Background. In wild plant populations, genetic divergence within continuous stands is common, sometimes at very short geographical scales. While restrictions to gene flow combined with local inbreeding and genetic drift may cause neutral differentiation among subpopulations, microgeographical variations in environmental conditions can drive adaptive divergence through natural selection at some targeted loci. Such phenomena have recurrently been observed in plant populations occurring across sharp environmental boundaries, but the interplay between selective processes and neutral genetic divergence has seldom been studied.[br/] Methods. We assessed the extent of within-stand neutral and environmentally-driven divergence in the Neotropical tr...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Plant populations can undergo very localized adaptation, allowing widely distributed populations to ...
Background. In wild plant populations, genetic divergence within continuous stands is common, someti...
BACKGROUND:In wild plant populations, genetic divergence within continuous stands is common, sometim...
<div><p>Background</p><p>In wild plant populations, genetic divergence within continuous stands is c...
Background: In wild plant populations, genetic divergence within continuous stands is common, someti...
Background: In wild plant populations, genetic divergence within continuous stands is common, somet...
Background. In wild plant populations, genetic divergence within continuous stands is common, someti...
In wild plant populations, genetic divergence within continuous stands is common, sometimes at very ...
In wild plant populations, genetic divergence within continuous stands is common, sometimes at very ...
Plant populations can undergo very localized adaptation, allowing widely distributed populations to ...
International audiencePlant populations can undergo very localized adaptation, allowing widely distr...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Plant populations can undergo very localized adaptation, allowing widely distributed populations to ...
Background. In wild plant populations, genetic divergence within continuous stands is common, someti...
BACKGROUND:In wild plant populations, genetic divergence within continuous stands is common, sometim...
<div><p>Background</p><p>In wild plant populations, genetic divergence within continuous stands is c...
Background: In wild plant populations, genetic divergence within continuous stands is common, someti...
Background: In wild plant populations, genetic divergence within continuous stands is common, somet...
Background. In wild plant populations, genetic divergence within continuous stands is common, someti...
In wild plant populations, genetic divergence within continuous stands is common, sometimes at very ...
In wild plant populations, genetic divergence within continuous stands is common, sometimes at very ...
Plant populations can undergo very localized adaptation, allowing widely distributed populations to ...
International audiencePlant populations can undergo very localized adaptation, allowing widely distr...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Unveiling the genetic basis of local adaptation to environmental variation is a major goal in molecu...
Plant populations can undergo very localized adaptation, allowing widely distributed populations to ...