一种常见致敏螨种 Dermatophagoides farinae 的染色体级基因组

Rongxuan Hu, Haifeng Huang, Ying Zhou, Yanshan Liu, Yaning Ren, Yuanfen Liao, Cunyin Yuan, Xiaohong Gu, Yubao Cui
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引用次数: 0

摘要

背景。基因组数据已被用于从屋尘螨中发现新的过敏原。在此,我们旨在构建一种常见致敏螨类 Dermatophagoides farinae 的染色体级基因组。方法。我们通过整合 PacBio 单分子实时测序技术、Illumina 成对端测序技术和 Hi-C 技术,实现了 D. farinae 基因组的染色体级组装,随后注释了过敏原并将其映射到特定染色体上。结果组装的基因组为 62.43 Mb,杂合率为 0.52%,Merqury 估算的质量值为 36.11。以通用单拷贝直向同源物为基准,组装的基因组具有 92.1%的完整性,支架 N50 值为 7.11 Mb。通过对基因组进行 Hi-C 搭架,构建了 10 个假染色体。该基因组包含 13.01% (7.66 Mb)的重复序列,预测了 10,709 个编码蛋白质的基因,其中 96.57% 的基因有功能注释。此外,我们在特定染色体上鉴定并定位了 36 个过敏原群,包括分别位于 2、1、7、3、4、6 和 4 号染色体上的过敏原 Der f 1、Der f 2、Der f 23、Der f 4、Der f 5、Der f 7 和 Der f 21。结论这些全面的基因组数据为了解螨虫生物学和进化适应性提供了宝贵的信息,有可能推动法氏螨过敏症的研究和治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Chromosomal-Level Genome of Dermatophagoides farinae, a Common Allergenic Mite Species

A Chromosomal-Level Genome of Dermatophagoides farinae, a Common Allergenic Mite Species

Background. Genome data have been used to find novel allergen from house dust mites. Here, we aim to construct a chromosome-level genome assembly of Dermatophagoides farinae, a common allergenic mite species. Methods. We achieved a chromosome-level assembly of D. farinae’s genome by integrating PacBio single-molecule real-time sequencing, Illumina paired-end sequencing, and Hi-C technology, followed by annotating allergens and mapping them to specific chromosomes. Results. A 62.43 Mb genome was assembled with a 0.52% heterozygosity rate and a 36.11 Merqury-estimated quality value. The assembled genome represents 92.1% completeness benchmarking universal single-copy orthologs with a scaffold N50 value of 7.11 Mb. Hi-C scaffolding of the genome resulted in construction of 10 pseudochromosomes. The genome comprises 13.01% (7.66 Mb) repetitive sequences and predicts 10,709 protein-coding genes, 96.57% of which are functionally annotated. Moreover, we identified and located 36 allergen groups on specific chromosomes, including allergens Der f 1, Der f 2, Der f 23, Der f 4, Der f 5, Der f 7, and Der f 21 located on chromosomes 2, 1, 7, 3, 4, 6, and 4, respectively. Conclusion. This comprehensive genomic data provides valuable insights into mite biology and evolutionary adaptations, potentially advancing D. farinae allergy research and treatment strategies.

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Comparative and Functional Genomics
Comparative and Functional Genomics 生物-生化与分子生物学
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