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Oligosaccharides derived from dragon fruit modulate gut microbiota, reduce oxidative stress and stimulate toll-pathway related gene expression in freshwater crustacean Daphnia magna

机译:源自龙水果调节肠道微生物肿瘤的寡糖,减少氧化应激并刺激淡水甲壳动物Daphnia Magna中的抗旱性衔接相关基因表达

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摘要

Dragon fruit oligosaccharide (DFO) is an indigestible prebiotic. In this study, we aimed to investigate the effects of DFO on gut microbiota, oxidative stress and immune-related gene expression in Daphnia magna. The 10-dayold D. magna were treated with 0, 9, and 27 mg l(-1) DFO for 85 h. The gut bacterial communities, superoxide dismutase (SOD) activity, lipid peroxidation and the expressions of genes in Toll signaling pathway were observed. The results showed that D. magna treated with 9 and 27 mg l(-1) DFO altered gut microbiota composition by increasing Limnohabitans and Lactobacillus, and significantly increased SOD activity and reduced lipid peroxidation. Moreover, the expressions of Toll2, Toll3, Toll5, Toll7 and Pelle genes were significantly increased in D. magna treated with 9 and 27 mg l(-1) DFO. Our results suggested that DFO changed the composition of the gut microbiota of D. magna by increasing the beneficial bacteria. DFO also had the ability to stimulate innate immunity in D. magna by increasing SOD activity, reducing lipid peroxidation, and increasing the expression of immune-related genes.
机译:Dragon Fruit Oligosaccharide(DFO)是一种难以消化的益生元。在这项研究中,我们旨在探讨DFO对Daphnia Magna中肠道微生物,氧化应激和免疫相关基因表达的影响。用0,9和27mg L(-1)DFO处理10-Daiold D. Magna持续85小时。观察到肠道细菌群,超氧化物歧化酶(SOD)活性,脂质过氧化和沟通信号通路中基因的表达。结果表明,用9和27mg L(-1)DFO处理的D. MAGNA通过增加利氧哌胞胎和乳酸杆菌而改变了肠道微生物酵母组合物,并显着提高了SOD活性和降低的脂质过氧化。此外,用9和27mg L(-1)DFO处理的D. Magna的Toll2,Toll3,Toll5,Toll7和Pelle基因的表达显着增加。我们的结果表明,DFO通过增加有益细菌改变了D. Magna的肠道微生物群的组成。 DFO还能够通过增加SOD活性,减少脂质过氧化,增加免疫相关基因的表达,促进D. MAGNA中的先天免疫力。

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