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Connelly F, Johnsson RD, Mulder RA, Hall ML, Lesku JA. Experimental playback of urban noise does not affect cognitive performance in captive Australian magpies. Biol Open 2024; 13:bio060535. [PMID: 39069816 PMCID: PMC11340814 DOI: 10.1242/bio.060535] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 05/09/2024] [Accepted: 07/23/2024] [Indexed: 07/30/2024] Open
Abstract
Exposure of wildlife to anthropogenic noise is associated with disruptive effects. Research on this topic has focused on behavioural and physiological responses of animals to noise, with little work investigating links to cognitive function. Neurological processes that maintain cognitive performance can be impacted by stress and sleep disturbances. While sleep loss impairs cognitive performance in Australian magpies, it is unclear whether urban noise, which disrupts sleep, can impact cognition as well. To fill this gap, we explored how environmentally relevant urban noise affected the performance of wild-caught, city-living Australian magpies (Gymnorhina tibicen tyrannica) on a cognitive task battery including associative and reversal learning, inhibitory control, and spatial memory. Birds were housed and tested in a laboratory environment; sample sizes varied across tasks (n=7-9 birds). Tests were conducted over 4 weeks, during which all magpies were exposed to both an urban noise playback and a quiet control. Birds were presented with the entire test battery twice: following exposure to, and in the absence of, an anthropogenic noise playback; however, tests were always performed without noise (playback muted during testing). Magpies performed similarly in both treatments on all four tasks. We also found that prior experience with the associative learning task had a strong effect on performance, with birds performing better on their second round of trials. Like previous findings on Australian magpies tested on the same tasks in the wild under noisy conditions, we could not find any disruptive effects on cognitive performance in a controlled experimental laboratory setting.
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Affiliation(s)
- Farley Connelly
- School of BioSciences, The University of Melbourne, Melbourne, Victoria 3010, Australia
- School of Agriculture, Biomedicine and Environment, La Trobe University, Melbourne, Victoria 3086, Australia
- Alameda County Resource Conservation District, Livermore, California 94550, USA
| | - Robin D. Johnsson
- School of Agriculture, Biomedicine and Environment, La Trobe University, Melbourne, Victoria 3086, Australia
- Department of Psychology, Franklin and Marshall College, Lancaster, Pennsylvania 17603, USA
| | - Raoul A. Mulder
- School of BioSciences, The University of Melbourne, Melbourne, Victoria 3010, Australia
| | - Michelle L. Hall
- School of BioSciences, The University of Melbourne, Melbourne, Victoria 3010, Australia
- Bush Heritage Australia, Melbourne, Victoria 3000, Australia
- School of Biological Sciences, The University of Western Australia, Perth, Western Australia 6009, Australia
| | - John A. Lesku
- School of Agriculture, Biomedicine and Environment, La Trobe University, Melbourne, Victoria 3086, Australia
- Research Centre for Future Landscapes, La Trobe University, Melbourne, Victoria 3086, Australia
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Hao Z, Zhang C, Li L, Gao B, Wu R, Pei N, Liu Y. Anthropogenic noise and habitat structure shaping dominant frequency of bird sounds along urban gradients. iScience 2024; 27:109056. [PMID: 38362267 PMCID: PMC10867645 DOI: 10.1016/j.isci.2024.109056] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/13/2023] [Revised: 11/30/2023] [Accepted: 01/24/2024] [Indexed: 02/17/2024] Open
Abstract
The shifts of bird song frequencies in urbanized areas provide a unique system to understand avian acoustic responses to urbanization. Using passive acoustic monitoring and automatic bird sound recognition technology, we explored the frequency variations of six common urban bird species and their associations with habitat structures. Our results demonstrated that bird song frequencies in urban areas were significantly higher than those in peri-urban and rural areas. Anthropogenic noise and habitat structure were identified as crucial factors shaping the acoustic space for birds. We found that noise, urbanization, and open understory spaces are factors contributing to the increase in the dominant frequency of bird sounds. However, habitat variables such as vegetation density and tree height can potentially slow down this upward trend. These findings offer essential insights into the behavioral response of birds in a variety of urban forest habitats, with implications for urban ecosystem management and habitat restoration.
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Affiliation(s)
- Zezhou Hao
- Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China
| | - Chengyun Zhang
- School of Electronics and Communication Engineering, Guangzhou University, Guangzhou 510006, China
| | - Le Li
- Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China
| | - Bingtao Gao
- Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China
| | - Ruichen Wu
- Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China
| | - Nancai Pei
- Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China
| | - Yang Liu
- State Key Laboratory of Biocontrol, School of Ecology, Sun Yat-sen University, Shenzhen 518107, China
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Connelly F, Hall ML, Johnsson RD, Elliot-Kerr S, Dow BR, Lesku JA, Mulder RA. Urban noise does not affect cognitive performance in wild Australian magpies. Anim Behav 2022. [DOI: 10.1016/j.anbehav.2022.03.021] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
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Pandit MM, Eapen J, Pineda-Sabillon G, Caulfield ME, Moreno A, Wilhelm J, Ruyle JE, Bridge ES, Proppe DS. Anthropogenic noise alters parental behavior and nestling developmental patterns, but not fledging condition. Behav Ecol 2021. [DOI: 10.1093/beheco/arab015] [Citation(s) in RCA: 4] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/31/2023] Open
Abstract
Abstract
Anthropogenic noise is a ubiquitous feature of the American landscape, and is a known stressor for many bird species, leading to negative effects in behavior, physiology, reproduction, and ultimately fitness. While a number of studies have examined how anthropogenic noise affects avian fitness, there are few that simultaneously examine how anthropogenic noise impacts the relationship between parental care behavior and nestling fitness. We conducted Brownian noise playbacks for 6 h a day during the nesting cycle on Eastern Bluebird (Sialia sialis) nest boxes to investigate if experimentally elevated noise affected parental care behavior, nestling body conditions, and nestling stress indices. We documented nest attendance by adult females using radio frequency identification (RFID), and we assessed nestling stress by measuring baseline corticosterone levels and telomere lengths. Based on the RFID data collected during individual brood cycles, adult bluebirds exposed to noise had significantly higher feeding rates earlier in the brood cycle than adults in the control group, but reduced feeding rates later in the cycle. Nestlings exposed to noise had higher body conditions than the control nestlings at 11 days of age, but conditions equalized between treatments by day 14. We found no differences in nestling baseline corticosterone levels or nestling telomere lengths between the two treatment groups. Our results revealed that noise altered adult behavior, which corresponded with altered nestling body condition. However, the absence of indicators of longer-term effects of noise on offspring suggests adult behavior may have been a short-term response.
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Affiliation(s)
- Meelyn Mayank Pandit
- Department of Biology, University of Oklahoma, Norman, OK, USA
- Oklahoma Biological Survey, University of Oklahoma, Norman, OK, USA
| | - James Eapen
- Biology Department, Calvin University, SE, Grand Rapids, MI, USA
| | | | - Margaret E Caulfield
- Biology Department, Calvin University, SE, Grand Rapids, MI, USA
- MSU College of Human Medicine, Grand Rapids Research Center, The Department of Translational Neuroscience, NW, Grand Rapids, MI, USA
| | - Alexander Moreno
- School of Electrical and Computer Engineering, University of Oklahoma, Norman, OK, USA
- Advanced Radar Research Center, University of Oklahoma, Norman, OK, USA
| | - Jay Wilhelm
- Russ College of Engineering and Technology, Ohio University, Stocker Center, Athens, OH, USA
| | - Jessica E Ruyle
- School of Electrical and Computer Engineering, University of Oklahoma, Norman, OK, USA
- Advanced Radar Research Center, University of Oklahoma, Norman, OK, USA
| | - Eli S Bridge
- Department of Biology, University of Oklahoma, Norman, OK, USA
- Oklahoma Biological Survey, University of Oklahoma, Norman, OK, USA
| | - Darren S Proppe
- Biology Department, Calvin University, SE, Grand Rapids, MI, USA
- Wild Basin Creative Research Center, Austin, TX, USA
- School of Natural Sciences, St. Edwards University, Austin, TX, USA
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Abstract
Urbanization poses a major threat to biodiversity worldwide. We focused on birds as a well-studied taxon of interest, in order to review literature on traits that influence responses to urbanization. We review 226 papers that were published between 1979 and 2020, and aggregate information on five major groups of traits that have been widely studied: ecological traits, life history, physiology, behavior and genetic traits. Some robust findings on trait changes in individual species as well as bird communities emerge. A lack of specific food and shelter resources has led to the urban bird community being dominated by generalist species, while specialist species show decline. Urbanized birds differ in the behavioral traits, showing an increase in song frequency and amplitude, and bolder behavior, as compared to rural populations of the same species. Differential food resources and predatory pressure results in changes in life history traits, including prolonged breeding duration, and increases in clutch and brood size to compensate for lower survival. Other species-specific changes include changes in hormonal state, body state, and genetic differences from rural populations. We identify gaps in research, with a paucity of studies in tropical cities and a need for greater examination of traits that influence persistence and success in native vs. introduced populations.
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Connelly F, Johnsson RD, Aulsebrook AE, Mulder RA, Hall ML, Vyssotski AL, Lesku JA. Urban noise restricts, fragments, and lightens sleep in Australian magpies. ENVIRONMENTAL POLLUTION (BARKING, ESSEX : 1987) 2020; 267:115484. [PMID: 32882458 DOI: 10.1016/j.envpol.2020.115484] [Citation(s) in RCA: 17] [Impact Index Per Article: 4.3] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 03/29/2020] [Revised: 08/13/2020] [Accepted: 08/19/2020] [Indexed: 05/20/2023]
Abstract
Urban areas are inherently noisy, and this noise can disrupt biological processes as diverse as communication, migration, and reproduction. We investigated how exposure to urban noise affects sleep, a process critical to optimal biological functioning, in Australian magpies (Cracticus tibicen). Eight magpies experimentally exposed to noise in captivity for 24-h spent more time awake, and less time in non-rapid eye movement (non-REM) and REM sleep at night than under quiet conditions. Sleep was also fragmented, with more frequent interruptions by wakefulness, shorter sleep episode durations, and less intense non-REM sleep. REM sleep was particularly sensitive to urban noise. Following exposure to noise, magpies recovered lost sleep by engaging in more, and more intense, non-REM sleep. In contrast, REM sleep showed no rebound. This might indicate a long-term cost to REM sleep loss mediated by noise, or contest hypotheses regarding the functional value of this state. Overall, urban noise has extensive, disruptive impacts on sleep composition, architecture, and intensity in magpies. Future work should consider whether noise-induced sleep restriction and fragmentation have long-term consequences.
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Affiliation(s)
- Farley Connelly
- School of BioSciences, The University of Melbourne, Melbourne, Victoria, 3010, Australia; School of Life Sciences, La Trobe University, Melbourne, Victoria, 3086, Australia.
| | - Robin D Johnsson
- School of Life Sciences, La Trobe University, Melbourne, Victoria, 3086, Australia
| | - Anne E Aulsebrook
- School of BioSciences, The University of Melbourne, Melbourne, Victoria, 3010, Australia; School of Life Sciences, La Trobe University, Melbourne, Victoria, 3086, Australia
| | - Raoul A Mulder
- School of BioSciences, The University of Melbourne, Melbourne, Victoria, 3010, Australia
| | - Michelle L Hall
- School of BioSciences, The University of Melbourne, Melbourne, Victoria, 3010, Australia; Bush Heritage Australia, Melbourne, Victoria, 3000, Australia; School of Biological Sciences, The University of Western Australia, Perth, Western Australia, 6009, Australia
| | - Alexei L Vyssotski
- Institute of Neuroinformatics, University of Zurich and ETH Zurich, Zurich, 8006, Switzerland
| | - John A Lesku
- School of Life Sciences, La Trobe University, Melbourne, Victoria, 3086, Australia; Research Centre for Future Landscapes, La Trobe University, Melbourne, Victoria, 3086, Australia
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Evans JC, Dall SRX, Kight CR. Effects of ambient noise on zebra finch vigilance and foraging efficiency. PLoS One 2019; 13:e0209471. [PMID: 30596692 PMCID: PMC6312262 DOI: 10.1371/journal.pone.0209471] [Citation(s) in RCA: 12] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 09/12/2017] [Accepted: 12/06/2018] [Indexed: 11/18/2022] Open
Abstract
Ambient noise can affect the availability of acoustic information to animals, altering both foraging and vigilance behaviour. Using captive zebra finches Taeniopygia guttata, we examined the effect of ambient broadband noise on foraging decisions. Birds were given a choice between foraging in a quiet area where conspecific calls could be heard or a noisy area where these calls would be masked. Birds foraging in noisy areas spent a significantly more time vigilant than those in quiet areas, resulting in less efficient foraging. Despite this there was no significant difference in the amount of time spent in the two noise regimes. However there did appear a preference for initially choosing quiet patches during individuals’ second trial. These results emphasise how masking noise can influence the foraging and anti-predation behaviour of animals, which is particularly relevant as anthropogenic noise becomes increasingly prevalent in the natural world.
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Affiliation(s)
- Julian C. Evans
- Centre for Ecology and Conservation, University of Exeter, Cornwall Campus, Penryn, United Kingdom
- * E-mail:
| | - Sasha R. X. Dall
- Centre for Ecology and Conservation, University of Exeter, Cornwall Campus, Penryn, United Kingdom
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9
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HILL SD, ARYAL A, PAWLEY MDM, JI W. So much for the city: Urban-rural song variation in a widespread Asiatic songbird. Integr Zool 2018; 13:194-205. [DOI: 10.1111/1749-4877.12284] [Citation(s) in RCA: 14] [Impact Index Per Article: 2.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/29/2022]
Affiliation(s)
- Samuel D. HILL
- Human-Wildlife Interactions Research Group, Institute of Natural and Mathematical Sciences; Massey University; Auckland New Zealand
| | - Achyut ARYAL
- Human-Wildlife Interactions Research Group, Institute of Natural and Mathematical Sciences; Massey University; Auckland New Zealand
- School of Life and Environmental Sciences, Faculty of Science; University of Sydney; Sydney Australia
- Department of Forestry and Resource Management; Toi Ohomai Institute of Technology; Rotorua New Zealand
| | - Matthew D. M. PAWLEY
- Institute of Natural and Mathematical Sciences; Massey University; Auckland New Zealand
| | - Weihong JI
- Human-Wildlife Interactions Research Group, Institute of Natural and Mathematical Sciences; Massey University; Auckland New Zealand
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11
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Derryberry EP, Gentry K, Derryberry GE, Phillips JN, Danner RM, Danner JE, Luther DA. White-crowned sparrow males show immediate flexibility in song amplitude but not in song minimum frequency in response to changes in noise levels in the field. Ecol Evol 2017; 7:4991-5001. [PMID: 28690825 PMCID: PMC5496534 DOI: 10.1002/ece3.3037] [Citation(s) in RCA: 29] [Impact Index Per Article: 4.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 11/03/2016] [Revised: 03/15/2017] [Accepted: 04/10/2017] [Indexed: 12/20/2022] Open
Abstract
The soundscape acts as a selective agent on organisms that use acoustic signals to communicate. A number of studies document variation in structure, amplitude, or timing of signal production in correspondence with environmental noise levels thus supporting the hypothesis that organisms are changing their signaling behaviors to avoid masking. The time scale at which organisms respond is of particular interest. Signal structure may evolve across generations through processes such as cultural or genetic transmission. Individuals may also change their behavior during development (ontogenetic change) or in real time (i.e., immediate flexibility). These are not mutually exclusive mechanisms, and all must be investigated to understand how organisms respond to selection pressures from the soundscape. Previous work on white-crowned sparrows (Zonotrichia leucophrys) found that males holding territories in louder areas tend to sing higher frequency songs and that both noise levels and song frequency have increased over time (30 years) in urban areas. These previous findings suggest that songs are changing across generations; however, it is not known if this species also exhibits immediate flexibility. Here, we conducted an exploratory, observational study to ask whether males change the minimum frequency of their song in response to immediate changes in noise levels. We also ask whether males sing louder, as increased minimum frequency may be physiologically linked to producing sound at higher amplitudes, in response to immediate changes in environmental noise. We found that territorial males adjust song amplitude but not minimum frequency in response to changes in environmental noise levels. Our results suggest that males do not show immediate flexibility in song minimum frequency, although experimental manipulations are needed to test this hypothesis further. Our work highlights the need to investigate multiple mechanisms of adaptive response to soundscapes.
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Affiliation(s)
| | | | | | | | - Raymond M. Danner
- Biology DepartmentGeorge Mason UniversityFairfaxVAUSA
- Present address: Department of Biology and Marine BiologyUniversity of North CarolinaWilmingtonNCUSA
| | - Julie E. Danner
- Department of Ecology and Evolutionary BiologyTulane UniversityNew OrleansLAUSA
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Potvin DA, Curcio MT, Swaddle JP, MacDougall-Shackleton SA. Experimental exposure to urban and pink noise affects brain development and song learning in zebra finches (Taenopygia guttata). PeerJ 2016; 4:e2287. [PMID: 27602270 PMCID: PMC4991897 DOI: 10.7717/peerj.2287] [Citation(s) in RCA: 25] [Impact Index Per Article: 3.1] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 02/21/2016] [Accepted: 07/04/2016] [Indexed: 12/04/2022] Open
Abstract
Recently, numerous studies have observed changes in bird vocalizations-especially song-in urban habitats. These changes are often interpreted as adaptive, since they increase the active space of the signal in its environment. However, the proximate mechanisms driving cross-generational changes in song are still unknown. We performed a captive experiment to identify whether noise experienced during development affects song learning and the development of song-control brain regions. Zebra finches (Taeniopygia guttata) were bred while exposed, or not exposed, to recorded traffic urban noise (Study 1) or pink noise (Study 2). We recorded the songs of male offspring and compared these to fathers' songs. We also measured baseline corticosterone and measured the size of song-control brain regions when the males reached adulthood (Study 1 only). While male zebra finches tended to copy syllables accurately from tutors regardless of noise environment, syntax (the ordering of syllables within songs) was incorrectly copied affected by juveniles exposed to noise. Noise did not affect baseline corticosterone, but did affect the size of brain regions associated with song learning: these regions were smaller in males that had been had been exposed to recorded traffic urban noise in early development. These findings provide a possible mechanism by which noise affects behaviour, leading to potential population differences between wild animals occupying noisier urban environments compared with those in quieter habitats.
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Affiliation(s)
- Dominique A. Potvin
- Research School of Biology, Australian National University,Canberra,ACT,Australia
- Advanced Facility for Avian Research, University of Western Ontario,London,ON,Canada
- Department of Psychology, University of Western Ontario,London,ON,Canada
| | - Michael T. Curcio
- Institute for Integrative Bird Behavior Studies, College of William and Mary,Williamsburg,VA,United States
| | - John P. Swaddle
- Institute for Integrative Bird Behavior Studies, College of William and Mary,Williamsburg,VA,United States
- Centre for Ecology and Conservation, University of Exeter,Exeter,United Kingdom
| | - Scott A. MacDougall-Shackleton
- Advanced Facility for Avian Research, University of Western Ontario,London,ON,Canada
- Department of Psychology, University of Western Ontario,London,ON,Canada
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Job JR, Kohler SL, Gill SA. Song adjustments by an open habitat bird to anthropogenic noise, urban structure, and vegetation. Behav Ecol 2016. [DOI: 10.1093/beheco/arw105] [Citation(s) in RCA: 8] [Impact Index Per Article: 1.0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/06/2023] Open
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Halfwerk W, Both C, Slabbekoorn H. Noise affects nest-box choice of 2 competing songbird species, but not their reproduction. Behav Ecol 2016. [DOI: 10.1093/beheco/arw095] [Citation(s) in RCA: 7] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/26/2022] Open
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16
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Derryberry EP, Danner RM, Danner JE, Derryberry GE, Phillips JN, Lipshutz SE, Gentry K, Luther DA. Patterns of Song across Natural and Anthropogenic Soundscapes Suggest That White-Crowned Sparrows Minimize Acoustic Masking and Maximize Signal Content. PLoS One 2016; 11:e0154456. [PMID: 27128443 PMCID: PMC4851413 DOI: 10.1371/journal.pone.0154456] [Citation(s) in RCA: 42] [Impact Index Per Article: 5.3] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Download PDF] [Figures] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/15/2016] [Accepted: 04/13/2016] [Indexed: 11/24/2022] Open
Abstract
Soundscapes pose both evolutionarily recent and long-standing sources of selection on acoustic communication. We currently know more about the impact of evolutionarily recent human-generated noise on communication than we do about how natural sounds such as pounding surf have shaped communication signals over evolutionary time. Based on signal detection theory, we hypothesized that acoustic phenotypes will vary with both anthropogenic and natural background noise levels and that similar mechanisms of cultural evolution and/or behavioral flexibility may underlie this variation. We studied song characteristics of white-crowned sparrows (Zonotrichia leucophrys nuttalli) across a noise gradient that includes both anthropogenic and natural sources of noise in San Francisco and Marin counties, California, USA. Both anthropogenic and natural soundscapes contain high amplitude low frequency noise (traffic or surf, respectively), so we predicted that birds would produce songs with higher minimum frequencies in areas with higher amplitude background noise to avoid auditory masking. We also anticipated that song minimum frequencies would be higher than the projected lower frequency limit of hearing based on site-specific masking profiles. Background noise was a strong predictor of song minimum frequency, both within a local noise gradient of three urban sites with the same song dialect and cultural evolutionary history, and across the regional noise gradient, which encompasses 11 urban and rural sites, several dialects, and several anthropogenic and natural sources of noise. Among rural sites alone, background noise tended to predict song minimum frequency, indicating that urban sites were not solely responsible for driving the regional pattern. These findings support the hypothesis that songs vary with local and regional soundscapes regardless of the source of noise. Song minimum frequency from five core study sites was also higher than the lower frequency limit of hearing at each site, further supporting the hypothesis that songs vary to transmit through noise in local soundscapes. Minimum frequencies leveled off at noisier sites, suggesting that minimum frequencies are constrained to an upper limit, possibly to retain the information content of wider bandwidths. We found evidence that site noise was a better predictor of song minimum frequency than territory noise in both anthropogenic and natural soundscapes, suggesting that cultural evolution rather than immediate behavioral flexibility is responsible for local song variation. Taken together, these results indicate that soundscapes shape song phenotype across both evolutionarily recent and long-standing soundscapes.
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Affiliation(s)
- Elizabeth P. Derryberry
- Department of Ecology and Evolutionary Biology, Tulane University, New Orleans, Louisiana, United States of America
| | - Raymond M. Danner
- Biology Department, George Mason University, Fairfax, Virginia, United States of America
| | - Julie E. Danner
- Department of Ecology and Evolutionary Biology, Tulane University, New Orleans, Louisiana, United States of America
| | - Graham E. Derryberry
- Museum of Natural Science, Louisiana State University, Baton Rouge, Louisiana, United States of America
| | - Jennifer N. Phillips
- Department of Ecology and Evolutionary Biology, Tulane University, New Orleans, Louisiana, United States of America
| | - Sara E. Lipshutz
- Department of Ecology and Evolutionary Biology, Tulane University, New Orleans, Louisiana, United States of America
| | - Katherine Gentry
- Biology Department, George Mason University, Fairfax, Virginia, United States of America
| | - David A. Luther
- Biology Department, George Mason University, Fairfax, Virginia, United States of America
- Smithsonian Migratory Bird Center, Smithsonian Institution, National Zoo, Washington, DC, United States of America
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Roth TC, Krochmal AR, Németh Z. Thinking about Change: An Integrative Approach for Examining Cognition in a Changing World. Integr Comp Biol 2015; 55:347-53. [PMID: 26113667 DOI: 10.1093/icb/icv068] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/03/2023] Open
Abstract
We are currently experiencing shifts in climate at rates not previously recorded. One important aspect of this change is a tendency toward extremes--extremes in temperature and moisture, both within and among years. Numerous studies focus on the physiological consequences of environmental change, especially in terms of ectothermic taxa's thermal regime and use of habitat. For many species, though, cognitive responses may be a means of response to environmental perturbation. However, the effects of environmental change on the general mechanisms of cognitive processes and their implications for larger phenomena are seldom examined. Moreover, at a larger scale, we do not fully understand the features of the environment that might select for cognitive enhancements or their mechanisms, making us unable to accurately predict which species might experience the most severe response to environmental change and in which environments. This symposium brought together scientists from numerous disciplines to examine the role of cognition in how organisms cope with changing environments. We cover topics from the perspectives of the physiological mechanisms underlying and driving cognition to the complexity of individual behavioral responses in changing environments to emergent large-scale processes influencing species' abilities to respond to such change. Our ultimate goals are to explore how animals use cognition to cope with rapid environmental change, how such coping mechanisms "scale up" to affect ecological and evolutionary patterns, and how we might determine which features of the environment have been (and will become) most important for the conservation of biodiversity.
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Affiliation(s)
- Timothy C Roth
- *Department of Psychology, Franklin and Marshall College, PO Box 3003, Lancaster, PA 17603, USA;
| | - Aaron R Krochmal
- Department of Biology, Washington College, 300 Washington Avenue, Chestertown, MD 21620, USA
| | - Zoltán Németh
- MTA-DE "Lendület" Behavioral Ecology Research Group, Department of Evolutionary Zoology, University of Debrecen, Egyetem tér 1, 4032 Debrecen, Hungary
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