Comparative genome analysis has been performed between alfalfa (Medicago sativa) and pea (Pisum sativum), species which represent two closely related tribes of the subfamily Papilionoideae with different basic chromosome numbers. The positions of genes on the most recent linkage map of diploid alfalfa were compared to those of homologous loci on the combined genetic map of pea to analyze the degree of co-linearity between their linkage groups. In addition to using unique genes, analysis of the map positions of multicopy (homologous) genes identified syntenic homologs (characterized by similar positions on the maps) and pinpointed the positions of non-syntenic homologs. The comparison revealed extensive conservation of gene order between alf...
The genetic structure of complex agronomic traits in alfalfa ( Medicago sativa) is not well understo...
A 560-c M linkage map consisting of 64 morphological, isozyme, and DNA markers, has been developed f...
Pea has a complex genome of 4.3 Gb for which only limited genomic resources are available to date. A...
A genetic linkage map is a valuable tool for quantitative trait locus mapping, map-based gene clonin...
The crop legume pea (Pisum sativum) is genetically well characterized. However, due to its large gen...
To identify genes involved in phenotypic traits, translational genomics from highly characterized mo...
To identify genes involved in phenotypic traits, translational genomics from highly characterized mo...
A genetic linkage map is a valuable tool for quantitative trait locus mapping, map-based gene clonin...
A core genetic map of the legume Medicago truncatula has been established by analyzing the segregati...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
To determine the usefulness of M. truncatula as intergenomic vehicle for the positional cloning of p...
The increased amount of data produced by large genome sequencing projects allows scientists to carry...
Orthologous markers transferable between distantly related legume species allow for the rapid genera...
The genetic structure of complex agronomic traits in alfalfa ( Medicago sativa) is not well understo...
A 560-c M linkage map consisting of 64 morphological, isozyme, and DNA markers, has been developed f...
Pea has a complex genome of 4.3 Gb for which only limited genomic resources are available to date. A...
A genetic linkage map is a valuable tool for quantitative trait locus mapping, map-based gene clonin...
The crop legume pea (Pisum sativum) is genetically well characterized. However, due to its large gen...
To identify genes involved in phenotypic traits, translational genomics from highly characterized mo...
To identify genes involved in phenotypic traits, translational genomics from highly characterized mo...
A genetic linkage map is a valuable tool for quantitative trait locus mapping, map-based gene clonin...
A core genetic map of the legume Medicago truncatula has been established by analyzing the segregati...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
Genome sequencing of the model legumes, Medicago truncatula and Lotus japonicus, provides an opportu...
To determine the usefulness of M. truncatula as intergenomic vehicle for the positional cloning of p...
The increased amount of data produced by large genome sequencing projects allows scientists to carry...
Orthologous markers transferable between distantly related legume species allow for the rapid genera...
The genetic structure of complex agronomic traits in alfalfa ( Medicago sativa) is not well understo...
A 560-c M linkage map consisting of 64 morphological, isozyme, and DNA markers, has been developed f...
Pea has a complex genome of 4.3 Gb for which only limited genomic resources are available to date. A...