濒危植物蒙古四叶草染色体水平的基因组组装。

IF 3.9 2区 生物学 Q1 GENETICS & HEREDITY DNA Research Pub Date : 2023-04-01 DOI:10.1093/dnares/dsad004
Bingru Liu, Xiaoyu Zhao, Ziyin Wang, Huili Liu, Xueshuang Huang, Peng Yang
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引用次数: 0

摘要

蒙古四合木是一种濒危的旱生灌木,具有较高的耐旱性和耐热性,在荒漠植被恢复中具有很高的生态价值。本研究利用PacBio HiFi数据和Hi-C测序技术,构建了蒙古赤松高质量的染色体水平参考基因组,基因组大小约为1.12 Gb (contin50为25.5 Mb),包含61888个蛋白编码基因;重复序列占基因组的44.8%。蒙古柽柳的这个基因组序列是首次公布的钩叶目植物的基因组序列。基因组分析表明,蒙古柽柳最近经历了一次全基因组重复事件,随后又发生了一次长末端重复插入,这可能是其基因组大小扩大和干旱适应的原因。我们还进行了基因同源物的搜索,并确定了萜烯合成酶(TPS)基因家族和参与三酰甘油生物合成的候选基因。蒙古柽柽树基因组序列可为今后的功能基因鉴定、种质资源管理、分子育种工作以及蚕豆和被子植物类群的进化研究提供参考。
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Chromosome-level genome assembly of the endangered plant Tetraena mongolica.

Tetraena mongolica is an endangered xerophytic shrub with high ecological value for the restoration of desert vegetation because of its high tolerance to drought and heat stress. Here, we generated a high-quality chromosome-level reference genome of T. mongolica by combining PacBio HiFi data and Hi-C sequencing technologies, which was approximately 1.12 Gb (contig N50 of 25.5 Mb) in size and contained 61,888 protein-coding genes; repetitive sequences comprised 44.8% of the genome. This genome of T. mongolica is the first published genome sequence of a member of the order Zygophyllales. Genome analysis showed that T. mongolica has undergone a recent whole genome duplication event, and a recent burst of long terminal repeat insertions afterward, which may be responsible for its genome size expansion and drought adaptation. We also conducted searches for gene homologues and identified terpene synthase (TPS) gene families and candidate genes involved in triacylglycerol biosynthesis. The T. mongolica genome sequence could aid future studies aimed at functional gene identification, germplasm resource management, molecular breeding efforts, as well as evolutionary studies of Fabids and angiosperm taxa.

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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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