Thirugnanasambandam Prathima P, Hoang Nam V, Henry Robert J
Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, St. Lucia, QLD, Australia.
ICAR - Sugarcane Breeding Institute, Coimbatore, India.
Front Plant Sci. 2018 May 14;9:616. doi: 10.3389/fpls.2018.00616. eCollection 2018.
Reference genome sequences have become key platforms for genetics and breeding of the major crop species. Sugarcane is probably the largest crop produced in the world (in weight of crop harvested) but lacks a reference genome sequence. Sugarcane has one of the most complex genomes in crop plants due to the extreme level of polyploidy. The genome of modern sugarcane hybrids includes sub-genomes from two progenitors and with some chromosomes resulting from recombination between these sub-genomes. Advancing DNA sequencing technologies and strategies for genome assembly are making the sugarcane genome more tractable. Advances in long read sequencing have allowed the generation of a more complete set of sugarcane gene transcripts. This is supporting transcript profiling in genetic research. The progenitor genomes are being sequenced. A monoploid coverage of the hybrid genome has been obtained by sequencing BAC clones that cover the gene space of the closely related sorghum genome. The complete polyploid genome is now being sequenced and assembled. The emerging genome will allow comparison of related genomes and increase understanding of the functioning of this polyploidy system. Sugarcane breeding for traditional sugar and new energy and biomaterial uses will be enhanced by the availability of these genomic resources.
参考基因组序列已成为主要作物遗传与育种的关键平台。甘蔗可能是世界上产量最大的作物(按收获作物的重量计算),但缺乏参考基因组序列。由于多倍体水平极高,甘蔗拥有作物植物中最复杂的基因组之一。现代甘蔗杂交种的基因组包括来自两个祖先的亚基因组,并且一些染色体是这些亚基因组之间重组的结果。先进的DNA测序技术和基因组组装策略正在使甘蔗基因组更易于处理。长读长测序的进展使得能够生成更完整的甘蔗基因转录本集合。这为遗传研究中的转录本分析提供了支持。祖先基因组正在进行测序。通过对覆盖密切相关的高粱基因组基因空间的BAC克隆进行测序,已获得杂交基因组的单倍体覆盖。完整的多倍体基因组目前正在进行测序和组装。新出现的基因组将允许对相关基因组进行比较,并增进对这个多倍体系统功能的理解。这些基因组资源的可用性将加强用于传统制糖以及新能源和生物材料用途的甘蔗育种。