Li Fangping, Xu Shiqiang, Xiao Zitong, Wang Jingming, Mei Yu, Hu Haifei, Li Jingyu, Liu Jieying, Hou Zhuangwei, Zhao Junliang, Yang Shaohai, Wang Jihua
Guangdong Provincial Key Laboratory of Crops Genetics and Improvement, Crop Research Institute, Guangdong Academy of Agriculture Sciences, Guangzhou 510640, China.
Guangdong Provincial Key Laboratory of Plant Molecular Breeding, State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, South China Agricultural University, Guangzhou 510642, China.
Hortic Res. 2023 Jan 19;10(3):uhad005. doi: 10.1093/hr/uhad005. eCollection 2023 Mar.
is an important fleshy-fruited tree and a well-known medicinal plant of the Myrtaceae family that is widely cultivated in tropical and subtropical areas of the world. However, studies on the evolution and genomic breeding of were hindered by the lack of a reference genome. Here, we presented a chromosome-level gap-free T2T genome assembly of using PacBio and ONT long read sequencing. We assembled the genome with size of 470.35 Mb and contig N50 of ~43.80 Mb with 11 pseudochromosomes. A total of 33 382 genes and 239.31 Mb of repetitive sequences were annotated in this genome. Phylogenetic analysis elucidated the independent evolution of starting from 14.37MYA and shared a recent WGD event with other Myrtaceae species. We identified four major compounds of anthocyanins and their synthetic pathways in . Comparative genomic and gene expression analysis suggested the coloring and high anthocyanin accumulation in tends to be determined by the activation of anthocyanin synthesis pathway. The positive selection and up-regulation of MYB transcription factors were the implicit factors in this process. The copy number increase of downstream anthocyanin transport-related OMT and GST gene were also detected in Expression analysis and pathway identification enriched the importance of starch degradation, response to stimuli, effect of hormones, and cell wall metabolism during the fleshy fruit development in Myrtaceae. Our genome assembly provided a foundation for investigating the origins and differentiation of Myrtaceae species and accelerated the genetic improvement of
是一种重要的肉质果树,也是桃金娘科著名的药用植物,在世界热带和亚热带地区广泛种植。然而,由于缺乏参考基因组,对其进化和基因组育种的研究受到了阻碍。在此,我们利用PacBio和ONT长读测序技术,展示了该物种染色体水平的无间隙T2T基因组组装。我们组装的基因组大小为470.35 Mb,重叠群N50约为43.80 Mb,包含11条假染色体。该基因组共注释了33382个基因和239.31 Mb的重复序列。系统发育分析阐明了该物种从1437万年前开始的独立进化,并与其他桃金娘科物种共享了最近的一次全基因组加倍事件。我们在该物种中鉴定出四种主要的花青素化合物及其合成途径。比较基因组和基因表达分析表明,该物种的着色和高花青素积累倾向于由花青素合成途径的激活来决定。MYB转录因子的正选择和上调是这一过程中的内在因素。在该物种中还检测到下游花青素运输相关的OMT和GST基因的拷贝数增加。表达分析和途径鉴定丰富了淀粉降解、对刺激的反应、激素的作用以及桃金娘科肉质果实发育过程中细胞壁代谢的重要性。我们的基因组组装为研究桃金娘科物种的起源和分化提供了基础,并加速了该物种的遗传改良