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在卵形鲳鲹(Trachinotus falcatus)中,体液和黏膜防御分子在明暗周期中呈节律性振荡。

Humoral and mucosal defense molecules rhythmically oscillate during a light-dark cycle in permit, Trachinotus falcatus.

作者信息

Lazado Carlo C, Lund Ivar, Pedersen Per Bovbjerg, Nguyen Huy Quang

机构信息

Technical University of Denmark, DTU Aqua, Section for Aquaculture, The North Sea Research Centre, DK-9850 Hirtshals, Denmark.

Technical University of Denmark, DTU Aqua, Section for Aquaculture, The North Sea Research Centre, DK-9850 Hirtshals, Denmark.

出版信息

Fish Shellfish Immunol. 2015 Dec;47(2):902-12. doi: 10.1016/j.fsi.2015.10.037. Epub 2015 Oct 27.

Abstract

Circadian rhythm provides organisms with an internal system to maintain temporal order in a dynamic environment. This is typified by a 24-h cycle for a number of physiological processes, including immunity. The present study characterized the humoral and mucosal defense molecules and their dynamics during a light-dark (LD) cycle in juvenile permit, Trachinotus falcatus. All studied defense molecules were constitutively identified in serum and skin mucus. Serum generally exhibited higher levels of these defenses than skin mucus, with the exception of anti-protease (ANTIPRO). The difference in ANTIPRO, lysozyme (LYZ), esterase (ESA) and catalase (CAT) levels between serum and skin mucus was not affected by the phase of the daily cycle. However, a clear phase-dependent difference was observed in protease (PRO), globulin (GLOB), myeloperoxidase (MPO), alkaline phosphatase (ALP) and glutathione peroxidase (GPX) levels. Activities of ALP and GPX displayed significant daily rhythmicity in both serum and skin mucus. Circadian profile of ALP was identical in both biofluids, but an antiphasic feature was exhibited by GPX. GLOB and MPO levels also exhibited significant daily oscillation but only in serum with acrophases registered at ZT 14.5 and 6.15, respectively. Mucus PRO and serum ANTIPRO demonstrated significant temporal variations during a daily cycle albeit not rhythmic. Cluster analysis of the defense molecules in serum and skin mucus revealed two different daily profiles suggesting a possibility of distinct circadian control between humoral and mucosal immunity. These observations indicate that LD cycle had a remarkable impact in the defense molecules characterizing the humoral and mucosal immunity in permit. Daily rhythmic patterns of these defense molecules contribute to our understanding of the barely explored interplay of immunity and circadian rhythm in teleost fish. Lastly, the results could be useful in developing aquaculture practices aiming at modifying the immune functions of permit for improved health.

摘要

昼夜节律为生物体提供了一个内部系统,以在动态环境中维持时间秩序。这在包括免疫在内的许多生理过程的24小时周期中表现得很典型。本研究对少年卵形鲳鲹(Trachinotus falcatus)在光暗(LD)周期中的体液和黏膜防御分子及其动态变化进行了表征。在血清和皮肤黏液中均组成性地鉴定出了所有研究的防御分子。血清中这些防御物质的水平通常高于皮肤黏液,但抗蛋白酶(ANTIPRO)除外。血清和皮肤黏液中ANTIPRO、溶菌酶(LYZ)、酯酶(ESA)和过氧化氢酶(CAT)水平的差异不受每日周期阶段的影响。然而,在蛋白酶(PRO)、球蛋白(GLOB)、髓过氧化物酶(MPO)、碱性磷酸酶(ALP)和谷胱甘肽过氧化物酶(GPX)水平上观察到了明显的相位依赖性差异。ALP和GPX的活性在血清和皮肤黏液中均表现出显著的每日节律性。两种生物流体中ALP的昼夜分布相同,但GPX表现出反相特征。GLOB和MPO水平也表现出显著的每日振荡,但仅在血清中,其峰值相位分别出现在ZT 14.5和6.15。黏液PRO和血清ANTIPRO在每日周期中表现出显著的时间变化,尽管没有节律性。血清和皮肤黏液中防御分子的聚类分析揭示了两种不同的每日分布,这表明体液免疫和黏膜免疫之间可能存在不同的昼夜控制。这些观察结果表明,LD周期对卵形鲳鲹体液和黏膜免疫的防御分子具有显著影响。这些防御分子的每日节律模式有助于我们理解硬骨鱼免疫与昼夜节律之间鲜为人知的相互作用。最后,这些结果可能有助于制定水产养殖实践,旨在改变卵形鲳鲹的免疫功能以改善健康状况。

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