Interacting Effects of Phenotypic Plasticity and Evolution on Population Persistence in a Changing Climate

被引:230
|
作者
Reed, Thomas E. [1 ,2 ]
Schindler, Daniel E. [1 ]
Waples, Robin S. [2 ]
机构
[1] Univ Washington, Sch Aquat & Fishery Sci, Seattle, WA 98105 USA
[2] NOAA, Natl Marine Fisheries Serv, NW Fisheries Sci Ctr, Seattle, WA 98112 USA
关键词
adaptation; climate projections; ecological and evolutionary dynamics; extinction; phenotypic plasticity; adaptacion; QUANTITATIVE GENETICS; NATURAL-SELECTION; RAPID EVOLUTION; ADAPTATION; RESPONSES; CONSEQUENCES; ENVIRONMENT; PHYSIOLOGY; LANDSCAPE; PHENOLOGY;
D O I
10.1111/j.1523-1739.2010.01552.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Climate change affects individual organisms by altering development, physiology, behavior, and fitness, and populations by altering genetic and phenotypic composition, vital rates, and dynamics. We sought to clarify how selection, phenotypic plasticity, and demography are linked in the context of climate change. On the basis of theory and results of recent empirical studies of plants and animals, we believe the ecological and evolutionary issues relevant to population persistence as climate changes are the rate, type, magnitude, and spatial pattern of climate-induced abiotic and biotic change; generation time and life history of the organism; extent and type of phenotypic plasticity; amount and distribution of adaptive genetic variation across space and time; dispersal potential; and size and connectivity of subpopulations. An understanding of limits to plasticity and evolutionary potential across traits, populations, and species and feedbacks between adaptive and demographic responses is lacking. Integrated knowledge of coupled ecological and evolutionary mechanisms will increase understanding of the resilience and probabilities of persistence of populations and species.
引用
收藏
页码:56 / 63
页数:8
相关论文
共 50 条
  • [21] Phenotypic plasticity and carryover effects in an ecologically important bivalve in response to changing environments
    Alma, Lindsay
    Mcelhany, Paul
    Crim, Ryan N.
    Newton, Jan A.
    Maher, Michael
    Mickett, John B.
    Padilla-Gamino, Jacqueline L.
    FRONTIERS IN MARINE SCIENCE, 2024, 11
  • [22] Evolution of phenotypic plasticity: patterns of plasticity and the emergence of ecotypes
    de Jong, G
    NEW PHYTOLOGIST, 2005, 166 (01) : 101 - 117
  • [23] Phenotypic plasticity and adaptive evolution contribute to advancing flowering phenology in response to climate change
    Anderson, Jill T.
    Inouye, David W.
    McKinney, Amy M.
    Colautti, Robert I.
    Mitchell-Olds, Tom
    PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2012, 279 (1743) : 3843 - 3852
  • [24] Mutational effects on constraints on character evolution and phenotypic plasticity in Arabidopsis thaliana
    Pigliucci, M
    Tyler, GA
    Schlichting, CD
    JOURNAL OF GENETICS, 1998, 77 (2-3) : 95 - 103
  • [25] Mutational effects on constraints on character evolution and phenotypic plasticity inArabidopsis thaliana
    Massimo Pigliucci
    Gaines A. Tyler
    Carl D. Schlichting
    Journal of Genetics, 1998, 77 : 95 - 103
  • [26] Phenotypic plasticity and evolution by genetic assimilation
    Pigliucci, Massimo
    Murren, Courtney J.
    Schlichting, Carl D.
    JOURNAL OF EXPERIMENTAL BIOLOGY, 2006, 209 (12): : 2362 - 2367
  • [27] Evolution of environmental cues for phenotypic plasticity
    Chevin, Luis-Miguel
    Lande, Russell
    EVOLUTION, 2015, 69 (10) : 2767 - 2775
  • [28] Phenotypic plasticity in Carlina vulgaris: effects of geographical origin, population size, and population isolation
    Henrik Berg
    Ute Becker
    Diethart Matthies
    Oecologia, 2005, 143 : 220 - 231
  • [29] Evolution of phenotypic plasticity in colonizing species
    Lande, Russell
    MOLECULAR ECOLOGY, 2015, 24 (09) : 2038 - 2045
  • [30] A role for phenotypic plasticity in the evolution of aposematism
    Sword, GA
    PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2002, 269 (1501) : 1639 - 1644