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寄生线虫及其相关物种的基因组学研究

Genomics of the Parasitic Nematode and Its Relatives.

机构信息

Department of Biochemistry and Cellular and Molecular Biology, University of Tennessee, Knoxville, TN 37996, USA.

UT-Oak Ridge National Laboratory Graduate School of Genome Science and Technology, University of Tennessee, Knoxville, TN 37996, USA.

出版信息

Genes (Basel). 2021 Mar 28;12(4):493. doi: 10.3390/genes12040493.

Abstract

Nematodes of the genus are important parasites of humans and swine, and the phylogenetically related genera (, and infect mammals of veterinary interest. Over the last decade, considerable genomic resources have been established for , including complete germline and somatic genomes, comprehensive mRNA and small RNA transcriptomes, as well as genome-wide histone and chromatin data. These datasets provide a major resource for studies on the basic biology of these parasites and the host-parasite relationship. and its relatives undergo programmed DNA elimination, a highly regulated process where chromosomes are fragmented and portions of the genome are lost in embryonic cells destined to adopt a somatic fate, whereas the genome remains intact in germ cells. Unlike many model organisms, transcription drives early development beginning prior to pronuclear fusion. Studies on demonstrated a complex small RNA network even in the absence of a piRNA pathway. Comparative genomics of these ascarids has provided perspectives on nematode sex chromosome evolution, programmed DNA elimination, and host-parasite coevolution. The genomic resources enable comparison of proteins across diverse species, revealing many new potential drug targets that could be used to control these parasitic nematodes.

摘要

属线虫是人类和猪的重要寄生虫,而与其系统发育相关的属(、和 )则感染具有兽医意义的哺乳动物。在过去的十年中,已经为 建立了相当多的基因组资源,包括完整的生殖系和体细胞基因组、全面的 mRNA 和小 RNA 转录组,以及全基因组组蛋白和染色质数据。这些数据集为研究这些寄生虫的基本生物学和宿主-寄生虫关系提供了主要资源。 和它的亲缘关系经历了程序性 DNA 消除,这是一个高度调控的过程,其中染色体被碎片化,基因组的一部分在注定要采用体细胞命运的胚胎细胞中丢失,而基因组在生殖细胞中保持完整。与许多模式生物不同, 转录在核融合之前就开始驱动早期发育。对 进行的研究表明,即使没有 piRNA 途径,也存在复杂的小 RNA 网络。这些蛔虫的比较基因组学为线虫性染色体进化、程序性 DNA 消除和宿主-寄生虫共同进化提供了视角。基因组资源使我们能够在不同物种之间比较蛋白质,揭示许多新的潜在药物靶点,可用于控制这些寄生线虫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e5d/8065839/962ac05afe5e/genes-12-00493-g001.jpg

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