Montenegro Juan D, Golicz Agnieszka A, Bayer Philipp E, Hurgobin Bhavna, Lee HueyTyng, Chan Chon-Kit Kenneth, Visendi Paul, Lai Kaitao, Doležel Jaroslav, Batley Jacqueline, Edwards David
School of Agriculture and Food Sciences, University of Queensland, Brisbane, Australia.
School of Plant Biology, University of Western Australia, Crawley, WA, 6009, Australia.
Plant J. 2017 Jun;90(5):1007-1013. doi: 10.1111/tpj.13515. Epub 2017 Apr 5.
There is an increasing understanding that variation in gene presence-absence plays an important role in the heritability of agronomic traits; however, there have been relatively few studies on variation in gene presence-absence in crop species. Hexaploid wheat is one of the most important food crops in the world and intensive breeding has reduced the genetic diversity of elite cultivars. Major efforts have produced draft genome assemblies for the cultivar Chinese Spring, but it is unknown how well this represents the genome diversity found in current modern elite cultivars. In this study we build an improved reference for Chinese Spring and explore gene diversity across 18 wheat cultivars. We predict a pangenome size of 140 500 ± 102 genes, a core genome of 81 070 ± 1631 genes and an average of 128 656 genes in each cultivar. Functional annotation of the variable gene set suggests that it is enriched for genes that may be associated with important agronomic traits. In addition to variation in gene presence, more than 36 million intervarietal single nucleotide polymorphisms were identified across the pangenome. This study of the wheat pangenome provides insight into genome diversity in elite wheat as a basis for genomics-based improvement of this important crop. A wheat pangenome, GBrowse, is available at http://appliedbioinformatics.com.au/cgi-bin/gb2/gbrowse/WheatPan/, and data are available to download from http://wheatgenome.info/wheat_genome_databases.php.
人们越来越认识到基因存在与否的变异在农艺性状的遗传力中起着重要作用;然而,关于作物物种中基因存在与否的变异的研究相对较少。六倍体小麦是世界上最重要的粮食作物之一,密集育种降低了优良品种的遗传多样性。人们已经做出了很大努力来生成中国春品种的基因组草图,但目前尚不清楚它能在多大程度上代表现代优良品种中的基因组多样性。在本研究中,我们构建了一个改进的中国春参考基因组,并探索了18个小麦品种的基因多样性。我们预测泛基因组大小为140500±102个基因,核心基因组为81070±1631个基因,每个品种平均有128656个基因。可变基因集的功能注释表明,它富含可能与重要农艺性状相关的基因。除了基因存在的变异外,在整个泛基因组中还鉴定出了超过3600万个品种间单核苷酸多态性。这项对小麦泛基因组的研究为了解优良小麦的基因组多样性提供了见解,作为基于基因组学改良这种重要作物的基础。一个小麦泛基因组GBrowse可在http://appliedbioinformatics.com.au/cgi-bin/gb2/gbrowse/WheatPan/上获取,数据可从http://wheatgenome.info/wheat_genome_databases.php下载。