CSIRO Agriculture and Food, Queensland Biosciences Precinct, 306 Carmody Rd, St Lucia, QLD 4067, Australia.
ENEA, CASACCIA Research Center, Biotech Laboratory, Via Anguillarese 301, 00123, Rome, Italy.
Sci Rep. 2019 Dec 18;9(1):19362. doi: 10.1038/s41598-019-55652-3.
Sugarcane (Saccharum spp.) is a globally important crop for sugar and bioenergy production. Its highly polyploid, complex genome has hindered progress in understanding its molecular structure. Flow cytometric sorting and analysis has been used in other important crops with large genomes to dissect the genome into component chromosomes. Here we present for the first time a method to prepare suspensions of intact sugarcane chromosomes for flow cytometric analysis and sorting. Flow karyotypes were generated for two S. officinarum and three hybrid cultivars. Five main peaks were identified and each genotype had a distinct flow karyotype profile. The flow karyotypes of S. officinarum were sharper and with more discrete peaks than the hybrids, this difference is probably due to the double genome structure of the hybrids. Simple Sequence Repeat (SSR) markers were used to determine that at least one allelic copy of each of the 10 basic chromosomes could be found in each peak for every genotype, except R570, suggesting that the peaks may represent ancestral Saccharum sub genomes. The ability to flow sort Saccharum chromosomes will allow us to isolate and analyse chromosomes of interest and further examine the structure and evolution of the sugarcane genome.
甘蔗 (Saccharum spp.) 是一种全球重要的糖料和生物能源作物。其高度多倍体、复杂的基因组阻碍了对其分子结构的理解。流式细胞术分选和分析已在其他具有大基因组的重要作物中得到应用,以将基因组分解为组成染色体。在这里,我们首次提出了一种用于流式细胞术分析和分选完整甘蔗染色体悬浮液的方法。为两个甘蔗属品种和三个杂交品种生成了流式核型。鉴定出五个主要峰,每个基因型都具有独特的流式核型图谱。甘蔗属品种的流式核型比杂种更清晰,峰更离散,这种差异可能是由于杂种的双基因组结构所致。简单重复序列 (SSR) 标记用于确定每个基因型的每个基本染色体的至少一个等位基因拷贝都可以在每个峰中找到,除了 R570 之外,这表明这些峰可能代表甘蔗属的祖先亚基因组。对甘蔗染色体进行流式分选的能力将使我们能够分离和分析感兴趣的染色体,并进一步研究甘蔗基因组的结构和进化。