Fast and Cost-Effective Genetic Mapping in Apple Using Next-Generation Sequencing

Publication Overview
TitleFast and Cost-Effective Genetic Mapping in Apple Using Next-Generation Sequencing
AuthorsGardner KM, Brown PJ, Cooke TF, Cann S, Costa F, Bustamante CD, Velasco R, Troggio M, Myles S
TypeJournal Article
Journal NameG3 (Bethesda, Md.)
Year2014
CitationGardner KM, Brown PJ, Cooke TF, Cann S, Costa F, Bustamante CD, Velasco R, Troggio M, Myles S. Fast and Cost-Effective Genetic Mapping in Apple Using Next-Generation Sequencing. G3 (Bethesda, Md.). 2014 Jul 16.

Abstract

Next-generation DNA sequencing (NGS) produces vast amounts of DNA sequence data, but it is not specifically designed to generate data suitable for genetic mapping. Recently developed DNA library preparation methods for NGS have helped solve this problem, however, by combining the use of reduced representation libraries with DNA sample barcoding to generate genome-wide genotype data from a common set of genetic markers across a large number of samples. Here we use such a method, called genotyping-by-sequencing (GBS), to produce a data set for genetic mapping in an F1 population of apples (Malus x domestica) segregating for skin color. We show that GBS produces a relatively large, but extremely sparse, genotype matrix: over 270,000 SNPs were discovered, but most SNPs have too much missing data across samples to be useful for genetic mapping. After filtering for genotype quality and missing data, only 6% of the 85 million DNA sequence reads contributed to useful genotype calls. Despite this limitation, using existing software and a set of simple heuristics, we generated a final genotype matrix containing 3967 SNPs from 89 DNA samples from a single lane of Illumina HiSeq and used it to create a saturated genetic linkage map and to identify a known QTL underlying apple skin color. We therefore demonstrate that GBS is a cost effective method for generating genome-wide SNP data suitable for genetic mapping in a highly diverse and heterozygous agricultural species. We anticipate future improvements to the GBS analysis pipeline presented here that will enhance the utility of next-generation DNA sequence data for the purposes of genetic mapping across diverse species.

Features
This publication contains information about 1,907 features:
Feature NameUniquenameType
17_1838327317_18383273genetic_marker
15_3075701115_30757011genetic_marker
9_238977659_23897765genetic_marker
1_42479781_4247978genetic_marker
5_243257385_24325738genetic_marker
15_3730917115_37309171genetic_marker
15_2168881615_21688816genetic_marker
15_3762104615_37621046genetic_marker
15_2168880815_21688808genetic_marker
15_2168884115_21688841genetic_marker
15_3501913815_35019138genetic_marker
15_3821702215_38217022genetic_marker
15_3821699415_38216994genetic_marker
15_3873716615_38737166genetic_marker
15_3808877215_38088772genetic_marker
15_3804163815_38041638genetic_marker
15_3896613415_38966134genetic_marker
1_43359541_4335954genetic_marker
15_3838405915_38384059genetic_marker
15_4179227615_41792276genetic_marker
15_4545421615_45454216genetic_marker
15_4274349315_42743493genetic_marker
15_4274344515_42743445genetic_marker
2_336611942_33661194genetic_marker
15_4651761415_46517614genetic_marker

Pages

Projects
This publication contains information about 1 projects:
Project NameDescription
Apple skin color trait-Myles-2014
Featuremaps
This publication contains information about 1 maps:
Map Name
Apple-GDxSS-F1