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首页> 外文期刊>Aquaculture Reports >Effect of β-glucan in water on growth performance, blood status and intestinal microbiota in tilapia under hypoxia
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Effect of β-glucan in water on growth performance, blood status and intestinal microbiota in tilapia under hypoxia

机译:β-葡聚糖在缺氧下罗非鱼生长性能,血液状态和肠道微生物的影响

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摘要

In the present study, the effects of β-glucan administration in water on growth performance and blood status (hematological indexes, immunological and biochemical parameters) were evaluated in Nile tilapia fingerlings ( Oreochromis niloticus ) under hypoxia-induced stress. In parallel, effect of this prebiotic (beta-glucan) was evaluated on gut microbiota diversity (16S rRNA gene) under normal oxygenation condition. Three treatments were implemented according to beta-glucan water supplementation: 0 (control), 0.1 and 0.3?mg?Lsup?1/sup. Blood was collected before hypoxic challenge (BHC) and 9?h after hypoxic challenge (AHC). No significant differences were observed according to growh performance parameters. A significant increase in erythrocyte number and decrease in mean corpuscular volume ( P ?0.05) were identified in control group when were under hypoxia. The plasma glucose level was higher in the 0.3 group than in the 0.1 group BHC; however, for all groups, the glucose level increased markedly AHC, and then receded seven days AHC (7AHC, P ?0.05). Total protein, serum lysozyme, plasma lactate, triglyceride, and cholesterol concentrations did not differ between groups. Comparison of the two β-glucan concentrations indicated that the 0.3?mg Lsup?1/sup concentration promoted an increase in lymphocyte count. The 0.1?group showed the highest survival rate 7 days after hypoxia. Metagenomic analysis revealed a greater number of operational taxonomic units (OTUs) in the 0.1 and 0.3 groups. The Chao richness value was higher in the 0.1?group than in the control group ( P 0.05), with a greater abundance observed for members of the Vibrionaceae family. It is concluded that the concentration of 0.1?mg?Lsup?1/sup was able to increase tolerance to hypoxia, increasing the survival rate and regulating glucose levels. The concentration of 0.3?mg?Lsup?1/sup modulated hematological responses under stress and increased the lymphocyte count before hypoxic challenge.
机译:在本研究中,在脊索诱导的应激下,在尼罗替尔皮菊(Oreochromis NiLoticus)中评估了β-葡聚糖给药在水中对生长性能和血液状态(血液学指标,免疫化学和生化参数)的影响。并行地,在正常氧化条件下对肠道微生物群多样性(16S rRNA基因)进行评估该益生元(β-葡聚糖)的效果。根据β-葡聚糖水补充,实施了三种处理:0(对照),0.1和0.3?mgΔ1α1。在缺氧攻击(BHC)和9μl缺氧攻击(AHC)之前收集血液。根据VASH绩效参数没有观察到显着差异。在缺氧下,在对照组中鉴定了在对照组中鉴定出红细胞数和平均碎石体积的降低的显着增加。血浆葡萄糖水平在0.3组比0.1组BHC中较高;然而,对于所有群体,葡萄糖水平显着增加了AHC,然后在AHC(7AHC,P <0.05)上后退。总蛋白质,血清溶菌酶,血浆乳酸,甘油三酯和胆固醇浓度在基团之间没有差异。两种β-葡聚糖浓度的比较表明0.3?Mg L α1浓度促进淋巴细胞计数的增加。 0.1?组缺氧后7天的存活率最高。 Metagenomic分析显示了0.1和0.3组中更多的运作分类单位(OTUS)。 0.1℃的昭和富含值高于对照组(P <0.05),对于振动率为家族的成员观察到更大的丰度。结论是,浓度为0.1Ω·mg?l β1能够增加对缺氧的耐受性,增加存活率和调节葡萄糖水平。浓度为0.3Ω·mg?l β1在胁迫下调节血液响应,并增加缺氧攻击前的淋巴细胞计数。

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