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Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity

The first years of life are paramount in establishing our endogenous gut microbiota, which is strongly affected by diet and has repeatedly been linked with obesity. However, very few studies have addressed the influence of maternal obesity on infant gut microbiota, which may occur either through ver...

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Autores principales: Laursen, Martin Frederik, Andersen, Louise B. B., Michaelsen, Kim F., Mølgaard, Christian, Trolle, Ellen, Bahl, Martin Iain, Licht, Tine Rask
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4863607/
https://www.ncbi.nlm.nih.gov/pubmed/27303699
http://dx.doi.org/10.1128/mSphere.00069-15
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author Laursen, Martin Frederik
Andersen, Louise B. B.
Michaelsen, Kim F.
Mølgaard, Christian
Trolle, Ellen
Bahl, Martin Iain
Licht, Tine Rask
author_facet Laursen, Martin Frederik
Andersen, Louise B. B.
Michaelsen, Kim F.
Mølgaard, Christian
Trolle, Ellen
Bahl, Martin Iain
Licht, Tine Rask
author_sort Laursen, Martin Frederik
collection PubMed
description The first years of life are paramount in establishing our endogenous gut microbiota, which is strongly affected by diet and has repeatedly been linked with obesity. However, very few studies have addressed the influence of maternal obesity on infant gut microbiota, which may occur either through vertically transmitted microbes or through the dietary habits of the family. Additionally, very little is known about the effect of diet during the complementary feeding period, which is potentially important for gut microbiota development. Here, the gut microbiotas of two different cohorts of infants, born either of a random sample of healthy mothers (n = 114), or of obese mothers (n = 113), were profiled by 16S rRNA amplicon sequencing. Gut microbiota data were compared to breastfeeding patterns and detailed individual dietary recordings to assess effects of the complementary diet. We found that maternal obesity did not influence microbial diversity or specific taxon abundances during the complementary feeding period. Across cohorts, breastfeeding duration and composition of the complementary diet were found to be the major determinants of gut microbiota development. In both cohorts, gut microbial composition and alpha diversity were thus strongly affected by introduction of family foods with high protein and fiber contents. Specifically, intake of meats, cheeses, and Danish rye bread, rich in protein and fiber, were associated with increased alpha diversity. Our results reveal that the transition from early infant feeding to family foods is a major determinant for gut microbiota development. IMPORTANCE The potential influence of maternal obesity on infant gut microbiota may occur either through vertically transmitted microbes or through the dietary habits of the family. Recent studies have suggested that the heritability of obesity may partly be caused by the transmission of “obesogenic” gut microbes. However, the findings presented here suggest that maternal obesity per se does not affect the overall composition of the gut microbiota and its development after introduction of complementary foods. Rather, progression in complementary feeding is found to be the major determinant for gut microbiota establishment. Expanding our understanding of the influence of complementary diet on the development and establishment of the gut microbiota will provide us with the knowledge to tailor a beneficial progression of our intestinal microbial community.
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spelling pubmed-48636072016-06-14 Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity Laursen, Martin Frederik Andersen, Louise B. B. Michaelsen, Kim F. Mølgaard, Christian Trolle, Ellen Bahl, Martin Iain Licht, Tine Rask mSphere Research Article The first years of life are paramount in establishing our endogenous gut microbiota, which is strongly affected by diet and has repeatedly been linked with obesity. However, very few studies have addressed the influence of maternal obesity on infant gut microbiota, which may occur either through vertically transmitted microbes or through the dietary habits of the family. Additionally, very little is known about the effect of diet during the complementary feeding period, which is potentially important for gut microbiota development. Here, the gut microbiotas of two different cohorts of infants, born either of a random sample of healthy mothers (n = 114), or of obese mothers (n = 113), were profiled by 16S rRNA amplicon sequencing. Gut microbiota data were compared to breastfeeding patterns and detailed individual dietary recordings to assess effects of the complementary diet. We found that maternal obesity did not influence microbial diversity or specific taxon abundances during the complementary feeding period. Across cohorts, breastfeeding duration and composition of the complementary diet were found to be the major determinants of gut microbiota development. In both cohorts, gut microbial composition and alpha diversity were thus strongly affected by introduction of family foods with high protein and fiber contents. Specifically, intake of meats, cheeses, and Danish rye bread, rich in protein and fiber, were associated with increased alpha diversity. Our results reveal that the transition from early infant feeding to family foods is a major determinant for gut microbiota development. IMPORTANCE The potential influence of maternal obesity on infant gut microbiota may occur either through vertically transmitted microbes or through the dietary habits of the family. Recent studies have suggested that the heritability of obesity may partly be caused by the transmission of “obesogenic” gut microbes. However, the findings presented here suggest that maternal obesity per se does not affect the overall composition of the gut microbiota and its development after introduction of complementary foods. Rather, progression in complementary feeding is found to be the major determinant for gut microbiota establishment. Expanding our understanding of the influence of complementary diet on the development and establishment of the gut microbiota will provide us with the knowledge to tailor a beneficial progression of our intestinal microbial community. American Society for Microbiology 2016-02-10 /pmc/articles/PMC4863607/ /pubmed/27303699 http://dx.doi.org/10.1128/mSphere.00069-15 Text en Copyright © 2016 Laursen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Laursen, Martin Frederik
Andersen, Louise B. B.
Michaelsen, Kim F.
Mølgaard, Christian
Trolle, Ellen
Bahl, Martin Iain
Licht, Tine Rask
Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title_full Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title_fullStr Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title_full_unstemmed Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title_short Infant Gut Microbiota Development Is Driven by Transition to Family Foods Independent of Maternal Obesity
title_sort infant gut microbiota development is driven by transition to family foods independent of maternal obesity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4863607/
https://www.ncbi.nlm.nih.gov/pubmed/27303699
http://dx.doi.org/10.1128/mSphere.00069-15
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