<div><p>High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphisms (SNPs) have made the rapid genetic characterisation of plant genomes and the development of saturated linkage maps a realistic prospect for many plant species of agronomic importance. However, the correct calling of SNP genotypes in divergent polyploid genomes using array technology can be problematic due to paralogy, and to divergence in probe sequences causing changes in probe binding efficiencies. An Illumina Infinium II whole-genome genotyping array was recently developed for the cultivated apple and used to develop a molecular linkage map for an apple rootstock progeny (M432), but a large proportion of segregating SNPs were no...
<div><p>As high-throughput genetic marker screening systems are essential for a range of genetics st...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
As high-throughput genetic marker screening systems are essential for a range of genetics studies an...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
Background: A whole-genome genotyping array has previously been developed for Malus using SNP data f...
<div><p>High-density SNP arrays for genome-wide assessment of allelic variation have made high resol...
Abstract Background A whole-genome genotyping array has previously been developed for Malus using SN...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
Background: Single nucleotide polymorphism (SNP) array technology has been increasingly used to gene...
<div><p>As high-throughput genetic marker screening systems are essential for a range of genetics st...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
As high-throughput genetic marker screening systems are essential for a range of genetics studies an...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
High throughput arrays for the simultaneous genotyping of thousands of single-nucleotide polymorphis...
Background: A whole-genome genotyping array has previously been developed for Malus using SNP data f...
<div><p>High-density SNP arrays for genome-wide assessment of allelic variation have made high resol...
Abstract Background A whole-genome genotyping array has previously been developed for Malus using SN...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
Background: Single nucleotide polymorphism (SNP) array technology has been increasingly used to gene...
<div><p>As high-throughput genetic marker screening systems are essential for a range of genetics st...
High-density SNP arrays for genome-wide assessment of allelic variation have made high resolution ge...
As high-throughput genetic marker screening systems are essential for a range of genetics studies an...