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无间隙基因组组装的轮枝镰孢菌,一种威胁植物和人类健康的丝状真菌。

Gapless genome assembly of Fusarium verticillioides, a filamentous fungus threatening plant and human health.

机构信息

Peking University Institute of Advanced Agricultural Sciences, Shandong Laboratory of Advanced Agricultural Sciences in Weifang, Weifang, Shandong, 261325, China.

China Agricultural University, College of Information and Electrical Engineering, Beijing, 100091, China.

出版信息

Sci Data. 2023 Apr 20;10(1):229. doi: 10.1038/s41597-023-02145-8.

Abstract

Fusarium verticillioides is a filamentous fungus that causes plant diseases and harms human health through cancer-inducing mycotoxin and life-threatening Fusariosis. Given its threat to agriculture and public health, genome assembly of this fungus is critical to our understanding of its pathobiology and developing antifungal drugs. Here, we report a gap-free genome assembly of F. verticillioides using PacBio HiFi data and high-throughput chromosome capture (Hi-C) sequencing data. The assembled 42.0 Mb sequence contains eleven gapless chromosomes capturing all centromeres and 19 of all 22 telomeres. This assembly represents a significant improvement over previous version on contiguity (contig N50: 4.3 Mb), completeness (BUSCO score: 99.0%) and correctness (QV: 88.8). A total of 15,230 protein-coding genes were predicted, 6.2% of which are newly annotated genes. In addition, we identified three-dimension chromatin structures such as TADs-like structures and chromatin loops based on Hi-C data of ultra-high coverage. This gap-free genome of F. verticillioides is an excellent resource for further panoramic understanding mechanisms of fungal genome evolution, mycotoxin production and pathogenesis on plant and human host.

摘要

串珠镰刀菌是一种丝状真菌,通过致癌真菌毒素和危及生命的镰孢菌病引起植物疾病和危害人类健康。鉴于其对农业和公共卫生的威胁,该真菌的基因组组装对于我们了解其病理生物学和开发抗真菌药物至关重要。在这里,我们使用 PacBio HiFi 数据和高通量染色体捕获 (Hi-C) 测序数据报告了串珠镰刀菌无间隙基因组组装。组装的 42.0Mb 序列包含十一个无间隙染色体,捕获了所有着丝粒和 22 个端粒中的 19 个。与以前的版本相比,该组装在连续性(contig N50:4.3Mb)、完整性(BUSCO 评分:99.0%)和正确性(QV:88.8%)方面都有显著提高。总共预测了 15230 个蛋白质编码基因,其中 6.2%是新注释的基因。此外,我们还根据超高覆盖率的 Hi-C 数据鉴定了三维染色质结构,如 TAD 样结构和染色质环。这种无间隙的串珠镰刀菌基因组是进一步全面了解真菌基因组进化、真菌毒素产生和植物及人类宿主发病机制的极好资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/633e/10119152/d74f840ef3f1/41597_2023_2145_Fig1_HTML.jpg

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