Chromosome-level genome assembly of an endangered plant Prunus mongolica using PacBio and Hi-C technologies.

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY DNA Research Pub Date : 2023-08-01 DOI:10.1093/dnares/dsad012
Qiang Zhu, Yali Wang, Ning Yao, Xilu Ni, Cuiping Wang, Meng Wang, Lei Zhang, Wenyu Liang
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Abstract

Prunus mongolica is an ecologically and economically important xerophytic tree native to Northwest China. Here, we report a high-quality, chromosome-level P. mongolica genome assembly integrating PacBio high-fidelity sequencing and Hi-C technology. The assembled genome was 233.17 Mb in size, with 98.89% assigned to eight pseudochromosomes. The genome had contig and scaffold N50s of 24.33 Mb and 26.54 Mb, respectively, a BUSCO completeness score of 98.76%, and CEGMA indicated that 98.47% of the assembled genome was reliably annotated. The genome contained a total of 88.54 Mb (37.97%) of repetitive sequences and 23,798 protein-coding genes. We found that P. mongolica experienced two whole-genome duplications, with the most recent event occurring ~3.57 million years ago. Phylogenetic and chromosome syntenic analyses revealed that P. mongolica was closely related to P. persica and P. dulcis. Furthermore, we identified a number of candidate genes involved in drought tolerance and fatty acid biosynthesis. These candidate genes are likely to prove useful in studies of drought tolerance and fatty acid biosynthesis in P. mongolica, and will provide important genetic resources for molecular breeding and improvement experiments in Prunus species. This high-quality reference genome will also accelerate the study of the adaptation of xerophytic plants to drought.

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利用PacBio和Hi-C技术对濒危植物蒙古李染色体水平基因组进行组装。
蒙古李是原产于中国西北的一种重要的生态和经济旱生乔木。在这里,我们报道了一个高质量的,染色体水平的蒙古矮种疟原虫基因组组装整合了PacBio高保真测序和Hi-C技术。组装的基因组大小为233.17 Mb,其中98.89%分配给8条假染色体。基因组的contig和scaffold N50s分别为24.33 Mb和26.54 Mb, BUSCO完整性评分为98.76%,CEGMA显示98.47%的组装基因组被可靠注释。该基因组共包含88.54 Mb(37.97%)的重复序列和23798个蛋白质编码基因。我们发现蒙古疟原虫经历了两次全基因组重复,最近一次发生在357万年前。系统发育分析和染色体合成分析表明蒙古松与桃木和桃木亲缘关系较近。此外,我们还确定了一些与耐旱性和脂肪酸生物合成有关的候选基因。这些候选基因有可能在蒙古李的耐旱性和脂肪酸生物合成研究中发挥作用,并将为李的分子育种和改良实验提供重要的遗传资源。这一高质量的参考基因组也将加速旱生植物对干旱适应的研究。
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来源期刊
DNA Research
DNA Research 生物-遗传学
CiteScore
6.00
自引率
4.90%
发文量
39
审稿时长
4.5 months
期刊介绍: DNA Research is an internationally peer-reviewed journal which aims at publishing papers of highest quality in broad aspects of DNA and genome-related research. Emphasis will be made on the following subjects: 1) Sequencing and characterization of genomes/important genomic regions, 2) Comprehensive analysis of the functions of genes, gene families and genomes, 3) Techniques and equipments useful for structural and functional analysis of genes, gene families and genomes, 4) Computer algorithms and/or their applications relevant to structural and functional analysis of genes and genomes. The journal also welcomes novel findings in other scientific disciplines related to genomes.
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