School of Agriculture, Food and Wine, University of Adelaide, PMB 1, Glen Osmond, 5064, SA, Australia.
Bioinformatics Hub, School of Biological Sciences, University of Adelaide, Adelaide, SA 5005, Australia.
BMC Genomics. 2018 Dec 17;19(1):941. doi: 10.1186/s12864-018-5228-2.
Democratising the growing body of whole genome sequencing data available for Triticum aestivum (bread wheat) has been impeded by the lack of a genome reference and the large computational requirements for analysing these data sets.
DAWN (Diversity Among Wheat geNomes) integrates data from the T. aestivum Chinese Spring (CS) IWGSC RefSeq v1.0 genome with public WGS and exome data from 17 and 62 accessions respectively, enabling researchers and breeders alike to investigate genotypic differences between wheat accessions at the level of whole chromosomes down to individual genes.
Using DAWN we show that it is possible to visualise small and large chromosomal deletions, identify haplotypes at a glance and spot the consequences of selective breeding. DAWN allows us to detect the break points of alien introgression segments brought into an accession when transferring desired genes. Furthermore, we can find possible explanations for reduced recombination in parts of a chromosome, we can predict regions with linkage drag, and also look at diversity in centromeric regions.
由于缺乏基因组参考序列和分析这些数据集所需的大量计算资源,用于春小麦(普通小麦)的全基因组测序数据不断增长,普及受到了阻碍。
DAWN(小麦基因组多样性分析)整合了中国春 IWGSC RefSeq v1.0 基因组的 T. aestivum 数据,以及来自 17 个和 62 个品系的公共 WGS 和外显子组数据,使研究人员和育种者都能够研究小麦品系在整个染色体水平(甚至单个基因)上的基因型差异。
使用 DAWN,我们表明可以可视化小的和大的染色体缺失,一眼就能识别单倍型,并发现选择性育种的后果。DAWN 使我们能够检测到在转移所需基因时,一个品系中引入的外源渐渗片段的断点。此外,我们还可以找到染色体某些部分重组减少的可能原因,预测连锁累赘区域,并观察着丝粒区域的多样性。