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肠贾第虫亚组合 AI 海狸(Be-2)和人类(WB-C6)株的比较基因组学显示出显著的同型性、序列相似性和 VSP 基因的保守性。

Comparative genomics of Giardia duodenalis sub-assemblage AI beaver (Be-2) and human (WB-C6) strains show remarkable homozygosity, sequence similarity, and conservation of VSP genes.

机构信息

Houston Methodist Research Institute, Houston, TX, 77030, USA.

Department of Medicine, Weill Cornell Medicine College, New York, NY, 10065, USA.

出版信息

Sci Rep. 2024 Jun 12;14(1):13582. doi: 10.1038/s41598-024-63783-5.

Abstract

Giardia duodenalis, a major cause of waterborne infection, infects a wide range of mammalian hosts and is subdivided into eight genetically well-defined assemblages named A through H. However, fragmented genomes and a lack of comparative analysis within and between the assemblages render unclear the molecular mechanisms controlling host specificity and differential disease outcomes. To address this, we generated a near-complete de novo genome of AI assemblage using the Oxford Nanopore platform by sequencing the Be-2 genome. We generated 148,144 long-reads with quality scores of > 7. The final genome assembly consists of only nine contigs with an N50 of 3,045,186 bp. This assembly agrees closely with the assembly of another strain in the AI assemblage (WB-C6). However, a critical difference is that a region previously placed in the five-prime region of Chr5 belongs to Chr4 of Be-2. We find a high degree of conservation in the ploidy, homozygosity, and the presence of cysteine-rich variant-specific surface proteins (VSPs) within the AI assemblage. Our assembly provides a nearly complete genome of a member of the AI assemblage of G. duodenalis, aiding population genomic studies capable of elucidating Giardia transmission, host range, and pathogenicity.

摘要

十二指肠贾第鞭毛虫是一种主要的水源性感染病原体,感染范围广泛,涉及多种哺乳动物宿主,并被细分为 8 个遗传上明确界定的组合,分别命名为 A 至 H。然而,由于基因组碎片化以及组合内和组合间缺乏比较分析,控制宿主特异性和不同疾病结果的分子机制仍不清楚。为了解决这个问题,我们使用 Oxford Nanopore 平台通过对 Be-2 基因组进行测序,生成了 AI 组合的近乎完整的从头基因组。我们生成了 148144 条质量评分>7 的长读。最终的基因组组装仅由 9 个 contigs 组成,N50 为 3045186 bp。这个组装与 AI 组合中的另一个菌株(WB-C6)的组装非常吻合。然而,一个关键的区别是,以前位于 Chr5 5' 区域的一个区域属于 Be-2 的 Chr4。我们发现 AI 组合内的倍性、纯合性以及富含半胱氨酸的变异特异性表面蛋白(VSP)的存在高度保守。我们的组装提供了 AI 组合中一员的近乎完整基因组,有助于进行种群基因组学研究,阐明贾第鞭毛虫的传播、宿主范围和致病性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a7c/11169602/f38bf565deb6/41598_2024_63783_Fig2_HTML.jpg

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