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66. Busoms S, Paajanen P, Marburger S et al
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67. Exposito-Alonso M, Vasseur F, Ding W et al
(2018) Genomic basis and evolutionary potential for extreme drought adaptation in Arabidopsis thaliana. Nat Ecol Evol 2:352–358
68. Postma FM, Agren J (2018) Among-year variation in selection during early life stages and
the genetic basis of fitness in Arabidopsis thaliana. Mol Ecol 27:2498–2511
69. Gomaa NH, Montesinos-Navarro A, AlonsoBlanco C et al (2011) Temporal variation in
genetic diversity and effective population size
of Mediterranean and subalpine Arabidopsis
thaliana
populations.
Mol
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20:3540–3554
70. Paradis E, Claude J, Strimmer K (2004) APE:
analyses of phylogenetics and evolution in R
language. Bioinformatics 20:289–290
71. Kuittinen H, Salguero D, Aguade M (2002)
Parallel patterns of sequence variation within
and between populations at three loci of Arabidopsis
thaliana.
Mol
Biol
Evol
19:2030–2034
72. Manzano-Piedras E, Marcer A, Alonso-Blanco
C et al (2014) Deciphering the adjustment
between environment and life history in
annuals: lessons from a geographically-explicit
approach in Arabidopsis thaliana. PLoS One 9
(2):e87836
73. Sokal RR, Oden NL (1978) Spatial autocorrelation in biology 1. Methodology. Biol J Linn
Soc 10:199–228
74. Manel S, Joost S, Epperson BK et al (2010)
Perspectives on the use of landscape genetics to
detect genetic adaptive variation in the field.
Mol Ecol 19:3760–3772
75. Tabas-Madrid D, Mendez-Vigo B, Arteaga N
et al (2018) Genome-wide signatures of flowering adaptation to climate temperature:
regional analyses in a highly diverse native
range of Arabidopsis thaliana. Plant Cell Environ 41:1806–1820
76. Franc ¸ois O, Martins H, Caye K et al (2016)
Controlling false discoveries in genome scans
for selection. Mol Ecol 25:454–469
112
Carlos Alonso-Blanco et al.
364:1059–1074
65. Alonso-Blanco C, Blankestijn-de Vries H,
Hanhart CJ et al (1999) Natural allelic variation at seed size loci in relation to other life
history traits of Arabidopsis thaliana. Proc Natl
Acad Sci U S A 96:4710–4717
66. Busoms S, Paajanen P, Marburger S et al
(2018) Fluctuating selection on migrant adaptive sodium transporter alleles in coastal Arabidopsis thaliana. Proc Natl Acad Sci U S A 115:
E12443–E12452
67. Exposito-Alonso M, Vasseur F, Ding W et al
(2018) Genomic basis and evolutionary potential for extreme drought adaptation in Arabidopsis thaliana. Nat Ecol Evol 2:352–358
68. Postma FM, Agren J (2018) Among-year variation in selection during early life stages and
the genetic basis of fitness in Arabidopsis thaliana. Mol Ecol 27:2498–2511
69. Gomaa NH, Montesinos-Navarro A, AlonsoBlanco C et al (2011) Temporal variation in
genetic diversity and effective population size
of Mediterranean and subalpine Arabidopsis
thaliana
populations.
Mol
Ecol
20:3540–3554
70. Paradis E, Claude J, Strimmer K (2004) APE:
analyses of phylogenetics and evolution in R
language. Bioinformatics 20:289–290
71. Kuittinen H, Salguero D, Aguade M (2002)
Parallel patterns of sequence variation within
and between populations at three loci of Arabidopsis
thaliana.
Mol
Biol
Evol
19:2030–2034
72. Manzano-Piedras E, Marcer A, Alonso-Blanco
C et al (2014) Deciphering the adjustment
between environment and life history in
annuals: lessons from a geographically-explicit
approach in Arabidopsis thaliana. PLoS One 9
(2):e87836
73. Sokal RR, Oden NL (1978) Spatial autocorrelation in biology 1. Methodology. Biol J Linn
Soc 10:199–228
74. Manel S, Joost S, Epperson BK et al (2010)
Perspectives on the use of landscape genetics to
detect genetic adaptive variation in the field.
Mol Ecol 19:3760–3772
75. Tabas-Madrid D, Mendez-Vigo B, Arteaga N
et al (2018) Genome-wide signatures of flowering adaptation to climate temperature:
regional analyses in a highly diverse native
range of Arabidopsis thaliana. Plant Cell Environ 41:1806–1820
76. Franc ¸ois O, Martins H, Caye K et al (2016)
Controlling false discoveries in genome scans
for selection. Mol Ecol 25:454–469
112
Carlos Alonso-Blanco et al.
