Temporal development of the gut microbiome in early childhood from the TEDDY study

Временное развитие микробиоты кишечника в раннем детстве по данным исследования TEDDY
Curtis Huttenhower, Richard A. Gibbs, Jacqueline O’Brien, Jeffrey P. Krischer, Ginger Metcalf, Donna M. Muzny, Ramnik J. Xavier, Tommi Vatanen, Christopher J. Stewart, Matthew C. Ross, Joseph F. Petrosino, Nadim J. Ajami, HarshaVardhan Doddapaneni, Åke Lernmark, Jorma Toppari, Anette‐G. Ziegler, Beena Akolkar, Diane S. Hutchinson, Daniel P. Smith, Matthew C. Wong, Richard E. Lloyd, Marian Rewers, William Hagopian, Jin‐Xiong She, Heikki Hyöty, Kendra Vehik, Matthew C. Wong
2018-10-01

Bifidobacterium and Bacteroides associationsTEDDY studybreastfeeding impact on microbiome maturationearly childhood gut microbiomelongitudinal 16S rRNA and metagenomic sequencing
The development of the microbiome from infancy to childhood is dependent on a range of factors, with microbial–immune crosstalk during this time thought to be involved in the pathobiology of later life diseases1–9 such as persistent islet autoimmunity and type 1 diabetes10–12. However, to our knowledge, no studies have performed extensive characterization of the microbiome in early life in a large, multi-centre population. Here we analyse longitudinal stool samples from 903 children between 3 and 46 months of age by 16S rRNA gene sequencing (n = 12,005) and metagenomic sequencing (n = 10,867), as part of the The Environmental Determinants of Diabetes in the Young (TEDDY) study. We show that the developing gut microbiome undergoes three distinct phases of microbiome progression: a developmental phase (months 3–14), a transitional phase (months 15–30), and a stable phase (months 31–46). Receipt of breast milk, either exclusive or partial, was the most significant factor associated with the microbiome structure. Breastfeeding was associated with higher levels of Bifidobacterium species (B. breve and B. bifidum), and the cessation of breast milk resulted in faster maturation of the gut microbiome, as marked by the phylum Firmicutes. Birth mode was also significantly associated with the microbiome during the developmental phase, driven by higher levels of Bacteroides species (particularly B. fragilis) in infants delivered vaginally. Bacteroides was also associated with increased gut diversity and faster maturation, regardless of the birth mode. Environmental factors including geographical location and household exposures (such as siblings and furry pets) also represented important covariates. A nested case–control analysis revealed subtle associations between microbial taxonomy and the development of islet autoimmunity or type 1 diabetes. These data determine the structural and functional assembly of the microbiome in early life and provide a foundation for targeted mechanistic investigation into the consequences of microbial–immune crosstalk for long-term health. Metagenomic sequencing analysis of stool samples from 903 children as part of the TEDDY study shows that breastfeeding was the most important factor associated with microbiome structure, and the cessation of breast milk resulted in faster maturation of the gut microbiome.
1
A nested case–control analysis found subtle associations between microbial taxonomy and development of islet autoimmunity or type 1 diabetes.
2
Birth mode significantly influences the microbiome during the developmental phase, with vaginal delivery linked to higher levels of Bacteroides species, particularly B. fragilis.
3
Breastfeeding (exclusive or partial) is the most significant factor associated with gut microbiome structure in early childhood.
4
Breastfeeding is associated with higher levels of Bifidobacterium species (B. breve and B. bifidum).
5
Cessation of breast milk results in faster maturation of the gut microbiome, marked by increased representation of the phylum Firmicutes.
6
Environmental factors (geographical location and household exposures such as siblings and furry pets) are important covariates shaping early-life microbiome assembly.
7
Presence of Bacteroides is associated with increased gut diversity and faster microbiome maturation regardless of birth mode.
8
The developing gut microbiome in early childhood follows three distinct phases: developmental (3–14 months), transitional (15–30 months), and stable (31–46 months).

Developing gut microbiome in early childhood (stool microbiome of children aged 3–46 months from the TEDDY study)

Temporal structural and functional development and maturation of the gut microbiome (distinct progression phases, taxa dynamics, diversity changes) and associations with factors such as breastfeeding, birth mode, geography, household exposures, and links to islet autoimmunity/type 1 diabetes risk

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2018-10-01
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Authors
Curtis Huttenhower
Richard A. Gibbs
Jacqueline O’Brien
Jeffrey P. Krischer
Ginger Metcalf
Donna M. Muzny
Ramnik J. Xavier
Tommi Vatanen
Christopher J. Stewart
Matthew C. Ross
Joseph F. Petrosino
Nadim J. Ajami
HarshaVardhan Doddapaneni
Åke Lernmark
Jorma Toppari
Anette‐G. Ziegler
Beena Akolkar
Diane S. Hutchinson
Daniel P. Smith
Matthew C. Wong
Richard E. Lloyd
Marian Rewers
William Hagopian
Jin‐Xiong She
Heikki Hyöty
Kendra Vehik
Matthew C. Wong
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