizing the need for comprehensive surveillance and research efforts. By recommending these future directions, we aim to enhance our understanding of coronavirus ecology and improve our ability to manage potential zoonotic threats.
https://doi.org/10.32942/X2QH22
Ecology and Evolutionary Biology, Evolution, Genetics and Genomics, Life Sciences, Molecular Genetics, Other Ecology and Evolutionary Biology
coronavirus, small terrestrial mammals, ecology, evolution, Rodentia, Eulipotyphla, Lagomorpha
Published: 2026-01-28 20:24
Last Updated: 2026-01-28 20:24
CC-By Attribution-NonCommercial-NoDerivatives 4.0 International
Language:
English
Text is read by the "Ask this paper" AI Q&A widget below.
Extraction quality varies by source — PMC NXML preserves structure
cleanly, OA-HTML may include some navigation residue, and OA-PDF can
have broken hyphenation. The publisher copy
(via DOI)
is the canonical version.