Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of these processes is of particular interest to understand how novel taxa are formed and how they maintain genetic integrity. Sorbus is an example of a genus where active diversification and speciation are ongoing and, as such, represents an ideal model to investigate the roles of hybridization, polyploidy and apomixis in a reticulate evolutionary process. To elucidate breeding systems and evolutionary origins of a complex of closely related Sorbus taxa, we assessed genotypic diversity and population structure within and among taxa, combining data from nuclear DNA microsatellite markers and flow cytometry. Clonal analysis and low genotypic divers...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
The genus Sorbus is a very complicated group. Thanks to mikroevolutionary processes such as interspe...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
This is the final version. Available from Frontiers Media via the DOI in this record. Hybridization ...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
Interspecific hybridization and polyploidy are pivotal processes in plant evolution and speciation. ...
The genus Sorbus is an example of a taxonomically complex group (TCG) with diversity derived from hy...
From a lot of reason it is really complicated to evaluate biosystematicaly the facultative apomictic...
The main drivers of microevolution in the genus Sorbus are interspecific hybridisation and polyploid...
BACKGROUND AND AIMS: Allopolyploidy and intraspecific heteroploid crosses are associated, in certain...
In plants, apomixis results in the production of clonal offspring via seed and can provide reproduct...
Polyploidy has played a major role in the origin of new plant species, probably because of the expan...
Hybridization associated with polyploidization and apomixis is a frequent mechanism of speciation. S...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
The genus Sorbus is a very complicated group. Thanks to mikroevolutionary processes such as interspe...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
This is the final version. Available from Frontiers Media via the DOI in this record. Hybridization ...
Hybridization and polyploidy are major forces in the evolution of plant diversity and the study of t...
Interspecific hybridization and polyploidy are pivotal processes in plant evolution and speciation. ...
The genus Sorbus is an example of a taxonomically complex group (TCG) with diversity derived from hy...
From a lot of reason it is really complicated to evaluate biosystematicaly the facultative apomictic...
The main drivers of microevolution in the genus Sorbus are interspecific hybridisation and polyploid...
BACKGROUND AND AIMS: Allopolyploidy and intraspecific heteroploid crosses are associated, in certain...
In plants, apomixis results in the production of clonal offspring via seed and can provide reproduct...
Polyploidy has played a major role in the origin of new plant species, probably because of the expan...
Hybridization associated with polyploidization and apomixis is a frequent mechanism of speciation. S...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
Populations intermediate between the diploid and sexual Sorbus aucuparia and the tetraploid and facu...
The genus Sorbus is a very complicated group. Thanks to mikroevolutionary processes such as interspe...