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High-quality reference genome for Clonorchis sinensis. | LitMetric

High-quality reference genome for Clonorchis sinensis.

Genomics

Department of Veterinary Biosciences, Melbourne Veterinary School, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Parkville, Victoria 3010, Australia.

Published: May 2021

AI Article Synopsis

  • The Chinese liver fluke, Clonorchis sinensis, affects around 35 million people mainly in East Asia and leads to clonorchiasis, which can result in serious liver conditions including cholangiocarcinoma.
  • Current treatment often relies on the drug praziquantel, but there's concern about the development of drug resistance, prompting the need for new therapeutic options.
  • Researchers are focusing on improving the genome sequencing of C. sinensis to create a high-quality reference genome, which could help identify new drug targets and advance studies on the fluke and its related diseases.

Article Abstract

The Chinese liver fluke, Clonorchis sinensis, causes the disease clonorchiasis, affecting ~35 million people in regions of China, Vietnam, Korea and the Russian Far East. Chronic clonorchiasis causes cholangitis and can induce a malignant cancer, called cholangiocarcinoma, in the biliary system. Control in endemic regions is challenging, and often relies largely on chemotherapy with one anthelmintic, called praziquantel. Routine treatment carries a significant risk of inducing resistance to this anthelmintic in the fluke, such that the discovery of new interventions is considered important. It is hoped that the use of molecular technologies will assist this endeavour by enabling the identification of drug or vaccine targets involved in crucial biological processes and/or pathways in the parasite. Although draft genomes of C. sinensis have been published, their assemblies are fragmented. In the present study, we tackle this genome fragmentation issue by utilising, in an integrated way, advanced (second- and third-generation) DNA sequencing and informatic approaches to build a high-quality reference genome for C. sinensis, with chromosome-level contiguity and curated gene models. This substantially-enhanced genome provides a resource that could accelerate fundamental and applied molecular investigations of C. sinensis, clonorchiasis and/or cholangiocarcinoma, and assist in the discovery of new interventions against what is a highly significant, but neglected disease-complex.

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Source
http://dx.doi.org/10.1016/j.ygeno.2021.03.001DOI Listing

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