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

Vocal recognition of partners by female prairie voles

View through CrossRef
ABSTRACT Recognizing conspecifics is vitally important for differentiating kin, mates, offspring and social threats. 1 Although often reliant upon chemical or visual cues, individual recognition across the animal kingdom is also facilitated by unique acoustic signatures in vocalizations. 2–4 However, amongst the large Muroidea superfamily of rodents that encompasses laboratory species amenable to neurobiological studies, there is scant behavioral evidence for individual vocal recognition despite individual acoustic variation. 5–10 Playback studies have found evidence for coarse communicative functions like mate attraction and territorial defense, but limited finer ability to discriminate known individuals’ vocalizations. 11–17 Such a capacity would be adaptive for species that form lifelong pair bonds requiring partner identification across timescales, distances and sensory modalities, so to improve the chance of finding individual vocal recognition in a Muroid rodent, we investigated vocal communication in the prairie vole ( Microtus ochrogaster ) – one of the few socially monogamous mammals. 18 We found that the ultrasonic vocalizations of adult prairie voles can communicate individual identity. Even though the vocalizations of individual males change after cohabitating with a female to form a bond, acoustic variation across individuals is greater than within an individual so that vocalizations of different males in a common context are identifiable above chance. Critically, females behaviorally discriminate their partner’s vocalizations over a stranger’s, even if emitted to another stimulus female. These results establish the acoustic and behavioral foundation for individual vocal recognition in prairie voles, where neurobiological tools 19–22 enable future studies revealing its causal neural mechanisms. Highlights Muroid rodents can display individual vocal recognition Adult prairie vole USVs are more variable across individuals than social experience Individual vole identity can be decoded from their vocalizations Carefully constructed protocol sustains vole’s interest in vocal playback Female prairie voles behaviorally recognize their mate’s vocalizations
Title: Vocal recognition of partners by female prairie voles
Description:
ABSTRACT Recognizing conspecifics is vitally important for differentiating kin, mates, offspring and social threats.
1 Although often reliant upon chemical or visual cues, individual recognition across the animal kingdom is also facilitated by unique acoustic signatures in vocalizations.
2–4 However, amongst the large Muroidea superfamily of rodents that encompasses laboratory species amenable to neurobiological studies, there is scant behavioral evidence for individual vocal recognition despite individual acoustic variation.
5–10 Playback studies have found evidence for coarse communicative functions like mate attraction and territorial defense, but limited finer ability to discriminate known individuals’ vocalizations.
11–17 Such a capacity would be adaptive for species that form lifelong pair bonds requiring partner identification across timescales, distances and sensory modalities, so to improve the chance of finding individual vocal recognition in a Muroid rodent, we investigated vocal communication in the prairie vole ( Microtus ochrogaster ) – one of the few socially monogamous mammals.
18 We found that the ultrasonic vocalizations of adult prairie voles can communicate individual identity.
Even though the vocalizations of individual males change after cohabitating with a female to form a bond, acoustic variation across individuals is greater than within an individual so that vocalizations of different males in a common context are identifiable above chance.
Critically, females behaviorally discriminate their partner’s vocalizations over a stranger’s, even if emitted to another stimulus female.
These results establish the acoustic and behavioral foundation for individual vocal recognition in prairie voles, where neurobiological tools 19–22 enable future studies revealing its causal neural mechanisms.
Highlights Muroid rodents can display individual vocal recognition Adult prairie vole USVs are more variable across individuals than social experience Individual vole identity can be decoded from their vocalizations Carefully constructed protocol sustains vole’s interest in vocal playback Female prairie voles behaviorally recognize their mate’s vocalizations.

Related Results

Effects of Black-Tailed Prairie Dog on Shortgrass Vegetation of Western Kansas
Effects of Black-Tailed Prairie Dog on Shortgrass Vegetation of Western Kansas
Previous studies indicate the black-tailed prairie dog (Cynomys ludovicianus) alters its environment through grazing, clipping, and burrowing, which affect plant community composit...
Evapotranspiration from Northern Semiarid Grasslands
Evapotranspiration from Northern Semiarid Grasslands
Management of forage production for livestock grazing on semiarid grasslands depends on water availability. Evapotranspiration (ET) was measured using the Bowen ratio energy balanc...
The Development of a Vocal Teaching Model Based on Verdi Art Songs for Undergraduate Level in The People’s Republic of China
The Development of a Vocal Teaching Model Based on Verdi Art Songs for Undergraduate Level in The People’s Republic of China
This research aimed to develop a comprehensive vocal teaching model grounded in Giuseppe Verdi’s art music, tailored specifically for undergraduate music students in the People’s R...
Prairie Grouse
Prairie Grouse
Abstract Prairie grouse, which include greater prairie-chicken (Tympanuchus cupido), lesser prairie-chicken (T. pallidicinctus), and sharp-tailed grouse (T. phasianellus)...
summer
summer
Summer was a time for transplanting prairie wildflowers. We knew that we wanted to restore prairie on the cornfield in front of the Shack. How did we know where we could get these ...
Reproductive Stages Limiting Productivity of the Endangered Attwater’s Prairie Chicken
Reproductive Stages Limiting Productivity of the Endangered Attwater’s Prairie Chicken
An important concern of conservation biologists is determining what conditions most limit the number of individuals in endangered populations. Because time is a constraint, narrowi...
Catecholamine-synthesizing enzymes in adrenals of seasonally acclimatized voles
Catecholamine-synthesizing enzymes in adrenals of seasonally acclimatized voles
Tyrosine hydroxylase (TH) and phenylethanolamine-N-methyltransferase (PNMT) activities were assayed in adrenal glands of the following groups of the Alaskan red-backed vole (Clethr...
Simulating Strategic Implementation of the CRP to Increase Greater Prairie‐Chicken Abundance
Simulating Strategic Implementation of the CRP to Increase Greater Prairie‐Chicken Abundance
ABSTRACTThe Conservation Reserve Program (CRP) has the potential to influence the distribution and abundance of grasslands in many agricultural landscapes, and thereby provide habi...

Back to Top