Adaptive population differentiation in phenology across a latitudinal gradient in European Aspen (Populus tremula, L.):: A comparison of neutral markers, candidate genes and phenotypic traits

被引:143
作者
Hall, David [1 ]
Luquez, Virginia
Garcia, Victoria M.
St Onge, Kate R.
Jansson, Stefan
Ingvarsson, Par K.
机构
[1] Umea Univ, Umea Plant Sci Ctr, Dept Ecol & Environm Sci, SE-90187 Umea, Sweden
[2] Umea Univ, Dept Plant Physiol, Umea Plant Sci Ctr, SE-90187 Umea, Sweden
关键词
clinal variation; gene flow; genetic markers; local adaptation; population structure;
D O I
10.1111/j.1558-5646.2007.00230.x
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
A correct timing of growth cessation and dormancy induction represents a critical ecological and evolutionary trade-off between survival and growth in most forest trees (Rehfeldt et al. 1999; Horvath et al. 2003; Howe et al. 2003). We have studied the deciduous tree European Aspen (Populus tremula) across a latitudinal gradient and compared genetic differentiation in phenology traits with molecular markers. Trees from 12 different areas covering 10 latitudinal degrees were cloned and planted in two common gardens. Several phenology traits showed strong genetic differentiation and clinal variation across the latitudinal gradient, with Q(ST) values generally exceeding 0.5. This is in stark contrast to genetic differentiation at several classes of genetic markers (18 neutral SSRs, 7 SSRs located close to phenology candidate genes and 50 SNPs from five phenology candidate genes) that all showed F-ST values around 0.015. We thus find strong evidence for adaptive divergence in phenology traits across the latitudinal gradient. However, the strong population structure seen at the quantitative traits is not reflected in underlying candidate genes. This result fit theoretical expectations that suggest that genetic differentiation at candidate loci is better described by F-ST at neutral loci rather than by Q(ST) at the quantitative traits themselves.
引用
收藏
页码:2849 / 2860
页数:12
相关论文
共 64 条
[1]   EVOLUTION IN CLOSELY ADJACENT PLANT POPULATIONS .4. MANIFOLD EFFECTS OF GENE FLOW [J].
ANTONOVICS, J .
HEREDITY, 1968, 23 :507-+
[2]   EVOLUTION IN CLOSELY ADJACENT PLANT POPULATIONS .8. CLINAL PATTERNS AT A MINE BOUNDARY [J].
ANTONOVICS, J ;
BRADSHAW, AD .
HEREDITY, 1970, 25 :349-+
[3]   Statistical properties of population differentiation estimators under stepwise mutation in a finite island model [J].
Balloux, F ;
Goudet, J .
MOLECULAR ECOLOGY, 2002, 11 (04) :771-783
[4]   Adaptation and speciation:: what can Fst tell us? [J].
Beaumont, MA .
TRENDS IN ECOLOGY & EVOLUTION, 2005, 20 (08) :435-440
[5]   Tandem repeats finder: a program to analyze DNA sequences [J].
Benson, G .
NUCLEIC ACIDS RESEARCH, 1999, 27 (02) :573-580
[6]   CO/FT regulatory module controls timing of flowering and seasonal growth cessation in trees [J].
Böhlenius, H ;
Huang, T ;
Charbonnel-Campaa, L ;
Brunner, AM ;
Jansson, S ;
Strauss, SH ;
Nilsson, O .
SCIENCE, 2006, 312 (5776) :1040-1043
[7]   Plant genomics: The third wave [J].
Borevitz, JO ;
Ecker, JR .
ANNUAL REVIEW OF GENOMICS AND HUMAN GENETICS, 2004, 5 :443-477
[8]   M13-tailed primers improve the readability and usability of microsatellite analyses performed with two different allele-sizing methods [J].
Boutin-Ganache, I ;
Raposo, M ;
Raymond, M ;
Deschepper, CF .
BIOTECHNIQUES, 2001, 31 (01) :24-+
[9]  
Box GE., 2011, BAYESIAN INFERENCE S
[10]   Evolutionary ecology of plant adaptation to serpentine soils [J].
Brady, KU ;
Kruckeberg, AR ;
Bradshaw, HD .
ANNUAL REVIEW OF ECOLOGY EVOLUTION AND SYSTEMATICS, 2005, 36 :243-266