The effect of novel and familiar predator cues on prey vigilance and foraging behaviors in the greater khingan mountains, Inner Mongolia, China
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In: Applied Ecology and Environmental Research, Vol. 17, No. 4, 26.08.2019, p. 8219-8234.
Research output: Contribution to journal › Article › peer-review
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T1 - The effect of novel and familiar predator cues on prey vigilance and foraging behaviors in the greater khingan mountains, Inner Mongolia, China
AU - Mpemba, H.
AU - Fan, Y.
AU - MacLeod, K. J.
AU - Wen, D.
AU - Jiang, G.
PY - 2019/8/26
Y1 - 2019/8/26
N2 - During periods of predation risk, prey adopt antipredator behaviours to maximise chances of survival, such as increased vigilance, reduced foraging time, shifting to safe habitat, and group formation. To effectively balance resource acquisition and antipredator behavior, prey animals make use of cues within their environment that provide them accurate information about the realistic threat of predation. Using camera traps, we tested vigilance and feeding behavioural responses of two naturally occurring ungulate species roe deer and moose to cues from naturally occurring brown bear and novel Amur tiger predators. We found that roe deer and moose vigilance and feeding behaviours were not affected by either visual or olfactory cues from predators, suggesting that ungulates in this system do not respond differently to novel predator cues. There are a number of potential explanations for this surprising lack of response to any predator cues: a) habituation to uninformative cues is important; b) ungulates might have relied more heavily on other cue types, such as auditory cues, or cues in combination; and, c) constraints on dispersal and/or resources may result in prey being forced to remain in high risk food patches, and continued prioritization of feeding over vigilance. We therefore, recommend that in the future studies regarding cues should involve a combination of cues at a similar location to increase predation risk to the animals to maximise prey response. To our knowledge, this is the first study to lay out the foundation of the ecological influences of captive Amur tiger on prey behaviors in the wild environment
AB - During periods of predation risk, prey adopt antipredator behaviours to maximise chances of survival, such as increased vigilance, reduced foraging time, shifting to safe habitat, and group formation. To effectively balance resource acquisition and antipredator behavior, prey animals make use of cues within their environment that provide them accurate information about the realistic threat of predation. Using camera traps, we tested vigilance and feeding behavioural responses of two naturally occurring ungulate species roe deer and moose to cues from naturally occurring brown bear and novel Amur tiger predators. We found that roe deer and moose vigilance and feeding behaviours were not affected by either visual or olfactory cues from predators, suggesting that ungulates in this system do not respond differently to novel predator cues. There are a number of potential explanations for this surprising lack of response to any predator cues: a) habituation to uninformative cues is important; b) ungulates might have relied more heavily on other cue types, such as auditory cues, or cues in combination; and, c) constraints on dispersal and/or resources may result in prey being forced to remain in high risk food patches, and continued prioritization of feeding over vigilance. We therefore, recommend that in the future studies regarding cues should involve a combination of cues at a similar location to increase predation risk to the animals to maximise prey response. To our knowledge, this is the first study to lay out the foundation of the ecological influences of captive Amur tiger on prey behaviors in the wild environment
KW - predators
KW - ungulates
KW - fear ecology
KW - camera trap
KW - antipredator
KW - hanma
KW - vigilance
KW - foraging
U2 - 10.15666/aeer/1704_82198234
DO - 10.15666/aeer/1704_82198234
M3 - Article
VL - 17
SP - 8219
EP - 8234
JO - Applied Ecology and Environmental Research
JF - Applied Ecology and Environmental Research
SN - 1589-1623
IS - 4
ER -