Elucidating the molecular and developmental biology of parasitic nematodes: Moving to a multiomics paradigm.

3区 医学 Q1 Immunology and Microbiology Advances in Parasitology Pub Date : 2020-01-01 Epub Date: 2020-01-31 DOI:10.1016/bs.apar.2019.12.005
Guangxu Ma, Tao Wang, Pasi K Korhonen, Andreas Hofmann, Paul W Sternberg, Neil D Young, Robin B Gasser
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引用次数: 19

Abstract

In the past two decades, significant progress has been made in the sequencing, assembly, annotation and analyses of genomes and transcriptomes of parasitic worms of socioeconomic importance. This progress has somewhat improved our knowledge and understanding of these pathogens at the molecular level. However, compared with the free-living nematode Caenorhabditis elegans, the areas of functional genomics, transcriptomics, proteomics and metabolomics of parasitic nematodes are still in their infancy, and there are major gaps in our knowledge and understanding of the molecular biology of parasitic nematodes. The information on signalling molecules, molecular pathways and microRNAs (miRNAs) that are known to be involved in developmental processes in C. elegans and the availability of some molecular resources (draft genomes, transcriptomes and some proteomes) for selected parasitic nematodes provide a basis to start exploring the developmental biology of parasitic nematodes. Indeed, some studies have identified molecules and pathways that might associate with developmental processes in related, parasitic nematodes, such as Haemonchus contortus (barber's pole worm). However, detailed information is often scant and 'omics resources are limited, preventing a proper integration of 'omic data sets and comprehensive analyses. Moreover, little is known about the functional roles of pheromones, hormones, signalling pathways and post-transcriptional/post-translational regulations in the development of key parasitic nematodes throughout their entire life cycles. Although C. elegans is an excellent model to assist molecular studies of parasitic nematodes, its use is limited when it comes to explorations of processes that are specific to parasitism within host animals. A deep understanding of parasitic nematodes, such as H. contortus, requires substantially enhanced resources and the use of integrative 'omics approaches for analyses. The improved genome and well-established in vitro larval culture system for H. contortus provide unprecedented opportunities for comprehensive studies of the transcriptomes (mRNA and miRNA), proteomes (somatic, excretory/secretory and phosphorylated proteins) and lipidomes (e.g., polar and neutral lipids) of this nematode. Such resources should enable in-depth explorations of its developmental biology at a level, not previously possible. The main aims of this review are (i) to provide a background on the development of nematodes, with a particular emphasis on the molecular aspects involved in the dauer formation and exit in C. elegans; (ii) to critically appraise the current state of knowledge of the developmental biology of parasitic nematodes and identify key knowledge gaps; (iii) to cover salient aspects of H. contortus, with a focus on the recent advances in genomics, transcriptomics, proteomics and lipidomics as well as in vitro culturing systems; (iv) to review recent advances in our knowledge and understanding of the molecular and developmental biology of H. contortus using an integrative multiomics approach, and discuss the implications of this approach for detailed explorations of signalling molecules, molecular processes and pathways likely associated with nematode development, adaptation and parasitism, and for the identification of novel intervention targets against these pathogens. Clearly, the multiomics approach established recently is readily applicable to exploring a wide range of interesting and socioeconomically significant parasitic worms (including also trematodes and cestodes) at the molecular level, and to elucidate host-parasite interactions and disease processes.

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阐明寄生线虫的分子和发育生物学:转向多组学范式。
在过去的二十年中,对具有社会经济意义的寄生虫基因组和转录组的测序、组装、注释和分析取得了重大进展。这一进展在一定程度上提高了我们对这些病原体在分子水平上的认识和理解。然而,与自由生活的秀丽隐杆线虫相比,寄生线虫的功能基因组学、转录组学、蛋白质组学和代谢组学等领域还处于起步阶段,我们对寄生线虫分子生物学的认识和理解还存在较大差距。线虫发育过程中已知的信号分子、分子通路和microrna (mirna)的信息以及部分寄生性线虫分子资源(基因组草图、转录组和部分蛋白质组)的可用性为寄生性线虫的发育生物学研究提供了基础。事实上,一些研究已经确定了一些分子和途径,这些分子和途径可能与相关的寄生线虫的发育过程有关,比如弯血线虫(理发师杆虫)。然而,详细的信息往往是缺乏的,组学资源是有限的,这阻碍了对组学数据集和全面分析的适当整合。此外,人们对信息素、激素、信号通路和转录后/翻译后调控在寄生性线虫整个生命周期中的功能作用知之甚少。虽然秀丽隐杆线虫是一个很好的模型,以协助寄生线虫的分子研究,它的使用是有限的,当涉及到寄生在宿主动物的特定过程的探索。要深入了解寄生线虫,如H. contortus,需要大量增加资源和使用综合组学方法进行分析。线虫基因组的改进和体外幼虫培养系统的完善为线虫转录组(mRNA和miRNA)、蛋白质组(体细胞、排泄/分泌和磷酸化蛋白)和脂质组(如极性脂质和中性脂质)的综合研究提供了前所未有的机会。这些资源应该能够在以前不可能的水平上对其发育生物学进行深入探索。这篇综述的主要目的是:(1)提供线虫发展的背景,特别强调在秀丽隐杆线虫的水形成和退出的分子方面;(ii)批判性地评估寄生线虫发育生物学知识的现状,并确定关键的知识空白;(iii)介绍弯齿莲的主要方面,重点介绍基因组学、转录组学、蛋白质组学和脂质组学以及体外培养系统的最新进展;(iv)回顾了利用综合多组学方法在线虫分子和发育生物学方面的最新进展,并讨论了该方法在详细探索与线虫发育、适应和寄生相关的信号分子、分子过程和途径以及识别针对这些病原体的新干预靶点方面的意义。显然,最近建立的多组学方法很容易适用于在分子水平上探索广泛的有趣的和具有社会经济意义的寄生虫(也包括吸虫和绦虫),并阐明宿主-寄生虫相互作用和疾病过程。
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来源期刊
Advances in Parasitology
Advances in Parasitology 医学-寄生虫学
CiteScore
9.00
自引率
0.00%
发文量
28
审稿时长
>12 weeks
期刊介绍: Advances in Parasitology is recognised as a leading review serial which is consistently well placed in terms of impact factor and citations. Major reviews on all aspects of medical, veterinary and wild-life parasitology are considered. The journal provides an outlet for authoritative reviews from experts in the field. While emphasis is given to modern molecular approaches contributions across all disciplines are encouraged including traditional areas such as ecology and taxonomy. Eclectic volumes are supplemented by thematic volumes dedicated to a particular topic of recognised interest and importance.
期刊最新文献
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