<p>Fig 1. High-density genetic linkage map of turbot (<em>S. maximus</em>) SNPs. Linkage group name and number are placed above each linkage group, for example, LG2 represents the second linkage group (LG). Numbers on the left are recombination fraction (RF) between the uppermost SNP mapped in an LG to any linked SNP marker in Kosambi’s distance in the same LG. For example, the left third number 2.796cM in LG3, represents the genetic distance between the uppermost SNP marker SM_670 and the third SNP marker SM_672. Linked SNP’ names are on the right, SM Scophthalmus maximus, and the number is the order of SNPs 1 to 6, 647.</p> <p> </p
<p>The genetic resources available for the commercially important fish species Yellowtail kingfish (...
Genetic maps constitute valuable tools to detect genomic regions associated with complex traits and ...
<p>Alignment of SNPs with physical position on scaffold 5 of the <i>P</i>. <i>trichocarpa</i> genome...
<p>Linkage group name and number are placed above each linkage group, for example, LG2 represents th...
This paper describes the development of a high density consensus genetic linkage map of a turbot (Sc...
A consensus microsatellite-based linkage map of the turbot (Scophthalmus maximus) was constructed f...
A consensus microsatellite-based linkage map of the turbot (Scophthalmus maximus) was constructed fr...
The turbot (Scophthalmusmaximus) is a species of great relevance to European aquaculture and hence m...
[Background] The turbot (Scophthalmus maximus) is a relevant species in European aquaculture. The...
A high-density genetic map is essential for comparative genomic studies and fine mapping of QTL, and...
Genetic linkage map constructed from SNP markers derived from genotyping-by-sequencing in a recombin...
<p><b>Note:</b> A black bar indicates a SNP marker. The x-axis represents the linkage group number a...
Among the variety of cultured marine species, the turbot Scophthalmus maximus is a fish of growing i...
<p>Key message: Linkage mapping can help unravel the complexities of polyploid genomes. Here, we int...
<p>(a.) Details of the ΔSNP index on chromosome A9. Dentate lines indicate the threshold value; the ...
<p>The genetic resources available for the commercially important fish species Yellowtail kingfish (...
Genetic maps constitute valuable tools to detect genomic regions associated with complex traits and ...
<p>Alignment of SNPs with physical position on scaffold 5 of the <i>P</i>. <i>trichocarpa</i> genome...
<p>Linkage group name and number are placed above each linkage group, for example, LG2 represents th...
This paper describes the development of a high density consensus genetic linkage map of a turbot (Sc...
A consensus microsatellite-based linkage map of the turbot (Scophthalmus maximus) was constructed f...
A consensus microsatellite-based linkage map of the turbot (Scophthalmus maximus) was constructed fr...
The turbot (Scophthalmusmaximus) is a species of great relevance to European aquaculture and hence m...
[Background] The turbot (Scophthalmus maximus) is a relevant species in European aquaculture. The...
A high-density genetic map is essential for comparative genomic studies and fine mapping of QTL, and...
Genetic linkage map constructed from SNP markers derived from genotyping-by-sequencing in a recombin...
<p><b>Note:</b> A black bar indicates a SNP marker. The x-axis represents the linkage group number a...
Among the variety of cultured marine species, the turbot Scophthalmus maximus is a fish of growing i...
<p>Key message: Linkage mapping can help unravel the complexities of polyploid genomes. Here, we int...
<p>(a.) Details of the ΔSNP index on chromosome A9. Dentate lines indicate the threshold value; the ...
<p>The genetic resources available for the commercially important fish species Yellowtail kingfish (...
Genetic maps constitute valuable tools to detect genomic regions associated with complex traits and ...
<p>Alignment of SNPs with physical position on scaffold 5 of the <i>P</i>. <i>trichocarpa</i> genome...