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生物活性寡糖:欧洲海鲈(尖吻鲈)中双杀菌素基因表达的有效诱导剂。

Bio-Mos: an effective inducer of dicentracin gene expression in European sea bass (Dicentrarchus labrax).

作者信息

Terova Genciana, Forchino Andrea, Rimoldi Simona, Brambilla Fabio, Antonini Micaela, Saroglia Marco

机构信息

Department of Biotechnology and Molecular Sciences, University of Insubria, Via J.H. Dunant, 3-21100 Varese, Italy.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2009 Aug;153(4):372-7. doi: 10.1016/j.cbpb.2009.04.008. Epub 2009 Apr 23.

Abstract

Concern over the use of dietary antibiotics in aquaculture has encouraged the industry to search for alternatives that both enhance performance and afford protection from disease. Bio-Mos, derived from the outer cell wall of a specific strain of yeast Saccharomyces cerevisiae (Alltech Inc, USA) is a product that fits these criteria. Here, we present data on the impact of a Bio-Mos supplemented diet on the mRNA copy number of the antimicrobial peptide dicentracin, whose transcript regulation has not yet been explored in fish.We analyzed Bio-Mos-induced changes in the expression of sea bass (Dicentrarchus labrax) dicentracin,using a one-tube two-temperature real-time RT-PCR with which the gene expression can be absolutely quantified using the standard curve method. Our results revealed that 30 days of feeding fish with diets containing Bio-Mos supplemented at either 3 per thousand or 5 per thousand significantly increased the dicentracin mRNA copy number in the head kidney. Furthermore, the mRNA copy number in fish fed at 3 per thousand was significantly higher than that of the group fed at 5 per thousand for the same period of feeding Bio-Mos. A longer feeding period (60 days)did not further increase the dicentracin transcript levels as compared to the values recorded after 30 days of feeding either in the group fed at 3 per thousand or in the one fed at 5 per thousand diet. However, the transcript levels in fish fed at 3 per thousand proved to be significantly higher than those of the controls after 60 days of feeding. These findings offer new information about the response of antimicrobial peptides at the transcriptional level to diets supplemented with immune response modulators, and support a role of Bio-Mos in promoting sea bass nonspecific immune system.

摘要

对水产养殖中使用饲料抗生素的担忧促使该行业寻找既能提高养殖性能又能预防疾病的替代物。百奥明(Bio-Mos)源自特定酿酒酵母菌株(美国奥特奇公司)的细胞壁,是一种符合这些标准的产品。在此,我们展示了添加百奥明的饲料对抗菌肽双杀菌素(dicentracin)mRNA拷贝数影响的数据,其转录调控在鱼类中尚未得到研究。我们使用单管双温度实时逆转录PCR分析了百奥明诱导的海鲈(Dicentrarchus labrax)双杀菌素表达变化,通过该方法可以使用标准曲线法对基因表达进行绝对定量。我们的结果显示,用添加了千分之三或千分之五百奥明的饲料喂养鱼类30天,显著增加了头肾中双杀菌素的mRNA拷贝数。此外,在相同的百奥明喂养期内,以千分之三添加量喂养的鱼的mRNA拷贝数显著高于以千分之五添加量喂养的组。与千分之三添加量组或千分之五添加量组喂养30天后记录的值相比,更长的喂养期(60天)并没有进一步提高双杀菌素的转录水平。然而,在喂养60天后,以千分之三添加量喂养的鱼的转录水平被证明显著高于对照组。这些发现提供了关于抗菌肽在转录水平对添加免疫反应调节剂的饲料的反应的新信息,并支持了百奥明在促进海鲈非特异性免疫系统方面的作用。

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