Introgression in Festulolium is a potentially powerful tool to isolate genes for a large number of traits which differ between Festuca pratensis Huds. and Lolium perenne L. Not only are hybrids between the two species fertile, but the two genomes can be distinguished by genomic in situ hybridisation and a high frequency of recombination occurs between homoeologous chromosomes and chromosome segments. By a programme of introgression and a series of backcrosses, L. perenne lines have been produced which contain small F. pratensis substitutions. This material is a rich source of polymorphic markers targeted towards any trait carried on the F. pratensis substitution not observed in the L. perenne background. We describe here the construction of...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
<div><p>The <i>Festuca</i> genus is thought to be the most numerous genus of the Poaceae family. One...
Introgression in Festulolium is a potentially powerful tool to isolate genes for a large number of t...
Introgression in Festulolium is a potentially powerful tool to isolate genes for a large number of t...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
This work is part of the EU Framework 5 project, GRASP (http://www.grasp-euv.dk/). Breeding programs...
This work is part of the EU Framework 5 project, GRASP (http://www.grasp-euv.dk/). Breeding programs...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
Lolium perenne (4x)/Festuca pratensis (2x) triploid hybrids :(2n = 3x = 21) were produced and backcr...
Lolium perenne (4x)/Festuca pratensis (2x) triploid hybrids :(2n = 3x = 21) were produced and backcr...
The Festuca genus is thought to be the most numerous genus of the Poaceae family. One of the most ag...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
<div><p>The <i>Festuca</i> genus is thought to be the most numerous genus of the Poaceae family. One...
Introgression in Festulolium is a potentially powerful tool to isolate genes for a large number of t...
Introgression in Festulolium is a potentially powerful tool to isolate genes for a large number of t...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
Intergeneric hybrids between Lolium multiflorum and Festuca pratensis (Lm/Fp) and their derivatives ...
This work is part of the EU Framework 5 project, GRASP (http://www.grasp-euv.dk/). Breeding programs...
This work is part of the EU Framework 5 project, GRASP (http://www.grasp-euv.dk/). Breeding programs...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
Lolium perenne (4x)/Festuca pratensis (2x) triploid hybrids :(2n = 3x = 21) were produced and backcr...
Lolium perenne (4x)/Festuca pratensis (2x) triploid hybrids :(2n = 3x = 21) were produced and backcr...
The Festuca genus is thought to be the most numerous genus of the Poaceae family. One of the most ag...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
<div><p>The <i>Festuca</i> genus is thought to be the most numerous genus of the Poaceae family. One...