Yan Guijun, Liu Hui, Wang Haibo, Lu Zhanyuan, Wang Yanxia, Mullan Daniel, Hamblin John, Liu Chunji
Faculty of Science, UWA School of Agriculture and Environment, University of Western Australia, Perth, WA, Australia.
The UWA Institute of Agriculture, University of Western Australia, Crawley, WA, Australia.
Front Plant Sci. 2017 Oct 24;8:1786. doi: 10.3389/fpls.2017.01786. eCollection 2017.
Production of pure lines is an important step in biological studies and breeding of many crop plants. The major types of pure lines for biological studies and breeding include doubled haploid (DH) lines, recombinant inbred lines (RILs), and near isogenic lines (NILs). DH lines can be produced through microspore and megaspore culture followed by chromosome doubling while RILs and NILs can be produced through introgressions or repeated selfing of hybrids. DH approach was developed as a quicker method than conventional method to produce pure lines. However, its drawbacks of genotype-dependency and only a single chance of recombination limited its wider application. A recently developed fast generation cycling system (FGCS) achieved similar times to those of DH for the production of selfed pure lines but is more versatile as it is much less genotype-dependent than DH technology and does not restrict recombination to a single event. The advantages and disadvantages of the technologies and their produced pure line populations for different purposes of biological research and breeding are discussed. The development of a concept of complete meiosis and mitosis system is also proposed. This could integrate with the recently developed technologies of single cell genomic sequencing and genome wide selection, leading to a complete laboratory based pre-breeding scheme.
纯系的产生是许多作物生物学研究和育种中的重要步骤。用于生物学研究和育种的主要纯系类型包括双单倍体(DH)系、重组自交系(RIL)和近等基因系(NIL)。DH系可通过小孢子和大孢子培养,随后进行染色体加倍来产生,而RIL和NIL可通过杂交渗入或杂种反复自交来产生。DH方法作为一种比传统方法更快产生纯系的方法而被开发出来。然而,其基因型依赖性以及仅一次重组机会的缺点限制了其更广泛的应用。最近开发的快速世代循环系统(FGCS)在产生自交纯系方面达到了与DH相似的时间,但更具通用性,因为它比DH技术对基因型的依赖性小得多,并且不将重组限制在单个事件上。本文讨论了这些技术及其产生的纯系群体在不同生物学研究和育种目的中的优缺点。还提出了完整减数分裂和有丝分裂系统概念的发展。这可以与最近开发的单细胞基因组测序和全基因组选择技术相结合,形成一个完整的基于实验室的预育种方案。