Roscoea Debilis 的基因组草案,这是高山生姜 Roscoea(姜科)的第一个基因组。

IF 1.9 Q3 GENETICS & HEREDITY BMC genomic data Pub Date : 2024-08-27 DOI:10.1186/s12863-024-01261-7
Xiao-Chang Peng, Ao-Dan Huang, Wen-Jing Wang, Gui-Sheng Xiang, Li Li, Jian-Li Zhao
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引用次数: 0

摘要

目的:蔷薇属是泛热带蔷薇科中喜马拉雅高山属植物。作为传统的藏药用植物,该属的许多物种正受到采挖、砍伐、土地清理、放牧和气候变化的威胁。Roscoea debilis是横断山脉的特有种,分布范围较窄。本研究对蔷薇属植物的基因组进行了组装和注释,为比较和功能基因组研究提供了重要资源。第一个完整的蔷薇属参考基因组有望为保护和进化生物学研究提供启示:通过结合 Illumina 短读数(107.28 Gb)和 PacBio Hi-Fi 读数(64.08 Gb),获得了 1601.04 Mb 的 R. debilis 染色体级基因组,实现了约 67 × 和 40 × 的高质量测序覆盖。此外,271.65 Gb 的 Hi-C 数据(169 ×)也为组装提供了帮助,使等位基因 N50 达到 136.17 Mb,支架 N50 达到 90.48 Mb。通用单拷贝同源物基准(BUSCO)评估结果显示,BUSCO 数据集(embryophyta_odb10)中的大部分核心胚胎植物基因(98.7%)都被成功鉴定。此外,96.44%的基因组序列被准确地映射到 12 个假染色体上。
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Draft genome of Roscoea Debilis, the first genome in the alpine ginger Roscoea (Zingiberaceae).

Objectives: Roscoea is a Sino-Himalayan alpine genus in pantropical family Zingiberaeae. As traditional Tibetan medicinal plants, many species of this genus are threatened by digging, logging, land clearance, grazing and climate change. Roscoea debilis is an endemic species in the Hengduan Mountains with a narrow distribution range. In this study, the assembled and annotated genome of Roscoea was presented in order to furnish significant resources for comparative and functional genomic investigations. The first complete reference genome of Roscoea is expected to shed light on research on conservation and evolutionary biology.

Data description: A chromosome-level genome of 1601.04 Mb was obtained for R. debilis by combining Illumina short reads (107.28 Gb) and PacBio Hi-Fi reads (64.08 Gb), achieving high-quality sequencing coverage of roughly 67 × and 40 ×. The assembly was additionally assisted by 271.65 Gb Hi-C data (169 ×), which resulted in a contig N50 of 136.17 Mb and a scaffold N50 of 90.48 Mb. Benchmarking Universal Single-Copy Orthologs (BUSCO) assessment results revealed that most of the core embryophyta genes (98.7%) in the BUSCO dataset (embryophyta_odb10) were successfully identified. Additionally, 96.44% of the genomic sequences were accurately mapped onto twelve pseudochromosomes.

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