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Structural difference analysis of adult’s intestinal flora basing on the 16S rDNA gene sequencing technology

机译:16S rDNA基因测序技术对成人肠道菌群的结构差分分析

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OBJECTIVE: Through 16S rDNA technology, we aimed at separating adults aging 20-50 years old into a few groups and processing the high-throughput sequencing analysis, in order to explore the features and differences of intestinal flora in each age group in a microcosmic perspective. PATIENTS AND METHODS: 120 stool specimens were collected strictly in accordance with acceptance criteria and exclusion criteria. 49 subjects aging 20-29 years old (Group AGE1), 51 subjects aging 30-39 years old (Group AGE2), and 20 subjects aging 40-49 years old (Group AGE3) were divided into 3 groups. Bacteria DNA from fresh stool specimens of 3 groups were abstracted. Illumina MiSeq high-throughput sequencing platform was applied to process 16S rDNA sequencing in Area 338F_806R for intestinal flora detection. I-Sanger Bio-cloud platform was applied for the analysis of intestinal flora structure changes in phylum level and genus level. RESULTS: Among the age of 20-50, with older age, the abundance of intestinal flora decreased among healthy adults more than 40 years old. In addition, the diversity and sample dispersion of intestinal flora is significantly different from people among 20-40 years old. The decrease ratio of Firmicutes/Bacteroidetes indicated that as the age grows, glucose tolerance might decrease. Comparing with people among 20-40 years old, the amount of Bifidobacterium and Eubacterium in people over 40 years old have significantly decreased. The decrease of Bifidobacterium and Eubacterium may increase the risks of cognitive impairment and lower the anti-inflammation and anti-cancer efficacy in human body, respectively. Subdoligranulum relates to poor metabolism and chronic inflammation and it happens more in people aged over 40 than young people who are among 20-40 years old. CONCLUSIONS: There are differences in the intestinal flora of healthy adults aged 20-50. Effective intervention of the intestinal flora may play a role in delaying aging and preventing diseases.
机译:目的:通过16S rdna技术,我们旨在将成年人20-50岁的成年人分离成几组,加工高通量测序分析,以探讨微观角度下每个年龄组肠道菌群的特征和差异。患者和方法:严格按照验收标准和排除标准收集120个粪便标本。 49岁20-29岁的科目(组年龄1),51名龄龄(组24岁)和20名40-49岁的龄(组年龄)的20名受试者分为3组。来自新鲜粪便标本的细菌DNA被抽象出来。 Illumina MiSeq高通量测序平台应用于在338F_806R中加工16S RDNA测序,用于肠道菌群菌群。 I-Sanger生物云平台用于分析肠道菌群结构的影响,文学水平和属级别。结果:20-50岁,随着年龄较大的,肠道菌群的丰度在40岁以上的健康成年人中减少。此外,肠道菌群的多样性和样本分散与20-40岁之间的人显着不同。压差/菌体的降低率表明,随着年龄的增长,葡萄糖耐量可能会降低。与20-40岁之间的人员相比,40岁以上人民的双歧杆菌和盲肠的数量显着下降。双歧杆菌和易比的降低可能会增加认知障碍的风险,并分别降低人体中的抗炎和抗癌疗效。 Subdoligranulum涉及差的新陈代谢和慢性炎症,而且它发生的人超过40岁以上的人,而不是20-40岁的年轻人。结论:20-50岁的健康成年人的肠道菌群存在差异。肠道菌群的有效干预可能在延缓衰老和预防疾病方面发挥作用。

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