Keyword search (4,163 papers available)

"Feyten LEA" Authored Publications:

Title Authors PubMed ID
1 Anxiolytic effects of diazepam in Trinidadian guppies exposed to chemical cues indicating predation risk Crane AL; Feyten LEA; Brusseau AJP; Dumaresq Synnott F; Ramnarine IW; Ferrari MCO; Brown GE; 40905336
CONCORDIA
2 Anxiolytic effects of diazepam in Trinidadian guppies exposed to chemical cues indicating predation risk Crane AL; Feyten LEA; Brusseau AJP; Dumaresq Synnott F; Ramnarine IW; Ferrari MCO; Brown GE; 40905351
CONCORDIA
3 Antipredator decisions of male Trinidadian guppies ( em Poecilia reticulata /em ) depend on social cues from females Brusseau AJP; Feyten LEA; Crane AL; Ramnarine IW; Ferrari MCO; Brown GE; 40264715
BIOLOGY
4 Exploring the effects of anthropogenic disturbance on predator inspection activity in Trinidadian guppies Brusseau AJP; Feyten LEA; Crane AL; Brown GE; 38476138
BIOLOGY
5 Uncertainty about predation risk: a conceptual review Crane AL; Feyten LEA; Preagola AA; Ferrari MCO; Brown GE; 37839808
BIOLOGY
6 Microhabitat conditions drive uncertainty of risk and shape neophobic responses in Trinidadian guppies, Poecilia reticulata Feyten LEA; Ramnarine IW; Brown GE; 37753307
BIOLOGY
7 Assessing effects of predator density and diversity on neophobia in Trinidadian guppies Feyten LEA; Demers EEM; Ramnarine IW; Brown GE; 35907447
BIOLOGY
8 Exploratory decisions of Trinidadian guppies when uncertain about predation risk Crane AL; Demers EE; Feyten LEA; Ramnarine IW; Brown GE; 34741669
BIOLOGY
9 The propensity for re-triggered predation fear in a prey fish. Crane AL, Feyten LEA, Ramnarine IW, Brown GE 32518253
BIOLOGY
10 Sender and receiver experience alters the response of fish to disturbance cues. Goldman JA, Feyten LEA, Ramnarine IW, Brown GE 32440286
BIOLOGY
11 High-risk environments promote chemical disturbance signalling among socially familiar Trinidadian guppies. Crane AL, Feyten LEA, Ramnarine IW, Brown GE 32296954
BIOLOGY
12 Predation risk assessment based on uncertain information: interacting effects of known and unknown cues. Feyten LEA, Demers EEM, Ramnarine IW, Brown GE 30697241
BIOLOGY

 

Title:High-risk environments promote chemical disturbance signalling among socially familiar Trinidadian guppies.
Authors:Crane ALFeyten LEARamnarine IWBrown GE
Link:https://www.ncbi.nlm.nih.gov/pubmed/32296954?dopt=Abstract
DOI:10.1007/s00442-020-04652-6
Publication:Oecologia
Keywords:AudienceCommunicationFamiliarityPredation riskSocial cues
PMID:32296954 Category:Oecologia Date Added:2020-04-17
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, Montreal, Canada. adam.crane@concordia.ca.
2 Department of Biology, Concordia University, Montreal, Canada.
3 Department of Life Sciences, University of the West Indies, St. Augustine, Trinidad and Tobago.

Description:

High-risk environments promote chemical disturbance signalling among socially familiar Trinidadian guppies.

Oecologia. 2020 Apr 15;:

Authors: Crane AL, Feyten LEA, Ramnarine IW, Brown GE

Abstract

Under predation threat, many species produce cues that can serve as crucial sources of information for social companions. For instance, chemical cues released when experiencing a disturbing event (i.e. 'disturbance cues'), such as a predator chase, can lead to antipredator avoidance and increased survival for nearby individuals. These chemicals also have potential to be produced as a voluntary signal for communicating threat to others. We found evidence for this hypothesis by manipulating the shoal familiarity of guppies from populations differing in background predation risk and then presenting their disturbance cues to unfamiliar conspecifics from the same populations. Receivers from low-risk sites increased shoal cohesion and decreased area use regardless of whether the disturbance cues were produced in donor groups where members were familiar or unfamiliar with each other. However, receivers from high-risk sites showed strong antipredator reactions towards disturbance chemicals produced in familiar groups and no response towards those produced in unfamiliar groups, suggesting that donors from high-risk sites may alter the quality or quantity of their disturbance cues to influence familiar individuals to enact predator defences. Because high-risk environments strengthen guppy social networks, these environments may facilitate reliance on chemical disturbance signalling to coordinate group defences with familiar individuals.

PMID: 32296954 [PubMed - as supplied by publisher]





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