As part of a marker program for QTL discovery, 313 sugarcane genes were targeted for the development of SNP markers. However, discovering useful SNPs for mapping these candidates from EST sequences in the public domain was found to be inefficient. As an alternative approach we designed primers to amplify regions of more than 200 of these genes for re-sequencing using 454 Life Sciences Genome Sequencer™ FLX. A region of a four gasket 454 sequencing run was used for the pooled amplicons from each of two mapping population parents. The sequencing yielded 96,755 and 86,241 sequences with perfect matches to a PCR primer used in amplification for the female (IJ76-514) and male (Q165) parents respectively. More than 94% of amplicons from Q165 had ...
Sugarcane cultivars are polyploid, aneuploid, interspecific hybrids between the domesticated species...
The sugarcane genome poses the challenge of being highly polyploid and requiring ingenuity to overco...
Discovering Single Nucleotide Polymorphism (SNP) thanks to Expressed Sequence Tags (ESTs) has proven...
Sugarcane is genetically complex due to polyploidy, aneuploidy and hybridisation which have led to a...
DNA markers can enhance rates of genetic gain in breeding programs and are currently being applied i...
Discovering single nucleotide polymorphisms (SNPs) in specific genes in a heterozygous polyploid pla...
Discovering single nucleotide polymorphisms (SNPs) in specific genes in a heterozygous polyploid pla...
The highly complex and polyploid genome of sugarcane provides challenges to nearly all technologies ...
The Brazilian Sugarcane EST Project (SUCEST) recently produced about 250,000 ESTs derived from the s...
SUGARCANE (SACCHARUM SPP.) IS one of the world's most important economic crops, grown for its sugar ...
The sequencing of the sugarcane genome to produce a complete assembled sequence will be an important...
Single Nucleotide Polymorphism (SNP) markers are key tools in genetics research in many species. Lar...
Abstract Background Sugarcane (Saccharum spp.) is pre...
Sugarcane has the most complex genome of any crop plant. Commercial sugarcane cultivars are the resu...
Commercial sugarcane cultivars (Saccharum spp. hybrids) are both polyploid and aneuploid with chromo...
Sugarcane cultivars are polyploid, aneuploid, interspecific hybrids between the domesticated species...
The sugarcane genome poses the challenge of being highly polyploid and requiring ingenuity to overco...
Discovering Single Nucleotide Polymorphism (SNP) thanks to Expressed Sequence Tags (ESTs) has proven...
Sugarcane is genetically complex due to polyploidy, aneuploidy and hybridisation which have led to a...
DNA markers can enhance rates of genetic gain in breeding programs and are currently being applied i...
Discovering single nucleotide polymorphisms (SNPs) in specific genes in a heterozygous polyploid pla...
Discovering single nucleotide polymorphisms (SNPs) in specific genes in a heterozygous polyploid pla...
The highly complex and polyploid genome of sugarcane provides challenges to nearly all technologies ...
The Brazilian Sugarcane EST Project (SUCEST) recently produced about 250,000 ESTs derived from the s...
SUGARCANE (SACCHARUM SPP.) IS one of the world's most important economic crops, grown for its sugar ...
The sequencing of the sugarcane genome to produce a complete assembled sequence will be an important...
Single Nucleotide Polymorphism (SNP) markers are key tools in genetics research in many species. Lar...
Abstract Background Sugarcane (Saccharum spp.) is pre...
Sugarcane has the most complex genome of any crop plant. Commercial sugarcane cultivars are the resu...
Commercial sugarcane cultivars (Saccharum spp. hybrids) are both polyploid and aneuploid with chromo...
Sugarcane cultivars are polyploid, aneuploid, interspecific hybrids between the domesticated species...
The sugarcane genome poses the challenge of being highly polyploid and requiring ingenuity to overco...
Discovering Single Nucleotide Polymorphism (SNP) thanks to Expressed Sequence Tags (ESTs) has proven...