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The genome and developmental transcriptome of the strongylid nematode Haemonchus contortus

机译:线虫线虫弯形梭菌的基因组和发育转录组。

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Background The barber's pole worm, Haemonchus contortus, is one of the most economically important parasites of small ruminants worldwide. Although this parasite can be controlled using anthelmintic drugs, resistance against most drugs in common use has become a widespread problem. We provide a draft of the genome and the transcriptomes of all key developmental stages of H. contortus to support biological and biotechnological research areas of this and related parasites. Results The draft genome of H. contortus is 320 Mb in size and encodes 23,610 protein-coding genes. On a fundamental level, we elucidate transcriptional alterations taking place throughout the life cycle, characterize the parasite's gene silencing machinery, and explore molecules involved in development, reproduction, host-parasite interactions, immunity, and disease. The secretome of H. contortus is particularly rich in peptidases linked to blood-feeding activity and interactions with host tissues, and a diverse array of moleculesis involved in complex immune responses. On an applied level, we predict drug targets and identify vaccine molecules. Conclusions The draft genome and developmental transcriptome of H. contortus provide a major resource to the scientific community for awide range of genomic, genetic, proteomic, metabolomic, evolutionary, biological, ecological, and epidemiological investigations, and a solid foundation for biotechnological outcomes, including new anthelmintics, vaccines and diagnostic tests. This first draft genome of any strongylid nematode paves the way for a rapid acceleration in our understanding of a wide range of socioeconomically important parasites of one of the largest nematode orders.
机译:背景技术理发师的极蠕虫Haemonchus contortus是全世界小型反刍动物中最重要的经济寄生虫之一。尽管可以使用驱虫药来控制这种寄生虫,但对大多数常用药物的耐药性已成为一个普遍的问题。我们提供了捻转血矛线虫所有关键发育阶段的基因组和转录组的草图,以支持该寄生虫和相关寄生虫的生物学和生物技术研究领域。结果捻转血矛线虫的基因组草图大小为320 Mb,编码23,610个蛋白质编码基因。从根本上讲,我们阐明了整个生命周期中发生的转录改变,描述了寄生虫的基因沉默机制,并探讨了参与发育,繁殖,宿主-寄生虫相互作用,免疫力和疾病的分子。捻转血矛线虫的分泌组特别富含肽酶,这些肽酶与采血活动和与宿主组织的相互作用有关,并且复杂的免疫反应涉及多种分子。在应用层面上,我们预测药物靶标并鉴定疫苗分子。结论捻转血矛线虫的基因组和发育转录组草案为科学界提供了广泛的基因组,遗传,蛋白质组学,代谢组学,进化论,生物学,生态学和流行病学研究的重要资源,并为生物技术成果(包括新的驱虫药,疫苗和诊断测试。任何类强线虫的基因组的初稿都为我们快速理解最大线虫目之一的广泛的社会经济重要寄生虫铺平了道路。

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