Evidence map›Paper›PMID 42599909›Full record

ArticlePloS one2026

Insights into adaptive evolution in different locomotor modes and phylogeny of Sciuridae from mitogenomes of flying and tree squirrels.

Di Zhao, Zhongsong Wang, Wenyu Song, Wenge Dong

Abstract read
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Article in PloS one, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

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3 · Its place in the literature

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4 · The record

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PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

4 authors.

Di ZhaoKey Laboratory of Ectoparasite Systematics and Evolution of Yunnan Provincial Education Department, Institute of Pathogens and Vectors, Dali University, Dali, China.ORCID https://orcid.org/0009-0008-4598-6201
Zhongsong WangKey Laboratory of Ectoparasite Systematics and Evolution of Yunnan Provincial Education Department, Institute of Pathogens and Vectors, Dali University, Dali, China.
Wenyu SongKey Laboratory of Ectoparasite Systematics and Evolution of Yunnan Provincial Education Department, Institute of Pathogens and Vectors, Dali University, Dali, China.
Wenge DongKey Laboratory of Ectoparasite Systematics and Evolution of Yunnan Provincial Education Department, Institute of Pathogens and Vectors, Dali University, Dali, China.ORCID https://orcid.org/0000-0001-9239-5465

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

Mitogenomes offer valuable insights into evolutionary adaptation. Squirrels have evolved two distinct locomotor modes, gliding and scansorial climbing. To explore whether such locomotor disparities are reflected at the mitogenome level, we newly sequenced the Priapomys leonardi mitogenome and compared it with published mitogenomes of gliding (flying squirrels) and scansorial (tree squirrels). Our result revealed highly conserved mitogenomic organization across both tribes, with consistent gene arrangement, nucleotide composition, codon site base composition, and codon usage patterns. Evolutionary rates showed higher Ka/Ks ratios of ATP8, COX1, CYTB, and ND5 genes in the Pteromyini than in the Sciurini. Codon usage bias was more than in flying squirrels than in tree squirrels. These results suggested that divergent natural selection acted on these both lineages. We reconstructed the phylogenetic tree of the family Sciuridae. Phylogenetic analysis robustly revealed four monophyletic subfamilies: Ratufinae, Sciurinae, Xerinae, and Callosciurinae. The phylogenetic relationship among these subfamilies was ((Callosciurinae + Xerinae) + Sciurinae) + Ratufinae, with high nodal support. Phylogenetic reconstruction placed Priapomys leonardi within Sciuridae, and supported a sister relationship between Pteromyini (flying squirrels) and Sciurini (tree squirrels). This study provides insights into locomotor mode-linked adaptive evolution and offers a genetic foundation for future research on sciurid phylogeny and species evolution.

Indexed as

Adaptation, PhysiologicalEvolution, MolecularGenome, MitochondrialLocomotionPhylogenySciuridaeAnimalsBase CompositionCodonCodon UsageCodon

Identifiers

PMID42599909
PMCPMC13475863

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.