Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation

N Senerchia, F Felber… - Proceedings of the …, 2015 - royalsocietypublishing.org
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the nature of genetic incompatibilities having accumulated during and after the origin of …

[PDF][PDF] Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation

N Senerchia, F Felber, C Parisod - 2015 - academia.edu
1. Background Factors driving genome and species diversification remain to be clarified.
The current diversity of functional genomes finds its origin in mutations, which are reshuffled …

Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation.

N Senerchia, F Felber, C Parisod - 2015 - cabidigitallibrary.org
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the nature of genetic incompatibilities having accumulated during and after the origin of …

Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation.

N Senerchia, F Felber, C Parisod - Proceedings. Biological sciences, 2015 - folia.unifr.ch
English Interspecific hybridization leads to new interactions among divergent genomes,
revealing the nature of genetic incompatibilities having accumulated during and after the …

Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation.

N Senerchia, F Felber, C Parisod - Proceedings. Biological sciences, 2015 - sonar.ch
English Interspecific hybridization leads to new interactions among divergent genomes,
revealing the nature of genetic incompatibilities having accumulated during and after the …

Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation

N Senerchia, F Felber… - Proceedings. Biological …, 2015 - pubmed.ncbi.nlm.nih.gov
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the nature of genetic incompatibilities having accumulated during and after the origin of …

Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation.

N Senerchia, F Felber, C Parisod - Proceedings. Biological …, 2015 - europepmc.org
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the nature of genetic incompatibilities having accumulated during and after the origin of …

[HTML][HTML] Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation

N Senerchia, F Felber, C Parisod - Proceedings of the Royal …, 2015 - ncbi.nlm.nih.gov
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the nature of genetic incompatibilities having accumulated during and after the origin of …

[PDF][PDF] Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation 2

N Senerchiaa, F Felbera, C Parisoda - researchgate.net
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the 15 nature of genetic incompatibilities having accumulated during and after the origin of …

[PDF][PDF] Genome reorganization in F1 hybrids uncovers the role of retrotransposons in reproductive isolation 2

N Senerchiaa, F Felbera, C Parisoda - unine.ch
Interspecific hybridization leads to new interactions among divergent genomes, revealing
the 15 nature of genetic incompatibilities having accumulated during and after the origin of …