4.6 Article

Full-length transcriptome sequencing and identification of immune-related genes in the critically endangered Hucho bleekeri

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ELSEVIER SCI LTD
DOI: 10.1016/j.dci.2020.103934

关键词

Hucho bleekeri; Isoform sequencing; Illumina sequencing; Immune-related genes

资金

  1. Sichuan Science and Technology Program [18ZDYF0626]
  2. Research integration and demonstration of key technology of regional characteristic industrial chain of cold water native fish, Freshwater Fish Innovation Team of Sichuan Province-Research integration and application of large-scale breeding and ecological [sccxtd-2020-15]
  3. Research on large-scale cultivation of Hucho bleekeri seedling at Bala Hydropower Station

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This study conducted the first transcriptome analysis of Hucho bleekeri, providing valuable genomic information and immune characteristics. KEGG analysis revealed annotation of multiple immune pathways. Additionally, the study discussed the expression profiles of genes involved in different immune signaling pathways in H. bleekeri.
Hucho bleekeri is a glacial relict and critically endangered fish restricted to the Yangtze River drainage in China. The lack of basic genomic information and immune characteristics will hinder the way toward protecting this species. In the present study, we conducted the first transcriptome analysis of H. bleekeri using the combination of SMRT and Illumina sequencing technology. Transcriptome sequencing generated a total of 93,330 nonredundant full-length unigenes with a mean length of 3072 bp. A total of 92,472 (99.08%) unigenes were annotated in at least one of the Nr protein, Swiss-Prot, KEGG, KOG, GO, Nt and Pfam databases. KEGG analysis showed that a total of 7240 unigenes belonging to 28 immune pathways were annotated to the immune system category. Meanwhile, differentially expressed genes between mucosa-associated tissues (skin, gill and hindgut) and systemic-immune tissues (spleen, head kidney and liver) were obtained. Importantly, genes participating in diverse immune signalling pathways and their expression profiles in H. bleekeri were discussed. In addition, a large number of long non-coding RNAs (lncRNAs) and simple sequence repeats (SSRs) were obtained in the H. bleekeri transcriptome. The present study will provide basic genomic information for H. bleekeri and for further research on analysing the characteristics of both the innate and adaptive immune systems of this critically endangered species.

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