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施氏鲟 CRP/SAP 和 SAA 对细菌挑战和慢性热应激的不同反应揭示了鲟鱼先天免疫系统的特征。

Different response of Acipenser gueldenstaedtii CRP/SAP and SAA to bacterial challenge and chronic thermal stress sheds light on the innate immune system of sturgeons.

机构信息

Unidad de Inmunología, Instituto de Química Biológica, Facultad de Ciencias, Universidad de la República, CP 11600, Montevideo, Uruguay; Área Inmunología, Departamento de Biociencias, Facultad de Química, Universidad de la República, Montevideo, CP 11600, Montevideo, Uruguay.

Unidad de Inmunología, Instituto de Química Biológica, Facultad de Ciencias, Universidad de la República, CP 11600, Montevideo, Uruguay; Área Inmunología, Departamento de Biociencias, Facultad de Química, Universidad de la República, Montevideo, CP 11600, Montevideo, Uruguay; Sección Bioquímica y Biología Molecular, Facultad de Ciencias, Universidad de la República, CP 11400, Montevideo, Uruguay.

出版信息

Fish Shellfish Immunol. 2022 Feb;121:404-417. doi: 10.1016/j.fsi.2021.12.029. Epub 2021 Dec 28.

Abstract

Sturgeons are chondrostean fish critically endangered due to anthropogenic loss and degradation of natural habitat and overfishing for meat and caviar production. Consequently, sturgeon aquaculture has extensively developed lately, being Russian sturgeon (Acipenser gueldenstaedtii) the second most important species reared for caviar production. However, Russian sturgeon aquaculture in subtropical countries, such as Uruguay, confronts difficulties because fish have to endure excessive summertime warm temperatures, which weaken their innate defences facilitating opportunistic infections. To address this problem, we look for identifying putative acute phase proteins (APPs), which might be robust serum biomarkers of both infection and chronic thermal stress, applied to monitoring Russian sturgeon health status in farms. We focused on the C-Reactive Protein/Serum Amyloid P (CRP/SAP) pentraxin since the pentraxin family includes well-known APPs, better characterised in mammals than fish. We identified A.gueldenstaedtii CRP/SAP (AgCRP/SAP), as a member of the universal CRP/SAP pentraxin sub-family, and studied AgCRP/SAP involvement in sturgeon response to bacterial challenge and chronic thermal stress, in comparison with A. gueldenstaedtii Serum Amyloid A (AgSAA), a previously described positive APP. Results showed that AgCRP/SAP is a constitutive serum component that remained constant upon Aeromonas hydrophila challenge and chronic thermal stress. Contrastingly, serum AgSAA was subjected to regulation by bacterial and thermal stress challenges, showing a 50-fold increase and 3-fold decline in serum levels, respectively. Overall, results highlight the potential value of AgSAA, but not of AgCRP/SAP, as a biomarker of bacterial infection and the need to continue searching for robust chronic thermal stress biomarkers in sturgeons.

摘要

鲟鱼是软骨硬鳞鱼类,由于人类活动导致自然栖息地丧失和退化以及过度捕捞用于生产肉和鱼子酱,它们处于极度濒危状态。因此,最近鲟鱼养殖业得到了广泛发展,俄罗斯鲟(Acipenser gueldenstaedtii)是养殖用于生产鱼子酱的第二重要物种。然而,在乌拉圭等亚热带国家,俄罗斯鲟养殖业面临着困难,因为鱼类必须忍受夏季过度的高温,这削弱了它们的先天防御能力,使机会性感染更容易发生。为了解决这个问题,我们寻找鉴定潜在的急性期蛋白(APPs),这些蛋白可能是感染和慢性热应激的可靠血清生物标志物,应用于监测农场中俄罗斯鲟的健康状况。我们专注于 C 反应蛋白/血清淀粉样蛋白 P(CRP/SAP)五聚体,因为五聚体家族包括在哺乳动物中比鱼类更好地描述的已知 APP。我们鉴定出 A.gueldenstaedtii CRP/SAP(AgCRP/SAP),作为通用 CRP/SAP 五聚体亚家族的成员,并研究了 AgCRP/SAP 在鲟鱼对细菌挑战和慢性热应激的反应中的作用,与先前描述的阳性 APP A. gueldenstaedtii 血清淀粉样蛋白 A(AgSAA)进行比较。结果表明,AgCRP/SAP 是一种组成性血清成分,在受到嗜水气单胞菌挑战和慢性热应激时保持不变。相比之下,血清 AgSAA 受到细菌和热应激挑战的调节,血清水平分别增加了 50 倍和减少了 3 倍。总的来说,结果突出了 AgSAA 的潜在价值,但不是 AgCRP/SAP,作为细菌感染的生物标志物,并且需要继续在鲟鱼中寻找稳健的慢性热应激生物标志物。

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