The level of similarity between the DNA of Lolium multiflorum and three Festuca species, F. arundinacea, F. pratensis and F. glaucescens, was analysed on Southern blots, using DNA–DNA hybridization, and also on chromosomes using genomic in situ hybridization (GISH). It was demonstrated that the close relationship between L. multiflorum and the allohexaploid F. arundinacea arises principally from the affinity of L. multiflorum to one of the ancestral progenitors of F. arundinacea, namely F. pratensis. Using probes made from total genomic DNA of L. multiflorum, and also of L. perenne, particular regions of high homology, described here as ‘GISH bands’ were identified on F. pratensis chromosomes. These GISH bands, in combination with a specifi...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Background Over the last decade, progress in DNA sequencing technologies and assembly methods allowe...
Crosses were made between diploid Lolium multiflorum (2n = 2x = 14) and hexaploid Festuca arundinace...
The level of similarity between the DNA of Lolium multiflorum and three Festuca species, F. arundina...
Genomic in situ hybridization (GISH) on mitotic chromosome preparations of two diploid Lolium multif...
An F1 hybrid (n=4x=28) between the tetraploid species Festuca arundinacea var. glaucescens (GGG′G′) ...
Simple-sequence repeats (SSRs) comprising three tetranucleotide repeat sequences with two-base 'anch...
Genomic in situ hybridization (GISH) was used to identify Festuca chromatin in mitotic chromosomes o...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
A moderately repetitive genomic DNA sequence (designated pLPBB2-123) derived from Lolium perenne L. ...
The Schedonorus-Lolium complex of the subtribe Loliinae (Poaceae) includes several economically impo...
Intergeneric hybrids of fescues (Festuca spp.) and ryegrasses (Lolium spp.) are unique for the abili...
BACKGROUND AND AIMS:To address the issues associated with food security, environmental change and bi...
Abstract Background The agriculturally important pasture grass tall fescue (Festuca arundinacea Schr...
Background and Aims To address the issues associated with food security, environmental change and bi...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Background Over the last decade, progress in DNA sequencing technologies and assembly methods allowe...
Crosses were made between diploid Lolium multiflorum (2n = 2x = 14) and hexaploid Festuca arundinace...
The level of similarity between the DNA of Lolium multiflorum and three Festuca species, F. arundina...
Genomic in situ hybridization (GISH) on mitotic chromosome preparations of two diploid Lolium multif...
An F1 hybrid (n=4x=28) between the tetraploid species Festuca arundinacea var. glaucescens (GGG′G′) ...
Simple-sequence repeats (SSRs) comprising three tetranucleotide repeat sequences with two-base 'anch...
Genomic in situ hybridization (GISH) was used to identify Festuca chromatin in mitotic chromosomes o...
A single chromosome of the grass species Festuca pratensis has been introgressed into Lolium perenne...
A moderately repetitive genomic DNA sequence (designated pLPBB2-123) derived from Lolium perenne L. ...
The Schedonorus-Lolium complex of the subtribe Loliinae (Poaceae) includes several economically impo...
Intergeneric hybrids of fescues (Festuca spp.) and ryegrasses (Lolium spp.) are unique for the abili...
BACKGROUND AND AIMS:To address the issues associated with food security, environmental change and bi...
Abstract Background The agriculturally important pasture grass tall fescue (Festuca arundinacea Schr...
Background and Aims To address the issues associated with food security, environmental change and bi...
Molecular marker analysis and genomic in situ hybridisation (GISH) were used to examine the process ...
Background Over the last decade, progress in DNA sequencing technologies and assembly methods allowe...
Crosses were made between diploid Lolium multiflorum (2n = 2x = 14) and hexaploid Festuca arundinace...