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Comparative Transcriptome Analyses of Drug‐sensitive and Drug‐resistant Strains of Eimeria tenella by RNA‐sequencing

生物 艾美球虫 转录组 抗药性 药品 基因 微生物学 核糖核酸 病毒学 遗传学 基因表达 药理学
作者
Yuxiang Xie,Bing Huang,Lingyang Xu,Qiping Zhao,Shunhai Zhu,Huanzhi Zhao,Hui Dong,Hongyu Han
出处
期刊:Journal of Eukaryotic Microbiology [Wiley]
卷期号:67 (4): 406-416 被引量:30
标识
DOI:10.1111/jeu.12790
摘要

Abstract Avian coccidiosis is a widespread and economically significant disease in poultry. At present, treatment of coccidiosis mainly relies on drugs. Anticoccidial drugs can be divided into two categories: ionophorous compounds and synthetic drugs. However, the emergence of drug‐resistant strains has become a challenge for coccidiosis control with anticoccidial drugs. To gain insights into the molecular mechanism governing the drug resistance of Eimeria tenella , two drug‐resistant strains of E. tenella , one maduramicin‐resistant ( MRR ) strain and one diclazuril‐resistant ( DZR ) strain, were generated. We carried out comparative transcriptome analyses of a drug‐sensitive strain ( DS ) and two drug‐resistant MRR and DZR strains of E. tenella using RNA ‐sequencing. A total of 1,070 differentially expressed genes ( DEG s), 672 upregulated and 398 downregulated, were identified in MRR vs. DS , and 379 DEG s, 330 upregulated and 49 downregulated, were detected in DZR vs. DS . Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathway enrichment analyses were performed to better understand the functions of these DEG s. In the comparison of DZR vs. DS , some DEG s were involved in peroxisome, biosynthesis of unsaturated fatty acids, and fatty acid metabolism. In the comparison of MRR vs. DS , some DEG s were involved in glycolysis/gluconeogenesis, regulation of actin cytoskeleton, and DNA replication. In addition, some DEG s coded for surface antigens that were downregulated in two drug‐resistant strains involved invasion, pathogenesis, and host–parasite interactions. These results provided suggestions for further research toward unraveling the molecular mechanisms of drug resistance in Eimeria species and contribute to developing rapid molecular methods to detect resistance to these drugs in Eimeria species in poultry.

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