Population dynamics of a northern-adapted mammal: disentangling the influence of predation and climate change

被引:27
作者
Pokallus, John W. [1 ]
Pauli, Jonathan N. [1 ]
机构
[1] Univ Wisconsin, Dept Forest & Wildlife Ecol, Madison, WI 53706 USA
关键词
bottom-up regulation; climate change; demographic analysis; Erethizon dorsatum; fisher; juvenile survivorship; Martes pennanti; North Atlantic Oscillation (NAO); porcupine; predation; top-down regulation; trophic interaction; TOP-DOWN REGULATION; BOTTOM-UP; ERETHIZON-DORSATUM; WINTER; THERMOREGULATION; CONSEQUENCES; COMMUNITIES; RECRUITMENT; SURVIVAL; ANIMALS;
D O I
10.1890/14-2214.1
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Community structure and interspecific interactions are particularly vulnerable to rapidly changing climatic regimes. Recent changes in both climate and vertebrate community assemblages have created a unique opportunity to examine the impacts of two dynamic forces on population regulation. We examined the effects of warming winter conditions and the reestablishment of a previously extirpated predator, the fisher (Martes pennanti), on regulatory mechanisms in a northern-adapted mammal, the porcupine (Erethizon dorsatum), along their southern range boundary. Using a long-term (17-year) capture-recapture data set, we (1) quantified the impacts of climate change and increased fisher predation on the survival of adult porcupines at their regional southern terminus, (2) assessed recruitment (via both adult fecundity and juvenile survival) of porcupines, and (3) modeled the relative importance of predation and winter conditions on the demography and population growth rate (lambda). Severe winters and abundant predators interacted synergistically to reduce adult survivorship by as much as 44%, while expanding predator populations led to near reproductive failure among porcupines. Increasing predatory pressure, disruptions in this community module, and more frequent extreme winter weather events led to predicted extirpation within 50 years, whereas in the absence of predators, the population was viable. Our results provide a mechanistic understanding behind distributional shifts resulting from climate change and may be broadly relevant for predicting future distributional shifts in other northern-adapted mammalian species.
引用
收藏
页码:1546 / 1556
页数:11
相关论文
共 65 条
  • [1] [Anonymous], 2007, NRS5 USDA FOR SERV
  • [2] Large predators and trophic cascades in terrestrial ecosystems of the western United States
    Beschta, Robert L.
    Ripple, William J.
    [J]. BIOLOGICAL CONSERVATION, 2009, 142 (11) : 2401 - 2414
  • [3] Numerical response of fishers to synchronous prey dynamics
    Bowman, Jeff
    Donovan, Dennis
    Rosatte, Richard C.
    [J]. JOURNAL OF MAMMALOGY, 2006, 87 (03) : 480 - 484
  • [4] Burnham K. P., 2002, MODEL SELECTION MULT, V2nd, DOI 10.1007/978-0-387-22456-5_5
  • [5] Carpenter SR, 2001, ECOL MONOGR, V71, P163, DOI 10.1890/0012-9615(2001)071[0163:TCNALP]2.0.CO
  • [6] 2
  • [7] Confounded winter and spring phenoclimatology on large herbivore ranges
    Christianson, David
    Klaver, Robert W.
    Middleton, Arthur
    Kauffman, Matthew
    [J]. LANDSCAPE ECOLOGY, 2013, 28 (03) : 427 - 437
  • [8] Coltrane Jessica A., 2012, Northwestern Naturalist, V93, P187
  • [9] Seasonal body composition, water turnover, and field metabolic rates in porcupines (Erethizon dorsatum) in Alaska
    Coltrane, Jessica A.
    Farley, Sean
    Barboza, Perry S.
    Kohl, Franziska
    Sinnoti, Rick
    Barnes, Brian M.
    [J]. JOURNAL OF MAMMALOGY, 2011, 92 (03) : 601 - 610
  • [10] Winter as a nutritional bottleneck for North American porcupines (Erethizon dorsatum)
    Coltrane, Jessica A.
    Barboza, Perry S.
    [J]. JOURNAL OF COMPARATIVE PHYSIOLOGY B-BIOCHEMICAL SYSTEMS AND ENVIRONMENTAL PHYSIOLOGY, 2010, 180 (06): : 905 - 918