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首页> 外文期刊>Pediatric diabetes. >Imbalance of bacteriome profiles within the Finnish Diabetes Prediction and Prevention study: Parallel use of 16S 16S profiling and virome sequencing in stool samples from children with islet autoimmunity and matched controls
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Imbalance of bacteriome profiles within the Finnish Diabetes Prediction and Prevention study: Parallel use of 16S 16S profiling and virome sequencing in stool samples from children with islet autoimmunity and matched controls

机译:在芬兰糖尿病预测和预防研究中的细菌组简谱的损伤:平行使用16S 16S的粪便样品中的16S 16S分析和病毒序列来自胰岛胰岛儿童的粪便样本和匹配对照

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摘要

Background We set out to explore associations between the stool bacteriome profiles and early‐onset islet autoimmunity, taking into account the interactions with the virus component of the microbiome. Methods Serial stool samples were longitudinally collected from 18 infants and toddlers with early‐onset islet autoimmunity (median age 17.4?months) followed by type 1 diabetes, and 18 tightly matched controls from the Finnish Diabetes Prediction and Prevention ( DIPP ) cohort. Three stool samples were analyzed, taken 3, 6, and 9 months before the first detection of serum autoantibodies in the case child. The risk of islet autoimmunity was evaluated in relation to the composition of the bacteriome 16S rDNA profiles assessed by mass sequencing, and to the composition of DNA and RNA viromes. Results Four operational taxonomic units were significantly less abundant in children who later on developed islet autoimmunity as compared to controls—most markedly the species of Bacteroides vulgatus and Bifidobacterium bifidum . The alpha or beta diversity, or the taxonomic levels of bacterial phyla, classes or genera, showed no differences between cases and controls. A correlation analysis suggested a possible relation between CrAssphage signals and quantities of Bacteroides dorei . No apparent associations were seen between development of islet autoimmunity and sequences of yet unknown origin. Conclusions The results confirm previous findings that an imbalance within the prevalent Bacteroides genus is associated with islet autoimmunity. The detected quantitative relation of the novel “orphan” bacteriophage CrAssphage with a prevalent species of the Bacteroides genus may exemplify possible modifiers of the bacteriome.
机译:背景技术我们首先探讨粪便诱导型谱和早起胰岛素自身免疫之间的关联,考虑到微生物组的病毒组分的相互作用。方法从18名婴儿和小孩纵向收集串联粪便样品,具有早起的胰岛自身免疫(中位年龄为17.4个月),其次是1型糖尿病,来自芬兰糖尿病预测和预防(DIPP)队列的18种紧密匹配的对照。分析了三个凳子样品,在案件儿童第一次检测血清自身抗体之前进行3,6和9个月。关于通过质量测序评估的细菌组16S rDNA谱的组成以及DNA和RNA病毒素的组成,评估了胰岛自身免疫的风险。结果四个运营分类单位在后来逐年较高的儿童少量较低,与对照组相比,肌电站最常见的裂变和双歧杆菌的种类。 α或β多样性,或细菌植物,类或属的分类水平,病例和对照没有差异。相关分析表明奇数信号与菌晶型DOREI的数量之间可能的关系。在胰岛自身免疫和尚未成因序列的发展之间没有看到明显的关联。结论结果证实了先前发现,普遍的诱导菌株内的不平衡与胰岛自身免疫有关。目前,具有普遍存体的诱导物种的新型“孤儿”噬菌体奇格物种的检测到的定量关系可以举例说明细菌组的可能改性剂。

著录项

  • 来源
    《Pediatric diabetes.》 |2017年第7期|共11页
  • 作者单位

    Department of Pediatrics 2nd Faculty of MedicineCharles University in Prague and University;

    Department of Pediatrics 2nd Faculty of MedicineCharles University in Prague and University;

    BioMediTech Computational BiologyUniversity of TampereTampere Finland;

    School of Medicine Department of VirologyUniversity of TampereTampere Finland;

    Department of Pediatrics 2nd Faculty of MedicineCharles University in Prague and University;

    Immunogenetics LaboratoryUniversity of Turku and Turku University HospitalTurku Finland;

    Department of Pediatrics and Research Centre of Applied and Preventive Cardiovascular;

    Department of PediatricsUniversity of Oulu and Oulu University HospitalOulu Finland;

    School of Health SciencesUniversity of TampereTampere Finland;

    School of Medicine Department of VirologyUniversity of TampereTampere Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 儿科学;
  • 关键词

    association; CrAssphage; microbiome; virome;

    机译:协会;韵律;微生物组;生物;

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