Reproductive Biology, Mating System, and Extended Natal Association in the Echolocating Dalou Mountains Tree Mouse ( Typhlomys daloushanensis ): Insights Into Sensory Adaptation and Life‐History Strategy

Understanding mating systems is central to ecology and evolution because reproduction shapes population dynamics, social organization, and species persistence. Interpreting these processes is especially important in rodents because of the key ecological role they play in seed dispersal and terrestrial food webs. The reproductive biology of the blind, echolocating rodent Typhlomys daloushanensis is currently not known, yet this knowledge would provide a unique opportunity to link sensory biology with life history and social organization. Here, we characterize reproduction, neonatal development, and social structure for this species under laboratory conditions. We established a captive breeding colony of T. daloushanensis and quantified key reproductive parameters, including gestation length, litter size, inter-birth interval, and offspring development to puberty. Successful reproduction occurred exclusively in male-female pairs, with no mating behavior observed in group housing. The species exhibited a life history consistent with other small rodents, with gestation lasting 28-30 days, weaning at ∼21-28 days, and maturation at >60 days, contrasting with the slower reproductive schedules of echolocating bats. Litter size ranged from 2 to 5, and offspring remained with parents well beyond weaning, indicating prolonged natal association. These findings link reproduction to social organization in this species. More broadly, our results establish foundational knowledge of reproduction in this echolocating rodent and provide a basis for future work on sensory ecology, social behavior, and the development of Typhlomys as a tractable experimental system.

Authors

Institutions

Publication Details

Journal
Integrative Zoology
Published
2026-09-04
DOI
https://doi.org/10.1111/1749-4877.70188
Primary Topic
Bat Biology and Ecology Studies
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Reproductive Biology, Mating System, and Extended Natal Association in the Echolocating Dalou Mountains Tree Mouse ( Typhlomys daloushanensis ): Insights Into Sensory Adaptation and Life‐History Strategy

Chris Newman, Tian Tian, Juncheng Li, Nan Wu et al.
Integrative Zoology
Bat Biology and Ecology Studies
article

Reproductive Biology, Mating System, and Extended Natal Association in the Echolocating Dalou Mountains Tree Mouse ( Typhlomys daloushanensis ): Insights Into Sensory Adaptation and Life‐History Strategy

Chris Newman, Tian Tian, Juncheng Li, Nan Wu, Christina D. Buesching, Rui Yuan, Youbing Zhou, Tianyu Ren, Jinwei Wu
article en

Abstract

Understanding mating systems is central to ecology and evolution because reproduction shapes population dynamics, social organization, and species persistence. Interpreting these processes is especially important in rodents because of the key ecological role they play in seed dispersal and terrestrial food webs. The reproductive biology of the blind, echolocating rodent Typhlomys daloushanensis is currently not known, yet this knowledge would provide a unique opportunity to link sensory biology with life history and social organization. Here, we characterize reproduction, neonatal development, and social structure for this species under laboratory conditions. We established a captive breeding colony of T. daloushanensis and quantified key reproductive parameters, including gestation length, litter size, inter-birth interval, and offspring development to puberty. Successful reproduction occurred exclusively in male-female pairs, with no mating behavior observed in group housing. The species exhibited a life history consistent with other small rodents, with gestation lasting 28-30 days, weaning at ∼21-28 days, and maturation at >60 days, contrasting with the slower reproductive schedules of echolocating bats. Litter size ranged from 2 to 5, and offspring remained with parents well beyond weaning, indicating prolonged natal association. These findings link reproduction to social organization in this species. More broadly, our results establish foundational knowledge of reproduction in this echolocating rodent and provide a basis for future work on sensory ecology, social behavior, and the development of Typhlomys as a tractable experimental system.

Integrative Zoology
China Three Gorges University (CN), University of Oxford (GB), Okanagan University College (CA), Tokyo University of Agriculture and Technology (JP)
National Natural Science Foundation of China
Openalex Percentile: Top 7%
Bat Biology and Ecology Studies
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.