The Bnapus50K array: a quick and versatile genotyping tool for Brassica napus genomic breeding and research
Author(s) -
Qing Xiao,
Huadong Wang,
Nuan Song,
Zewen Yu,
Imran Khan,
Weibo Xie,
Shuqing Qiu,
Fasong Zhou,
Jing Wen,
Cheng Dai,
Chaozhi Ma,
Jinxing Tu,
Jinxiong Shen,
Tingdong Fu,
Bin Yi
Publication year - 2021
Publication title -
g3 genes genomes genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.468
H-Index - 66
ISSN - 2160-1836
DOI - 10.1093/g3journal/jkab241
Subject(s) - genotyping , rapeseed , biology , germplasm , snp genotyping , genetics , molecular breeding , genome , single nucleotide polymorphism , computational biology , snp array , microbiology and biotechnology , dna sequencing , genotype , gene , agronomy
Rapeseed is a globally cultivated commercial crop, primarily grown for its oil. High-density single nucleotide polymorphism (SNP) arrays are widely used as a standard genotyping tool for rapeseed research, including for gene mapping, genome-wide association studies, germplasm resource analysis, and cluster analysis. Although considerable rapeseed genome sequencing data have been released, DNA arrays are still an attractive choice for providing additional genetic data in an era of high-throughput whole-genome sequencing. Here, we integrated re-sequencing DNA array data (32,216, 304 SNPs) from 505 inbred rapeseed lines, allowing us to develop a sensitive and efficient genotyping DNA array, Bnapus50K, with a more consistent genetic and physical distribution of probes. A total of 42,090 high-quality probes were filtered and synthesized, with an average distance between adjacent SNPs of 8 kb. To improve the practical application potential of this array in rapeseed breeding, we also added 1,618 functional probes related to important agronomic traits such as oil content, disease resistance, male sterility, and flowering time. The additional probes also included those specifically for detecting genetically modified material. These probes show a good detection efficiency and are therefore useful for gene mapping, along with crop variety improvement and identification. The novel Bnapus50K DNA array developed in this study could prove to be a quick and versatile genotyping tool for B. napus genomic breeding and research.
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