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Immunostimulatory effects of dietary poly-beta-hydroxybutyrate in European sea bass postlarvae

机译:膳食多β-羟基丁酸盐在欧洲鲈鱼后的免疫刺激作用

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The stable production of high-quality fry in marine aquaculture is still hampered by unpredictable mortality caused by infectious diseases during larval rearing. Consequently, the development of new biocontrol agents is crucial for a viable aquaculture industry. The bacterial energy storage compound poly--hydroxybutyrate (PHB) has been shown to exhibit beneficial properties on aquatic organisms such as enhanced survival, growth, disease resistance and a controlling effect on the gastrointestinal microbiota. However, the effect of PHB on the developing immune system of fish larvae has so far not been investigated. In this study, the effect of feeding PHB-enriched Artemia nauplii on survival, growth and immune response in European sea bass (Dicentrarchus labrax) postlarvae was examined. Amorphous PHB was administered to 28-day-old sea bass postlarvae over a period of 10days. The survival and growth performance were monitored, and the expression of 29 genes involved in immunity, growth, metabolism and stress-response was measured. While the expression of the insulin-like growth factor 1 (igf1), an indicator of relative growth, was upregulated in response to feeding PHB, the larval survival and growth performance remained unaffected. After 10days of PHB treatment, the expression of the antimicrobial peptides dicentracin (dic) and hepcidin (hep) as well as mhc class IIa and mhc class IIb was elevated in the PHB fed postlarvae. This indicates that PHB is capable of stimulating the immune system of fish early life stages, which may be the cause of the increased resistance to diseases and robustness observed in previous studies.
机译:在海洋水产养殖中稳定生产高品质的油炸物仍然受到幼虫饲养期间传染病造成的不可预测的死亡率的阻碍。因此,新的生物控制剂的发展对于可行的水产养殖行业至关重要。已经显示细菌能量储存化合物聚 - 羟基丁酸酯(PHB)在水生生物上表现出有益的性质,例如增强的存活,生长,抗病性和对胃肠微生物的控制作用。然而,迄今为止迄今为止迄今为止迄今为止迄今为止对鱼类幼虫发育免疫系统的影响。在这项研究中,研究了饲料富含PHB的Artemia Nauplii对欧洲鲈鱼(Dicentrarchus Labrax)的存活,生长和免疫应答的影响。在10天的时间内给予无定形博士学位给28天大的海底贝司Bassarvae。监测生存和生长性能,测定了参与免疫,生长,代谢和应激反应的29个基因的表达。虽然胰岛素样生长因子1(IGF1)的表达,相对生长的指示剂响应于进料PHB而上调,但幼虫存活率和生长性能不受影响。在PHB治疗中10天后,在PHB喂养后的PHB喂养后抗菌肽DICENTRAC肽DICENTRACINE DICENTRACINE(DIC)和肝素(HEP)和MHC等级IIB的表达升高。这表明PHB能够刺激鱼早期生命阶段的免疫系统,这可能是在先前研究中观察到的疾病和鲁棒性增加的原因。

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