Scotland's Rural College (SRUC), Edinburgh EH9 3JG, UK.
Rana House, Wellesbourne, Warwick CV35 9LS, UK.
G3 (Bethesda). 2021 Oct 19;11(11). doi: 10.1093/g3journal/jkab295.
Multiparental Advanced Generation Inter-Cross (MAGIC) populations are valuable crop resources with a wide array of research uses including genetic mapping of complex traits, management of genetic resources and breeding of new varieties. Multiple founders are crossed to create a rich mosaic of highly recombined founder genomes in the MAGIC recombinant inbred lines (RILs). Many variations of MAGIC population designs exist; however, a large proportion of the currently available populations have been created empirically and based on similar designs. In our evaluations of five MAGIC populations, we found that the choice of designs has a large impact on the recombination landscape in the RILs. The most popular design used in many MAGIC populations has been shown to have a bias in recombinant haplotypes and low level of unique recombinant haplotypes, and therefore is not recommended. To address this problem and provide a remedy for the future, we have developed the "magicdesign" R package for creating and testing any MAGIC population design via simulation. A Shiny app version of the package is available as well. Our "magicdesign" package provides a unifying tool and a framework for creativity and innovation in MAGIC population designs. For example, using this package, we demonstrate that MAGIC population designs can be found which are very effective in creating haplotype diversity without the requirement for very large crossing programs. Furthermore, we show that interspersing cycles of crossing with cycles of selfing is effective in increasing haplotype diversity. These approaches are applicable in species that are hard to cross or in which resources are limited.
多亲代高级世代互交(MAGIC)群体是宝贵的作物资源,具有广泛的研究用途,包括复杂性状的遗传图谱、遗传资源管理和新品种的培育。多个亲本杂交,在 MAGIC 重组自交系(RIL)中产生高度重组的亲本基因组的丰富镶嵌体。存在多种 MAGIC 群体设计的变体;然而,目前可用的大部分群体都是基于经验和类似的设计创建的。在对五个 MAGIC 群体的评估中,我们发现设计的选择对 RIL 中的重组景观有很大的影响。在许多 MAGIC 群体中使用的最流行的设计已被证明在重组单倍型上存在偏差,并且独特的重组单倍型水平较低,因此不推荐使用。为了解决这个问题并为未来提供补救措施,我们开发了“magicdesign”R 包,用于通过模拟创建和测试任何 MAGIC 群体设计。该软件包还提供了一个闪亮的应用程序版本。我们的“magicdesign”包提供了一个统一的工具和一个在 MAGIC 群体设计中进行创意和创新的框架。例如,使用这个包,我们演示了可以找到 MAGIC 群体设计,这些设计在创建单倍型多样性方面非常有效,而不需要非常大的杂交计划。此外,我们还表明,在杂交循环之间穿插自交循环可以有效地增加单倍型多样性。这些方法适用于难以杂交或资源有限的物种。