School of Biological Sciences and Institute of Agriculture, The University of Western Australia, Crawley, WA, Australia.
School of Agriculture and Food Sciences, University of Queensland, St. Lucia, QLD, Australia.
Plant Biotechnol J. 2018 Jul;16(7):1265-1274. doi: 10.1111/pbi.12867. Epub 2018 Jan 10.
Homoeologous exchanges (HEs) have been shown to generate novel gene combinations and phenotypes in a range of polyploid species. Gene presence/absence variation (PAV) is also a major contributor to genetic diversity. In this study, we show that there is an association between these two events, particularly in recent Brassica napus synthetic accessions, and that these represent a novel source of genetic diversity, which can be captured for the improvement of this important crop species. By assembling the pangenome of B. napus, we show that 38% of the genes display PAV behaviour, with some of these variable genes predicted to be involved in important agronomic traits including flowering time, disease resistance, acyl lipid metabolism and glucosinolate metabolism. This study is a first and provides a detailed characterization of the association between HEs and PAVs in B. napus at the pangenome level.
同源重组(HEs)已被证明可以在一系列多倍体物种中产生新的基因组合和表型。基因存在/缺失变异(PAV)也是遗传多样性的主要贡献者。在这项研究中,我们表明这两个事件之间存在关联,特别是在最近的油菜合成品系中,这代表了一种新的遗传多样性来源,可以被用来改良这一重要的作物物种。通过组装油菜的泛基因组,我们发现 38%的基因表现出 PAV 行为,其中一些可变基因被预测涉及重要的农艺性状,包括开花时间、抗病性、酰基脂质代谢和硫代葡萄糖苷代谢。这项研究是首例,详细描述了油菜在泛基因组水平上的 HEs 和 PAVs 之间的关联。