Shanghai Key Laboratory of Plant Molecular Sciences, College of Life Sciences, Shanghai Normal University, Shanghai 200234, China.
Shanghai Key Laboratory of Plant Functional Genomics and Resources, Shanghai Chenshan Plant Science Research Center, Chinese Academy of Sciences, Shanghai Chenshan Botanical Garden, Shanghai 201602, China.
Mol Plant. 2021 Apr 5;14(4):556-570. doi: 10.1016/j.molp.2021.01.003. Epub 2021 Jan 8.
Many important crops (e.g., tuber, root, and tree crops) are cross-pollinating. For these crops, no inbred lines are available for genetic study and breeding because they are self-incompatible, clonally propagated, or have a long generation time, making the identification of agronomically important genes difficult, particularly in crops with a complex autopolyploid genome. In this study, we developed a method, OutcrossSeq, for mapping agronomically important loci in outcrossing crops based on whole-genome low-coverage resequencing of a large genetic population, and designed three computation algorithms in OutcrossSeq for different types of outcrossing populations. We applied OutcrossSeq to a tuberous root crop (sweet potato, autopolyploid), a tree crop (walnut tree, highly heterozygous diploid), and hybrid crops (double-cross populations) to generate high-density genotype maps for the outcrossing populations, which enable precise identification of genomic loci underlying important agronomic traits. Candidate causative genes at these loci were detected based on functional clues. Taken together, our results indicate that OutcrossSeq is a robust and powerful method for identifying agronomically important genes in heterozygous species, including polyploids, in a cost-efficient way. The OutcrossSeq software and its instruction manual are available for downloading at www.xhhuanglab.cn/tool/OutcrossSeq.html.
许多重要的作物(例如块茎、根和木本作物)是异花授粉的。对于这些作物,由于它们是自交不亲和的、克隆繁殖的或世代时间长,因此没有可用于遗传研究和育种的纯系,这使得鉴定具有重要农艺性状的基因变得困难,尤其是在具有复杂同源多倍体基因组的作物中。在这项研究中,我们开发了一种方法 OutcrossSeq,用于基于大遗传群体的全基因组低覆盖重测序,在异花授粉作物中定位具有重要农艺性状的基因座,并在 OutcrossSeq 中设计了三种计算算法,用于不同类型的异花授粉群体。我们将 OutcrossSeq 应用于块茎根作物(甘薯,同源多倍体)、木本作物(核桃树,高度杂合的二倍体)和杂交作物(双交群体),为异花授粉群体生成高密度基因型图谱,从而能够精确鉴定重要农艺性状的基因组基因座。基于功能线索,在这些基因座中检测到候选因果基因。总之,我们的结果表明,OutcrossSeq 是一种强大而有效的方法,可用于以经济高效的方式在异质物种(包括多倍体)中鉴定具有重要农艺性状的基因。OutcrossSeq 软件及其使用手册可在 www.xhhuanglab.cn/tool/OutcrossSeq.html 下载。