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连续染色体基因组为捻转血矛线虫 Haecon-5 株系揭示了显著的遗传变异性,并能够发现必需基因候选者。

Chromosome-contiguous genome for the Haecon-5 strain of Haemonchus contortus reveals marked genetic variability and enables the discovery of essential gene candidates.

机构信息

Department of Veterinary Bioscience, Melbourne Veterinary School, Faculty of Science, The University of Melbourne, Parkville, Victoria, Australia.

Department of Veterinary Bioscience, Melbourne Veterinary School, Faculty of Science, The University of Melbourne, Parkville, Victoria, Australia.

出版信息

Int J Parasitol. 2024 Nov;54(13):705-715. doi: 10.1016/j.ijpara.2024.08.003. Epub 2024 Aug 20.

DOI:10.1016/j.ijpara.2024.08.003
PMID:39168434
Abstract

Millions of livestock animals worldwide are infected with the haematophagous barber's pole worm, Haemonchus contortus, the aetiological agent of haemonchosis. Despite the major significance of this parasite worldwide and its widespread resistance to current treatments, the lack of a high-quality genome for the well-defined strain of this parasite from Australia, called Haecon-5, has constrained research in a number of areas including host-parasite interactions, drug discovery and population genetics. To enable research in these areas, we report here a chromosome-contiguous genome (∼280 Mb) for Haecon-5 with high-quality models for 19,234 protein-coding genes. Comparative genomic analyses show significant genomic similarity (synteny) with a UK strain of H. contortus, called MHco3(ISE).N1 (abbreviated as "ISE"), but we also discover marked differences in genomic structure/gene arrangements, distribution of nucleotide variability (single nucleotide polymorphisms (SNPs) and indels) and orthology between Haecon-5 and ISE. We used the genome and extensive transcriptomic resources for Haecon-5 to predict a subset of essential single-copy genes employing a "cross-species" machine learning (ML) approach using a range of features from nucleotide/protein sequences, protein orthology, subcellular localisation, single-cell RNA-seq and/or histone methylation data available for the model organisms Caenorhabditis elegans and Drosophila melanogaster. From a set of 1,464 conserved single copy genes, transcribed in key life-cycle stages of H. contortus, we identified 232 genes whose homologs have critical functions in C. elegans and/or D. melanogaster, and prioritised 10 of them for further characterisation; nine of the 10 genes likely play roles in neurophysiological processes, germline, hypodermis and/or respiration, and one is an unknown (orphan) gene for which no detailed functional information exists. Future studies of these genes/gene products are warranted to elucidate their roles in parasite biology, host-parasite interplay and/or disease. Clearly, the present Haecon-5 reference genome and associated resources now underpin a broad range of fundamental investigations of H. contortus and could assist in accelerating the discovery of novel intervention targets and drug candidates to combat haemonchosis.

摘要

全球数以百万计的牲畜感染了寄生性的旋毛线虫,旋毛线虫是血矛线虫病的病原体。尽管这种寄生虫在全球具有重要意义,并且对目前的治疗方法广泛耐药,但由于缺乏来自澳大利亚的明确菌株(称为 Haecon-5)的高质量基因组,限制了包括宿主-寄生虫相互作用、药物发现和群体遗传学在内的许多领域的研究。为了能够在这些领域进行研究,我们在此报告了 Haecon-5 的染色体连续基因组(约 280 Mb),并为 19234 个蛋白质编码基因提供了高质量的模型。比较基因组分析表明,与英国的旋毛线虫 H. contortus 菌株 MHco3(ISE).N1(简称“ISE”)具有显著的基因组相似性(同线性),但我们也发现了 Haecon-5 和 ISE 之间在基因组结构/基因排列、核苷酸变异(单核苷酸多态性(SNP)和插入缺失)分布和同源性方面的显著差异。我们使用 Haecon-5 的基因组和广泛的转录组资源,采用跨物种机器学习 (ML) 方法,使用来自模式生物秀丽隐杆线虫和黑腹果蝇的核苷酸/蛋白质序列、蛋白质同源性、亚细胞定位、单细胞 RNA-seq 和/或组蛋白甲基化数据等一系列特征,预测了一组必需的单拷贝基因。从 H. contortus 的关键生命周期阶段转录的一组 1464 个保守单拷贝基因中,我们鉴定出 232 个基因的同源物在秀丽隐杆线虫和/或黑腹果蝇中具有关键功能,并进一步对其中的 10 个进行了优先排序;这 10 个基因中的 9 个可能在神经生理过程、生殖细胞、真皮和/或呼吸中发挥作用,还有一个是未知(孤儿)基因,没有详细的功能信息。对这些基因/基因产物的进一步研究有望阐明它们在寄生虫生物学、宿主-寄生虫相互作用和/或疾病中的作用。显然,目前的 Haecon-5 参考基因组和相关资源现在为旋毛线虫的广泛基础研究提供了支持,并有助于加速发现新的干预靶点和候选药物来对抗血矛线虫病。

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