New Answers for Old Questions: The Evolutionary Quantitative Genetics of Wild Animal Populations

被引:265
作者
Kruuk, Loeske E. B. [1 ]
Slate, Jon [2 ]
Wilson, Alastair J. [1 ]
机构
[1] Univ Edinburgh, Inst Evolutionary Biol, Sch Biol Sci, Edinburgh EH9 3JT, Midlothian, Scotland
[2] Univ Sheffield, Dept Anim & Plant Sci, Sheffield S10 2TN, S Yorkshire, England
基金
英国自然环境研究理事会;
关键词
heritability; genetic variance; genotype-environment interactions; natural selection; genomics;
D O I
10.1146/annurev.ecolsys.39.110707.173542
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Recent years have seen a rapid expansion in the scope of quantitative genetic analyses undertaken in wild populations. We illustrate here the potential For such studies to address fundamental evolutionary questions about the maintenance of genetic diversity and to reveal hidden genetic conflicts or constraints not apparent at the phenotypic level. Trade-offs between different components of fitness, sexually-antagonistic genetic effects, maternal effects, genotype-by-environment interactions, genotype-by-age interactions, and variation between different regions of the genome in localized genetic correlations may all prevent the erosion of genetic variance. We consider ways in which complex interactions between ecological conditions and the expression of genetic variation can lie elucidated, and emphasize the benefits of Conducting selection analyses within a quantitative genetic framework. We also review potential developments associated with rapid advances in genomic technology, in particular the increased availability of extensive market information. Our conclusions highlight the complexity of processes contributing to the maintenance of genetic diversity in wild populations, and underline the value of a quantitative genetic approach in parameterizing models of life-history evolution.
引用
收藏
页码:525 / 548
页数:24
相关论文
共 129 条
[21]   Negative genetic correlation for adult fitness between sexes reveals ontogenetic conflict in Drosophila [J].
Chippindale, AK ;
Gibson, JR ;
Rice, WR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (04) :1671-1675
[22]  
Coltman DW, 2005, EVOLUTION, V59, P1372
[23]   Testing marker-based estimates of heritability in the wild [J].
Coltman, DW .
MOLECULAR ECOLOGY, 2005, 14 (08) :2593-2599
[24]  
Coulson T, 2006, EVOL ECOL RES, V8, P1155
[25]   Estimating individual contributions to population growth: evolutionary fitness in ecological time [J].
Coulson, T ;
Benton, TG ;
Lundberg, P ;
Dall, SRX ;
Kendall, BE ;
Gaillard, JM .
PROCEEDINGS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2006, 273 (1586) :547-555
[26]   Genotype x environment interaction for male attractiveness in an acoustic moth:: evidence for plasticity and canalization [J].
Danielson-François, AM ;
Kelly, JK ;
Greenfield, MD .
JOURNAL OF EVOLUTIONARY BIOLOGY, 2006, 19 (02) :532-542
[27]   ACQUISITION AND ALLOCATION OF RESOURCES - GENETIC (CO)VARIANCES, SELECTION, AND LIFE HISTORIES [J].
DEJONG, G ;
VANNOORDWIJK, AJ .
AMERICAN NATURALIST, 1992, 139 (04) :749-770
[28]   Plasticity in resource allocation based life history traits in the Pacific oyster, Crassostrea gigas.: I.: Spatial variation in food abundance [J].
Ernande, B ;
Boudry, P ;
Clobert, J ;
Haure, J .
JOURNAL OF EVOLUTIONARY BIOLOGY, 2004, 17 (02) :342-356
[29]  
Falconer D. S., 1996, Introduction to quantitative genetics.
[30]   Female mating bias results in conflicting sex-specific offspring fitness [J].
Fedorka, KM ;
Mousseau, TA .
NATURE, 2004, 429 (6987) :65-67