How and why environmental noise impacts animals: an integrative, mechanistic review

被引:416
作者
Kight, Caitlin R. [1 ]
Swaddle, John P. [1 ]
机构
[1] Coll William & Mary, Dept Biol, Inst Integrated Bird Behav Studies, Williamsburg, VA 23185 USA
关键词
Anthropogenic noise; fitness; human disturbance; noise pollution; physiology; stress; AQUACULTURE PRODUCTION NOISE; LOUD NOISE; AIRCRAFT NOISE; HEART-RATE; BENZODIAZEPINE-RECEPTORS; CORTICOSTERONE LEVELS; ANTHROPOGENIC SOUND; HORMONAL RESPONSES; CRANGON-CRANGON; STRESS-RESPONSE;
D O I
10.1111/j.1461-0248.2011.01664.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The scope and magnitude of anthropogenic noise pollution are often much greater than those of natural noise and are predicted to have an array of deleterious effects on wildlife. Recent work on this topic has focused mainly on behavioural responses of animals exposed to noise. Here, by outlining the effects of acoustic stimuli on animal physiology, development, neural function and genetic effects, we advocate the use of a more mechanistic approach in anthropogenic environments. Specifically, we summarise evidence and hypotheses from research on laboratory, domestic and free-living animals exposed to biotic and abiotic stimuli, studied both observationally and experimentally. We hope that this molecular- and cellular-focused literature, which examines the effects of noise on the neuroendocrine system, reproduction and development, metabolism, cardiovascular health, cognition and sleep, audition, the immune system, and DNA integrity and gene expression, will help researchers better understand results of previous work, as well as identify new avenues of future research in anthropogenic environments. Furthermore, given the interconnectedness of these physiological, cellular and genetic processes, and their effects on behaviour and fitness, we suggest that much can be learned from a more integrative framework of how and why animals are affected by environmental noise.
引用
收藏
页码:1052 / 1061
页数:10
相关论文
共 102 条
[1]   BODY-WEIGHT GAIN, FOOD-INTAKE AND ADRENAL DEVELOPMENT IN CHRONIC NOISE STRESSED RATS [J].
ALARIO, P ;
GAMALLO, A ;
BEATO, MJ ;
TRANCHO, G .
PHYSIOLOGY & BEHAVIOR, 1987, 40 (01) :29-32
[2]   Sound, stress, and seahorses: The consequences of a noisy environment to animal health [J].
Anderson, Paul A. ;
Berzins, Ilze K. ;
Fogarty, Frank ;
Hamlin, Heather J. ;
Guillette, Louis J., Jr. .
AQUACULTURE, 2011, 311 (1-4) :129-138
[3]  
ANDREN L, 1983, ACTA MED SCAND, V213, P31
[4]  
Baldwin AL, 2006, J AM ASSOC LAB ANIM, V45, P74
[5]  
Baldwin AL, 2007, J AM ASSOC LAB ANIM, V46, P58
[6]  
BANNER A, 1973, T AM FISH SOC, V102, P134, DOI 10.1577/1548-8659(1973)102<134:EONOEA>2.0.CO
[7]  
2
[8]   The costs of chronic noise exposure for terrestrial organisms [J].
Barber, Jesse R. ;
Crooks, Kevin R. ;
Fristrup, Kurt M. .
TRENDS IN ECOLOGY & EVOLUTION, 2010, 25 (03) :180-189
[9]   Developmental plasticity of mating calls enables acoustic communication in diverse environments [J].
Beckers, Oliver M. ;
Schul, Johannes .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2008, 275 (1640) :1243-1248
[10]  
Berg R.E., 2004, PHYS SOUND, V3rd