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1-Deoxynojirimycin from mulberry leaves changes gut digestion and microbiota composition in geese

机译:来自桑叶的1-脱苏昔尼霉素在鹅中改变肠道消化和微生物群组成

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摘要

This study was aimed to investigate whether 1-deoxynojirimycin (DNJ) affects the digestion system of young geese and assess whether mulberry leaf, which contains this substance, has disadvantages that compromise its value as poultry feed. One hundred and twenty-eight 12-day-old male Wanxi white geese were randomly assigned into 4 treatment groups. The control group was fed an ordinary diet without DNJ. The other groups namely L-DNJ, M-DNJ, and H-DNJ had their basic diets supplemented with 0.05 mg/g, 0.1 mg/g, and 0.15 mg/g DNJ, respectively. The geese were fed for 6 wk, and the apparent digestibility test was conducted in the last week. Intestinal parameters, digestive organs, and enzymes were determined. 16S rRNA gene sequencing was conducted for cecal flora composition. The results revealed that DNJ decreased body and liver weight and increased feed conversion ratio in comparison with the control (P < 0.05); however, it did not influence the weight and length of the intestine or the pancreas weight. The utilization of organic matter, metabolizable energy, ether extract, acid detergent fiber, and calcium in feed were reduced in the M-DNJ and L-DNJ groups compared with those in the control (P < 0.05); however, the utilization of crude protein was increased in all DNJ-treated groups (P < 0.01). In the H-DNJ group, the usage of soluble phosphorus was also increased (P < 0.05). High-dose DNJ increased the activity of trypsin in the pancreas but reduced those of amylase (P < 0.05) and lipase (P > 0.05) in the pancreas and duodenum. The intestinal villi were short, even impaired, in DNJ-treated groups. High-throughput sequencing data revealed that DNJ supplement reduced the α-diversity indices of the cecal microbiota. The principal component analysis further suggested a difference in community structure between the DNJ treatment groups and control. High-dose DNJ increased the relative abundance of Bacteroides, Escherichia-Shigella, and Butyricicoccus but reduced that of unclassified Ruminococcaceae compared with the control (P < 0.05). In conclusion, changes in the digestive system caused by DNJ seriously affected the metabolism of nutrients in geese and reduced their growth performance. Attention should be paid to the adverse effects of DNJ when using mulberry leaves as poultry feed.
机译:本研究旨在调查1-脱苏昔尼霉素(DNJ)是否影响幼鹅的消化系统,并评估含有这种物质的桑叶是否具有缺点,损害其作为家禽饲料的价值的缺点。一百二十八名12日雄性湾喜白鹅随机分配到4种治疗组。对照组不含DNJ的普通饮食。另一组即L-DNJ,M-DNJ和H-DNJ分别具有0.05mg / g,0.1mg / g和0.15mg / g dnj的碱性饮食。鹅饲喂6周,在上周进行了表观消化率测试。确定肠道参数,消化器官和酶。 16S进行菌群组合物的RRNA基因测序。结果显示,与对照相比,DNJ降低了身体和肝脏重量和饲料转化率增加(P <0.05);然而,它不会影响肠的重量和长度或胰腺重量。与对照组相比,在M-DNJ和L-DNJ组中,在M-DNJ和L-DNJ组中降低了有机质,可代谢能量,乙醚提取物,酸洗涤剂纤维和钙的用途(P <0.05);然而,在所有DNJ处理基团中,粗蛋白的利用增加(P <0.01)。在H-DNJ组中,溶于磷的用途也增加了(P <0.05)。高剂量DNJ在胰腺中增加了胰蛋白酶的活性,但在胰腺和十二指肠中减少了淀粉酶(P <0.05)和脂肪酶(P> 0.05)的活性。在DNJ治疗组中,肠绒毛甚至受损,甚至受损。高通量测序数据显示DNJ补充剂减少了盲肠微生物群的α-分集索引。主要成分分析进一步表明DNJ治疗组与控制之间的群落结构差异。高剂量DNJ增加了与对照相比的菌株,大肠杆菌 - 志氏菌和丁基菌和丁基菌的相对丰度(P <0.05)。总之,DNJ引起的消化系统的变化严重影响了鹅营养成分的新陈代谢,降低了它们的增长性能。当使用桑叶作为家禽饲料时,应注意DNJ的不良反应。

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