TY - JOUR
T1 - Behavioral correlates of supplementary feeding of wildlife: Can general conclusions be drawn?
AU - Steyaert, Sam M.J.G.
AU - Kindberg, Jonas
AU - Jerina, Klemen
AU - Krofel, Miha
AU - Stergar, Matija
AU - Zedrosser, Andreas
AU - Swenson, Jon E.
PY - 2014
Y1 - 2014
N2 - Supplementary feeding is a common, but controversial, tool in wildlife management, because it can benefit both humans and wildlife (e.g., increased wildlife densities), but has certain downsides (e. g., increased disease transmission). For species that are often involved in human-wildlife conflicts, two opposing paradigms with respect to supplementary feeding exist, i.e., (i) that supplementary feeding is efficient to lure animals away from undesired places (i.e., diversionary feeding; hypothesis 1), and (ii) that supplementary feeding stimulates 'nuisance' behavior (i. e., increased tolerance for humans and selection for human facilities; hypothesis 2). We formulated an alternative hypothesis (hypothesis 3); i.e., that behavioral variation among individuals dilutes population-wide, general patterns with respect to supplementary feeding. Based on GPS relocation data and resource selection functions, we show that neither of the two opposing management paradigms (hypothesis 1 and 2) hold in a particularly 'conflict rich' species, the brown bear (Ursus arctos), because individual variation in selection behavior with respect to supplementary feeding diluted population-wide patterns (hypothesis 3), even under very different environmental contexts (Sweden vs. Slovenia; i.e., different human and bear population density, history and intensity of supplementary feeding, topography, etc.). Our results emphasize that individual variation is an important component of behavioral ecology and should be considered in wildlife management and conservation. (C) 2014 The Authors. Published by Elsevier GmbH.
AB - Supplementary feeding is a common, but controversial, tool in wildlife management, because it can benefit both humans and wildlife (e.g., increased wildlife densities), but has certain downsides (e. g., increased disease transmission). For species that are often involved in human-wildlife conflicts, two opposing paradigms with respect to supplementary feeding exist, i.e., (i) that supplementary feeding is efficient to lure animals away from undesired places (i.e., diversionary feeding; hypothesis 1), and (ii) that supplementary feeding stimulates 'nuisance' behavior (i. e., increased tolerance for humans and selection for human facilities; hypothesis 2). We formulated an alternative hypothesis (hypothesis 3); i.e., that behavioral variation among individuals dilutes population-wide, general patterns with respect to supplementary feeding. Based on GPS relocation data and resource selection functions, we show that neither of the two opposing management paradigms (hypothesis 1 and 2) hold in a particularly 'conflict rich' species, the brown bear (Ursus arctos), because individual variation in selection behavior with respect to supplementary feeding diluted population-wide patterns (hypothesis 3), even under very different environmental contexts (Sweden vs. Slovenia; i.e., different human and bear population density, history and intensity of supplementary feeding, topography, etc.). Our results emphasize that individual variation is an important component of behavioral ecology and should be considered in wildlife management and conservation. (C) 2014 The Authors. Published by Elsevier GmbH.
KW - Behavioral strategies
KW - Brown bear
KW - Habituation
KW - Human-wildlife interactions
KW - Individual variance
KW - Supplementary feeding
KW - Ursus arctos
KW - Wildlife management
KW - Behavioral strategies
KW - Brown bear
KW - Habituation
KW - Human-wildlife interactions
KW - Individual variance
KW - Supplementary feeding
KW - Ursus arctos
KW - Wildlife management
UR - https://res.slu.se/id/publ/67150
U2 - 10.1016/j.baae.2014.10.002
DO - 10.1016/j.baae.2014.10.002
M3 - Journal article
SN - 1439-1791
VL - 15
SP - 669
EP - 676
JO - Basic and Applied Ecology
JF - Basic and Applied Ecology
IS - 8
ER -