Test of the relationship of genetic and particularly epigenetic variation with geographic isolation and environment is important to reveal potential environmental drivers for selection. Rhododendron oldhamii is widespread but inhabits fragmented subtropical forest landscapes and populations across its range may exhibit different levels of genetic and epigenetic structuring correlated to their environmental conditions. Here, we investigated the genetic and epigenetic variations and their ecological correlates in R. oldhamii. Genetic and epigenetic variations were surveyed using amplified fragment length polymorphism (AFLP) and methylation-sensitive amplification polymorphism (MSAP), respectively. Using variation partitioning by redundant ana...
DNA methylation in plants affects transposon silencing, transcriptional regulation and thus phenotyp...
Elucidation of the evolutionary processes that constrain or facilitate adaptive divergence is a cent...
Little is known on the potential of ecological disturbance to cause genetic and epigenetic changes i...
Test of the relationship of genetic and particularly epigenetic variation with geographic isolation ...
Environmentally induced phenotypic plasticity is thought to play an important role in the adaption o...
The testing association of environmental variables with genetic and epigenetic variation could be cr...
Variation of DNA-methylation is thought to play an important role for rapid adjustments of plant pop...
Despite the recent upsurge of interest on natural epigenetic variation of nonmodel organisms, factor...
Epigenetic changes can occur due to extracellular environmental conditions. Consequently, epigenetic...
Epigenetic modifications, such as DNA methylation variation, can generate heritable phenotypic varia...
In sessile organisms such as plants, spatial genetic structures of populations show long-lasting pat...
Disentangling the molecular mechanisms of adaptation in natural plant populations in response to dif...
Heritable epigenetic modifications may occur in response to environmental variation, further alterin...
DNA methylation in plants affects transposon silencing, transcriptional regulation and thus phenotyp...
Elucidation of the evolutionary processes that constrain or facilitate adaptive divergence is a cent...
Little is known on the potential of ecological disturbance to cause genetic and epigenetic changes i...
Test of the relationship of genetic and particularly epigenetic variation with geographic isolation ...
Environmentally induced phenotypic plasticity is thought to play an important role in the adaption o...
The testing association of environmental variables with genetic and epigenetic variation could be cr...
Variation of DNA-methylation is thought to play an important role for rapid adjustments of plant pop...
Despite the recent upsurge of interest on natural epigenetic variation of nonmodel organisms, factor...
Epigenetic changes can occur due to extracellular environmental conditions. Consequently, epigenetic...
Epigenetic modifications, such as DNA methylation variation, can generate heritable phenotypic varia...
In sessile organisms such as plants, spatial genetic structures of populations show long-lasting pat...
Disentangling the molecular mechanisms of adaptation in natural plant populations in response to dif...
Heritable epigenetic modifications may occur in response to environmental variation, further alterin...
DNA methylation in plants affects transposon silencing, transcriptional regulation and thus phenotyp...
Elucidation of the evolutionary processes that constrain or facilitate adaptive divergence is a cent...
Little is known on the potential of ecological disturbance to cause genetic and epigenetic changes i...