Abstract
A cross between the sweet cherry (Prunus avium) cultivars 'Wanhongzhu' and 'Lapins' was performed to create a mapping population suitable for the construction of a linkage map. The specific-locus amplified fragment (SLAF) sequencing technique used as a single nucleotide polymorphism (SNP) discovery platform and generated 701 informative genotypic assays; these, along with 16 microsatellites (SSRs) and the incompatibility (S) gene, were used to build a map which comprised 8 linkage groups (LGs) and covered a genetic distance of 849.0 cM. The mean inter-marker distance was 1.18 cM and there were few gaps > 5 cM in length. Marker collinearity was maintained with the established peach genomic sequence. The map was used to show that trunk diameter (TD) is under the control of 4 loci, mapping to 3 different LGs. Different locus influenced TD at a varying stage of the tree's development. The high density 'W×L' genetic linkage map has the potential to enable highresolution identification of QTLs of agronomically relevant traits, and accelerate sweet cherry breeding. Copyright:
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CITATION STYLE
Wang, J., Zhang, K., Zhang, X., Yan, G., Zhou, Y., Feng, L., … Duan, X. (2015). Construction of commercial sweet cherry linkage maps and QTL analysis for trunk diameter. PLoS ONE, 10(10). https://doi.org/10.1371/journal.pone.0141261
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