Genomic and transcriptomic variation defines the chromosome-scale assembly of Haemonchus contortus, a model gastrointestinal worm
Haemonchus contortus is a globally distributed and economically important gastrointestinal pathogen of small ruminants and has become a key nematode model for studying anthelmintic resistance and other parasite-specific traits among a wider group of parasites including major human pathogens. Here, w...
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Veröffentlicht in: | Communications biology 2020-11, Vol.3 (1), p.656-656, Article 656 |
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Sprache: | eng |
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Zusammenfassung: | Haemonchus contortus
is a globally distributed and economically important gastrointestinal pathogen of small ruminants and has become a key nematode model for studying anthelmintic resistance and other parasite-specific traits among a wider group of parasites including major human pathogens. Here, we report using PacBio long-read and OpGen and 10X Genomics long-molecule methods to generate a highly contiguous 283.4 Mbp chromosome-scale genome assembly including a resolved sex chromosome for the MHco3(ISE).N1 isolate. We show a remarkable pattern of conservation of chromosome content with
Caenorhabditis elegans
, but almost no conservation of gene order. Short and long-read transcriptome sequencing allowed us to define coordinated transcriptional regulation throughout the parasite’s life cycle and refine our understanding of
cis-
and
trans-
splicing. Finally, we provide a comprehensive picture of chromosome-wide genetic diversity both within a single isolate and globally. These data provide a high-quality comparison for understanding the evolution and genomics of
Caenorhabditis
and other nematodes and extend the experimental tractability of this model parasitic nematode in understanding helminth biology, drug discovery and vaccine development, as well as important adaptive traits such as drug resistance.
Stephen Doyle et al. report the chromosome-scale genome assembly and transcriptome sequence data of
Haemonchus contortus
, a key parasitic nematode model. These data show nearly complete conservation of chromosome content with
C. elegans
and brings insight into transcriptional regulation and chromosome-wide genetic diversity in this important pathogen. |
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ISSN: | 2399-3642 2399-3642 |
DOI: | 10.1038/s42003-020-01377-3 |