4.6 Article

Acute phase response in Chinese soft-shelled turtle (Trionyx sinensis) with Aeromonas hydrophila infection

期刊

DEVELOPMENTAL AND COMPARATIVE IMMUNOLOGY
卷 35, 期 4, 页码 441-451

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ELSEVIER SCI LTD
DOI: 10.1016/j.dci.2010.11.011

关键词

Innate immunity; Acute phase response (APR); Acute phase protein (APP); Serum amyloid A (SAA); Bacterial infection; Chinese soft-shelled turtle (Trionyx sinensis)

资金

  1. National Natural Science Foundation of China [30070588, 30871912]
  2. National Basic Research Program of China [2009CB118704]

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Chinese soft-shelled turtle (Trionyx sinensis) is an important culture reptile. However, little is known about its acute phase response (APR) caused by bacteria. Serum amyloid A (SAA) is a major acute phase protein (APP). In this study, a turtle SAA homologue was identified and described in reptiles. The full-length cDNA of turtle SAA was 554 bp and contained a 381 bp open reading frame (ORF) coding for a protein of 127 aa. Similar to other known SAA genes, the turtle SAA gene contained three exons and two introns. The promoter region of turtle SAA gene contained the consensus binding sites for nuclear factor (NF)-kappa B and c-Rel. The turtle SAA amino acid sequence shared the highest identity to avian SAA sequences. Meantime, we present the first systematic study with expression levels of five genes encoding APPs in immune response caused by Aeromonas hydrophila infection. After infection, turtle SAA mRNA was induced in liver at 8 h, then increased more than 1200-fold at 2 d: in spleen and kidney, the SAA mRNAs were also induced during 8 h-7 d, but the level was far lower than that in the liver. The complement 3 (C3), fibrinogen-gamma chain (Fb-G) and cathepsin L (CathL) mRNAs were increased in liver at 2d, whereas the albumin (ALB) mRNA was significantly decreased during 8 h-7 d. Our studies suggest that the APR in turtle with A. hydrophila infection is similar to that in mammals, and SAA is a major indicator of bacterial infection, especially at early stage, in reptiles. Additionally, the different expression patterns of five APP genes observed in present studies could provide clues for understanding the innate immune mechanisms in the APR of reptiles. Crown Copyright (C) 2010 Published by Elsevier Ltd. All rights reserved.

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