数字农科院2.0

A chromosome-level reference genome of a Convolvulaceae species Ipomoea cairica

文献类型: 外文期刊

作者: Jiang, Fan;Wang, Sen;Wang, Hengchao;Wang, Anqi;Xu, Dong;Liu, Hangwei;Yang, Boyuan;Yuan, Lihua;Lei, Lihong;Chen, Rong;Li, Weihua;Fan, Wei

作者机构:

关键词: Ipomoea cairica;Convolvulaceae;chromosome-level assembly;PacBio sequencing;Hi-C sequencing

期刊名称: G3-GENES GENOMES GENETICS

ISSN: 2160-1836

年卷期: 2022 年

页码:

收录情况: SCIE(2022版)

摘要: Ipomoea cairica is a perennial creeper that has been widely introduced as a garden ornamental across tropical, subtropical, and temperate regions. Because it grows extremely fast and spreads easily, it has been listed as an invasive species in many countries. Here, we constructed the chromosome-level reference genome of Ipomoea cairica by Pacific Biosciences HiFi and Hi-C sequencing, with the assembly size of 733.0 Mb, the contig N50 of 43.8 Mb, the scaffold N50 of 45.7 Mb, and the Benchmarking Universal Single-Copy Orthologs complete rate of 98.0%. Hi-C scaffolding assigned 97.9% of the contigs to 15 pseudo-chromosomes. Telomeric repeat analysis reveals that 7 of the 15 pseudo-chromosomes are gapless and telomere to telomere. The transposable element content of Ipomoea cairica is 73.4%, obviously higher than that of other Ipomoea species. A total of 38,115 protein-coding genes were predicted, with the Benchmarking Universal Single-Copy Orthologs complete rate of 98.5%, comparable to that of the genome assembly, and 92.6% of genes were functional annotated. In addition, we identified 3,039 tRNA genes and 2,403 rRNA genes in the assembled genome. Phylogenetic analysis showed that Ipomoea cairica formed a clade with Ipomoea aquatica, and they diverged from each other 8.1 million years ago. Through comparative genome analysis, we reconfirmed that a whole genome triplication event occurred specific to Convolvulaceae family and in the ancestor of the genus Ipomoea and Cuscuta. This high-quality reference genome of Ipomoea cairica will greatly facilitate the studies on the molecular mechanisms of its rapid growth and invasiveness.

分类号:

  • 相关文献

[1]Improved chromosome-level genome and annotation data for a leafy vegetable water spinach (Ipomoea aquatica). Fan Jiang,Sen Wang,Hengchao Wang,Dong Xu,Anqi Wang,Lihua Yuan,Wei Fan. 2023

[2]Genomic Analysis Based on Chromosome-Level Genome Assembly Reveals an Expansion of Terpene Biosynthesis of Azadirachta indica. Yuhui Du,Wei Song,Zhiqiu Yin,Shengbo Wu,Jiaheng Liu,Ning Wang,Hua Jin,Jianjun Qiao,Yi Xin Huo. 2022

[3]The chromosome-level genome of the woolly apple aphid Eriosoma lanigerum provides insight into waxy synthesis and secretion. Zhou, Hongxu,Zhang, Bin,Luo, Chaorui,Meng, Canyu,Teng, Ziwen,Guo, Yi,Li, Changyou,Xing, Longsheng,Li, Zaiyuan,Fan, Yinjun,Liu, Conghui,Qian, Wanqiang,Wan, Fanghao. 2025

[4]An Improved Genome Sequence Resource of Bipolaris maydis, Causal Agent of Southern Corn Leaf Blight. Wang, Yafei,Kang, Houxiang,Yao, Jinai,Li, Zhiqiang,Xia, Xinyao,Zhou, Shaoqun,Liu, Wende. 2022

[5]Metabolomic and transcriptomic analyses of the flavonoid biosynthetic pathway in blueberry (Vaccinium spp.). Li, Yinping,Li, Haifei,Wang, Shiyao,Li, Jing,Bacha, Syed Asim Shah,Xu, Guofeng,Li, Jing. 2023

[6]Genome sequence resource for nigrospora oryzae, an important pathogenic fungus threatening crop production. Yafei Wang,Jinai Yao,Zhiqiang Li,Jianfei Huo,Shaoqun Zhou,Wende Liu,Hanxiang Wu. 2021

[7]Genome sequence resource for nigrospora oryzae, an important pathogenic fungus threatening crop production. Yafei Wang,Jinai Yao,Zhiqiang Li,Jianfei Huo,Shaoqun Zhou,Wende Liu,Hanxiang Wu. 2021

[8]Review on the evolution in DNA-based techniques for molecular characterization and authentication of GMOs. Zehui Liang,Lin Ding,Min Tang,Xiaofu Wang,Xiaoyun Chen,Junfeng Xu,Yuwen Lu,Cheng Peng. 2024

[9]Genome resource of Xanthomonas oryzae pv. oryzae Chinese strain NE-8 causing bacterial blight of rice. Muhammad Sohaib Shafique,Wei Guo,Xifeng Chen,Kaijun Zhao,Yapei Liu,Chunlian Wang,Zhiyuan Ji. 2023

[10]Beyond traditional GMOs: a comprehensive approach to identify unknown cisgenic rice events. Lu, Shengtao,Xie, Jiajian,Wang, Fan,Yuan, Zheng,Li, Jinbing,Yang, Litao. 2026

作者其他论文 更多>>