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Predator-Prey Relationship between Urban Bats and Insects Impacted by Both Artificial Light at Night and Spatial Clutter
by
Li, Han
, Wilkins, Kenneth T.
in
Acoustics
/ ALAN
/ Bats
/ biomass
/ College campuses
/ Commuting
/ Experiments
/ Food sources
/ foraging activity
/ Foraging behavior
/ Habitats
/ insectivores
/ Insects
/ Light emitting diodes
/ Light sources
/ Pollutants
/ Predator-prey interactions
/ Predators
/ Prey
/ Sensors
/ spatial complexity
/ urban
/ Urban environments
/ Wildlife
2022
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Predator-Prey Relationship between Urban Bats and Insects Impacted by Both Artificial Light at Night and Spatial Clutter
by
Li, Han
, Wilkins, Kenneth T.
in
Acoustics
/ ALAN
/ Bats
/ biomass
/ College campuses
/ Commuting
/ Experiments
/ Food sources
/ foraging activity
/ Foraging behavior
/ Habitats
/ insectivores
/ Insects
/ Light emitting diodes
/ Light sources
/ Pollutants
/ Predator-prey interactions
/ Predators
/ Prey
/ Sensors
/ spatial complexity
/ urban
/ Urban environments
/ Wildlife
2022
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Do you wish to request the book?
Predator-Prey Relationship between Urban Bats and Insects Impacted by Both Artificial Light at Night and Spatial Clutter
by
Li, Han
, Wilkins, Kenneth T.
in
Acoustics
/ ALAN
/ Bats
/ biomass
/ College campuses
/ Commuting
/ Experiments
/ Food sources
/ foraging activity
/ Foraging behavior
/ Habitats
/ insectivores
/ Insects
/ Light emitting diodes
/ Light sources
/ Pollutants
/ Predator-prey interactions
/ Predators
/ Prey
/ Sensors
/ spatial complexity
/ urban
/ Urban environments
/ Wildlife
2022
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Predator-Prey Relationship between Urban Bats and Insects Impacted by Both Artificial Light at Night and Spatial Clutter
Journal Article
Predator-Prey Relationship between Urban Bats and Insects Impacted by Both Artificial Light at Night and Spatial Clutter
2022
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Overview
Predators respond to the increase of prey by aggregation in space or foraging more often. However, foraging habitat suitability limits predators’ responses. For nocturnal insectivorous bats, artificial light at night (ALAN) can trigger insect prey aggregation. It is not clear how ALAN might affect predator-prey relationships in the urban setting, where urban bats could have adapted to the city, and novel spatial complexity introduced by man-made objects might alter foraging habitat suitability. We strategically selected sites to represent different levels of ALAN and spatial complexity. We recorded bat commuting and foraging activities and collected aerial insects to examine how ALAN and spatial complexity affected bat-insect relationships. We found that insect biomass was positively correlated with ALAN, but was not affected by spatial complexity. Large-sized big brown bats and hoary bats positively responded to change of prey in open sites whereas small-sized eastern red bats and silver-haired bats positively responded in cluttered sites, suggesting that the impact of ALAN could vary when ALAN is coupled with urban spatial complexity. Our study demonstrates that foraging habitat suitability can alter which species might benefit from ALAN. Predator-prey relationships in cities are complex, but general ecological principles still apply in novel urban ecosystems.
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