<div><p>There is an increasing interest in understanding the role of epigenetic variability in forest species and how it may contribute to their rapid adaptation to changing environments. In this study we have conducted a genome-wide analysis of cytosine methylation pattern in <i>Pinus pinea</i>, a species characterized by very low levels of genetic variation and a remarkable degree of phenotypic plasticity. DNA methylation profiles of different vegetatively propagated trees from representative natural Spanish populations of <i>P. pinea</i> were analyzed with the Methylation Sensitive Amplified Polymorphism (MSAP) technique. A high degree of cytosine methylation was detected (64.36% of all scored DNA fragments). Furthermore, high levels of ...
The widespread poplar populations of Sardinia are vegetatively propagated and live in different natu...
Abstract Long-lived conifers are vulnerable to climate change because classical evolutionary proces...
Over the last several decades, several lines of evidence have shown that epigenetic modifications mo...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
Progressive increase of temperatures as well as longer seasonal drought periods revealed by climate ...
International audienceForest trees are long-lived organisms subject to repeated environmental constr...
Epigenetic mechanisms represent a possible mechanism for achieving a rapid response of long‐lived tr...
Forest trees are long-lived organisms subject to repeated environmental constraints throughout their...
The importance of tree genetic variability in the ability of forests to respond and adapt to environ...
The widespread poplar populations of Sardinia are vegetatively propagated and live in different natu...
Abstract Long-lived conifers are vulnerable to climate change because classical evolutionary proces...
Over the last several decades, several lines of evidence have shown that epigenetic modifications mo...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
There is an increasing interest in understanding the role of epigenetic variability in forest specie...
Progressive increase of temperatures as well as longer seasonal drought periods revealed by climate ...
International audienceForest trees are long-lived organisms subject to repeated environmental constr...
Epigenetic mechanisms represent a possible mechanism for achieving a rapid response of long‐lived tr...
Forest trees are long-lived organisms subject to repeated environmental constraints throughout their...
The importance of tree genetic variability in the ability of forests to respond and adapt to environ...
The widespread poplar populations of Sardinia are vegetatively propagated and live in different natu...
Abstract Long-lived conifers are vulnerable to climate change because classical evolutionary proces...
Over the last several decades, several lines of evidence have shown that epigenetic modifications mo...