Key Laboratory of Horticultural Plant Biology (Ministry of Education), Huazhong Agricultural University, Wuhan, China.
Nat Genet. 2013 Jan;45(1):59-66. doi: 10.1038/ng.2472. Epub 2012 Nov 25.
Oranges are an important nutritional source for human health and have immense economic value. Here we present a comprehensive analysis of the draft genome of sweet orange (Citrus sinensis). The assembled sequence covers 87.3% of the estimated orange genome, which is relatively compact, as 20% is composed of repetitive elements. We predicted 29,445 protein-coding genes, half of which are in the heterozygous state. With additional sequencing of two more citrus species and comparative analyses of seven citrus genomes, we present evidence to suggest that sweet orange originated from a backcross hybrid between pummelo and mandarin. Focused analysis on genes involved in vitamin C metabolism showed that GalUR, encoding the rate-limiting enzyme of the galacturonate pathway, is significantly upregulated in orange fruit, and the recent expansion of this gene family may provide a genomic basis. This draft genome represents a valuable resource for understanding and improving many important citrus traits in the future.
橙子是人类健康的重要营养来源,具有巨大的经济价值。在这里,我们呈现了甜橙(Citrus sinensis)基因组草图的综合分析。组装序列覆盖了估计的橙子基因组的 87.3%,相对紧凑,因为 20%由重复元件组成。我们预测了 29445 个蛋白质编码基因,其中一半处于杂合状态。通过对另外两个柑橘物种的更多测序和对七个柑橘基因组的比较分析,我们提供的证据表明,甜橙起源于柚子和宽皮橘的回交杂种。对参与维生素 C 代谢的基因的集中分析表明,编码半乳糖醛酸途径限速酶的 GalUR 在甜橙果实中显著上调,该基因家族的近期扩张可能为其提供了一个基因组基础。这个基因组草图代表了未来理解和改善许多重要柑橘性状的有价值的资源。