首页> 外文期刊>Fish & Shellfish Immunology >Regulation of growth, intestinal microbiota, non-specific immune response and disease resistance of sea cucumber Apostichopus japonicus (Selenka) in Check la biofloc systems
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Regulation of growth, intestinal microbiota, non-specific immune response and disease resistance of sea cucumber Apostichopus japonicus (Selenka) in Check la biofloc systems

机译:调查在检查La Ba Biofloc系统中的生长,肠道微生物,肠道嗜虫草,非特异性免疫应答和抗病性

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Bioflocs are not only a source of supplemental nutrition but also provide substantial probiotic bacteria and bioactive compounds, which play an important role in improving physiological health of aquatic organisms. A 60-day experiment was conducted to investigate the growth, intestinal microbiota, non-specific immune response and disease resistance of sea cucumber in biofloc systems with different carbon sources (glucose, sucrose and starch). Control (no biofloc) and three biofloc systems were set up, and each group has three replicates. The results showed that biofloc volume (BFV) and total suspended solids (TSS) increased in the sequences of glucose & sucrose & starch and green sea cucumber & white sea cucumber during the experiment. The highest specific growth rates (SGRs) were observed in biofloc system with glucose as carbon source, which also had relatively lower glucose, lactate and cortisol levels in coelomic fluid and higher glycogen content in muscle compared to other groups. There were significant increased Bacillus and Lactobacillus counts of sea cucumber intestine in biofloc systems, and the activities of superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GPx) also showed obvious ascending trends. Significant increases in total coelomocytes counts (TCC), phagocytosis, respiratory burst, complement C3 content and lysozyme (LSZ) and acid phosphatase (ACP) activities of sea cucumber were all found in biofloc system (glucose). The expression patterns of most immune-related genes (i.e. Hsp90, Hsp70, c-type lectin (CL), toll-like receptor (TLR)) were up-regulated, suggesting the promotion of pathogen recognition ability and immune signaling pathways activation by biofloc. Furthermore, green and white sea cucumber had significantly higher survival rates in biofloc systems during the 14-day challenge test. In conclusion, biofloc technology could improve growth and physiological health of A. japonicus, by optimizing intestinal microbiota, strengthening antioxidant ability, enhancing non-specific immune response and disease resistance against pathogens, meanwhile glucose was recommended as optimal carbon source in biofloc system of sea cucumber culturing.
机译:Bioflocs不仅是补充营养的来源,而且还提供了大量的益生菌和生物活性化合物,这在改善水生生物的生理健康方面发挥着重要作用。进行了60天的实验,以研究具有不同碳源(葡萄糖,蔗糖和淀粉)的生物氟氯纤维系统中海参的生长,肠道微生物,非特异性免疫反应和抗病性。设置控制(无生物氟氯丙酯)和三种生物反射系统,每组都有三个重复。结果表明,葡萄糖&amp的序列中,生物氟氯体积(BFV)和总悬浮固体(TSS)增加; GT;蔗糖& 淀粉和绿海黄瓜& 在实验期间白海黄瓜。在葡萄糖系统中观察到最高特异性生长速率(SGRS),其葡萄糖作为碳源,其在与其他基团相比,葡萄糖中的葡萄糖,乳酸盐和皮质醇水平相对较低,乳酸乳酸盐水平和肌肉更高的糖原含量。生物氟氯虫系统中海参肠道杆菌和乳杆菌数量升高,以及超氧化物歧化酶(SOD),过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GPX)的活性也表现出明显的上升趋势。在Biofloc系统(葡萄糖)中,全核细胞总数(TCC),吞噬作用,呼吸爆发,补体C3含量和溶菌酶(ACP)和酸性磷酸酶(ACP)活性的显着增加。上调,大多数免疫相关基因的表达模式(即HSP90,HSP70,C型凝集素(C1),Toll样受体(TLR)),促进了生物氟氯烃的病原体识别能力和免疫信号通路活化。此外,在14天的攻击试验期间,绿色和白海黄瓜在生物环系统中存在较高的生物缺陷率。总之,通过优化肠道微生物群,加强抗氧化能力,增强抗氧化能力,增强对病原体的非特异性免疫应答和疾病抗性的,可以提高粳稻的生长和生理健康。同时,建议葡萄糖作为Biofloc海洋系统的最佳碳源黄瓜培养。

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