Strength of density feedback in census data increases from slow to fast life histories

被引:21
作者
Herrando-Perez, Salvador [1 ,2 ]
Delean, Steven [1 ,2 ]
Brook, Barry W. [1 ,2 ]
Bradshaw, Corey J. A. [1 ,2 ,3 ]
机构
[1] Univ Adelaide, Inst Environm, Adelaide, SA 5005, Australia
[2] Univ Adelaide, Sch Earth & Environm Sci, Adelaide, SA 5005, Australia
[3] S Australian Res & Dev Inst, Henley Beach, SA 5022, Australia
基金
澳大利亚研究理事会;
关键词
Age at first reproduction; body size; density dependence; fertility; longevity; population dynamics; POPULATION-GROWTH RATE; TIME-SERIES; BODY-SIZE; METABOLIC THEORY; EXTINCTION RISK; GENERATION TIME; DEPENDENCE; DYNAMICS; PATTERNS; MAMMALS;
D O I
10.1002/ece3.298
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Life-history theory predicts an increasing rate of population growth among species arranged along a continuum from slow to fast life histories. We examine the effects of this continuum on density-feedback strength estimated using long-term census data from >700 vertebrates, invertebrates, and plants. Four life-history traits (Age at first reproduction, Body size, Fertility, Longevity) were related statistically to Gompertz strength of density feedback using generalized linear mixed-effects models and multi-model inference. Life-history traits alone explained 10 to 30% of the variation in strength across species (after controlling for time-series length and phylogenetic nonindependence). Effect sizes were largest for body size in mammals and longevity in birds, and density feedback was consistently stronger for smaller-bodied and shorter-lived species. Overcompensatory density feedback (strength <-1) occurred in 20% of species, predominantly at the fast end of the life-history continuum, implying relatively high population variability. These results support the idea that life history leaves an evolutionary signal in long-term population trends as inferred from census data. Where there is a lack of detailed demographic data, broad life-history information can inform management and conservation decisions about rebound capacity from low numbers, and propensity to fluctuate, of arrays of species in areas planned for development, harvesting, protection, and population recovery.
引用
收藏
页码:1922 / 1934
页数:13
相关论文
共 100 条
[91]  
Sæther BE, 2002, SCIENCE, V295, P2070
[92]   FURTHER ANALYSIS OF DATA BY AKAIKES INFORMATION CRITERION AND FINITE CORRECTIONS [J].
SUGIURA, N .
COMMUNICATIONS IN STATISTICS PART A-THEORY AND METHODS, 1978, 7 (01) :13-26
[93]   Wise selection of an indicator for monitoring the success of management actions [J].
Tulloch, Ayesha ;
Possingham, Hugh P. ;
Wilson, Kerrie .
BIOLOGICAL CONSERVATION, 2011, 144 (01) :141-154
[94]  
Varley G., 1973, INSECT POPULATION EC
[95]   Signatures of large-scale and local climates on the demography of white-tailed ptarmigan in Rocky Mountain National Park, Colorado, USA [J].
Wang, GM ;
Hobbs, NT ;
Galbraith, H ;
Giesen, KM .
INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 2002, 46 (04) :197-201
[96]   Density dependence in northern ungulates: interactions with predation and resources [J].
Wang, Guiming ;
Hobbs, N. Thompson ;
Twombly, Saran ;
Boone, Randall B. ;
Illius, Andrew W. ;
Gordon, Iain J. ;
Gross, John E. .
POPULATION ECOLOGY, 2009, 51 (01) :123-132
[97]   Irruptive population dynamics in yellowstone pronghorn [J].
White, P. J. ;
Bruggeman, Jason E. ;
Garrott, Robert A. .
ECOLOGICAL APPLICATIONS, 2007, 17 (06) :1598-1606
[98]   PATTERNS OF LIFE-HISTORY DIVERSIFICATION IN NORTH-AMERICAN FISHES - IMPLICATIONS FOR POPULATION REGULATION [J].
WINEMILLER, KO ;
ROSE, KA .
CANADIAN JOURNAL OF FISHERIES AND AQUATIC SCIENCES, 1992, 49 (10) :2196-2218
[99]  
Zeng Z, 1998, ECOLOGY, V79, P2193, DOI 10.1890/0012-9658(1998)079[2193:CPDITR]2.0.CO
[100]  
2