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Dixon, M. M.

Publications and source records attributed to Dixon, M. M..

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Spatial learning overshadows learning novel odors and sounds in both a predatory and a frugivorous bat

AO_SCPLOWBSTRACTC_SCPLOWTo be efficient while foraging, animals should be selective about attending to and remembering the cues of food that best predict future meals. One hypothesis is that animals with different foraging strategies should vary in their reliance on spatial and feature cues. Animals that store food or feed on spatially stable food, like fruit or flowers, should be predisposed to learning a meals location, whereas predators that hunt mobile prey should instead be biased towards learning feature cues such as color or sound. Previous studies suggest that nectar- and fruit-feeding bats should rely relatively more on spatial cues, whereas predatory bats should rely more on feature cues, yet no experiment has compared these two foraging strategies under the same conditions. To test this hypothesis, we compared learning in the frugivorous bat, Artibeus jamaicensis, and the predatory bat, Lophostoma silvicolum, which hunts katydids using acoustic cues. We trained bats to find food paired with a unique odor, sound, and location. We then dissociated these cues to assess which cue each bat had learned. Rather than finding that the frugivore and predator are on opposite ends of a continuum in their relative reliance on spatial and feature cues, we found that both species learned spatial cues with no evidence that either learned the sounds or odors. We discuss interpretations of these results in the context of past work on use of spatial cues versus feature cues. Compared to feature cues, spatial cues may be fundamentally more rich, salient, or memorable. LO_SCPLOWAYC_SCPLOW SO_SCPLOWUMMARYC_SCPLOWWhen animals learn how to obtain food, they could attend to many possible cues--such as the associated smells, sights, sounds, or locations of the food. It has been hypothesized that natural selection has shaped animals to pay particular attention to the types of cues that are most useful for finding their typical food. In bats, this would predict that predatory species that hunt mobile, noisy insects by sound should be biased towards learning a food-associated sound, whereas bats that eat stationary and silent fruit should be biased towards learning a foods location. We gave predatory and fruit-eating bats the opportunity to simultaneously learn food-rewarded odors, sounds, or locations. Regardless of their diets, both species of bats learned locations rather than the odors or sounds associated with food. Spatial cues may be particularly rich or salient, and when they are reliable, animals may use them for learning over other cues regardless of their typical food.

animal behavior and cognition↗

Long-term memory in frog-eating bats

Long-term memory has clear advantages but also has neurological and behavioral costs1-3. Given these opposing selection pressures, understanding how long memories last can shed light on how memory enhances or constrains animals abilities to exploit their niches. Although testing memory retention in wild animals is difficult, it is important because captive conditions do not reflect the complex cognitive demands of wild environments, and long-term captivity changes the brain4 (past studies on nonhuman long-term memory are reviewed in Table S1). Here, we trained wild-caught frog-eating bats (Trachops cirrhosus) to find prey by flying to a novel acoustic cue, released them back into the wild, and then re-captured some of them 1-4 years later. When re-tested, all eight experienced bats that previously learned the novel prey sounds flew to those sounds within seconds, whereas 17 naive bats tested with the same sounds showed weak responses. Experienced bats also showed behavior indicating generalization of memories between novel sounds and rewards over time. The frog-eating bats remarkably long memory for novel acoustic cues indicates that an ability to remember rarely encountered prey may be advantageous for this predator, and suggests hitherto unknown cognitive abilities in bats. O_TBL View this table: org.highwire.dtl.DTLVardef@15a8294org.highwire.dtl.DTLVardef@132eb3forg.highwire.dtl.DTLVardef@1f29583org.highwire.dtl.DTLVardef@135dff2org.highwire.dtl.DTLVardef@19cfa_HPS_FORMAT_FIGEXP M_TBL O_FLOATNOTable S1:C_FLOATNO O_TABLECAPTIONStudies of animal memory durations documenting memories of months or years. Memory duration = the longest duration demonstrated in the study. Wild or captive = where animals spent the time of memory retention; some "captive" animals were originally wild caught. Context = the ecological context and memory task being tested. 2-AFC = Two-alternative forced choice. C_TABLECAPTION C_TBL

animal behavior and cognition↗