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What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study

Background: Microbial communities in human milk and those in feces from breastfed infants vary within and across populations. However, few researchers have conducted cross-cultural comparisons between populations, and little is known about whether certain “core” taxa occur normally within or between...

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Autores principales: Lackey, Kimberly A., Williams, Janet E., Meehan, Courtney L., Zachek, Jessica A., Benda, Elizabeth D., Price, William J., Foster, James A., Sellen, Daniel W., Kamau-Mbuthia, Elizabeth W., Kamundia, Egidioh W., Mbugua, Samwel, Moore, Sophie E., Prentice, Andrew M., K., Debela Gindola, Kvist, Linda J., Otoo, Gloria E., García-Carral, Cristina, Jiménez, Esther, Ruiz, Lorena, Rodríguez, Juan M., Pareja, Rossina G., Bode, Lars, McGuire, Mark A., McGuire, Michelle K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479015/
https://www.ncbi.nlm.nih.gov/pubmed/31058158
http://dx.doi.org/10.3389/fnut.2019.00045
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author Lackey, Kimberly A.
Williams, Janet E.
Meehan, Courtney L.
Zachek, Jessica A.
Benda, Elizabeth D.
Price, William J.
Foster, James A.
Sellen, Daniel W.
Kamau-Mbuthia, Elizabeth W.
Kamundia, Egidioh W.
Mbugua, Samwel
Moore, Sophie E.
Prentice, Andrew M.
K., Debela Gindola
Kvist, Linda J.
Otoo, Gloria E.
García-Carral, Cristina
Jiménez, Esther
Ruiz, Lorena
Rodríguez, Juan M.
Pareja, Rossina G.
Bode, Lars
McGuire, Mark A.
McGuire, Michelle K.
author_facet Lackey, Kimberly A.
Williams, Janet E.
Meehan, Courtney L.
Zachek, Jessica A.
Benda, Elizabeth D.
Price, William J.
Foster, James A.
Sellen, Daniel W.
Kamau-Mbuthia, Elizabeth W.
Kamundia, Egidioh W.
Mbugua, Samwel
Moore, Sophie E.
Prentice, Andrew M.
K., Debela Gindola
Kvist, Linda J.
Otoo, Gloria E.
García-Carral, Cristina
Jiménez, Esther
Ruiz, Lorena
Rodríguez, Juan M.
Pareja, Rossina G.
Bode, Lars
McGuire, Mark A.
McGuire, Michelle K.
author_sort Lackey, Kimberly A.
collection PubMed
description Background: Microbial communities in human milk and those in feces from breastfed infants vary within and across populations. However, few researchers have conducted cross-cultural comparisons between populations, and little is known about whether certain “core” taxa occur normally within or between populations and whether variation in milk microbiome is related to variation in infant fecal microbiome. The purpose of this study was to describe microbiomes of milk produced by relatively healthy women living at diverse international sites and compare these to the fecal microbiomes of their relatively healthy infants. Methods: We analyzed milk (n = 394) and infant feces (n = 377) collected from mother/infant dyads living in 11 international sites (2 each in Ethiopia, The Gambia, and the US; 1 each in Ghana, Kenya, Peru, Spain, and Sweden). The V1-V3 region of the bacterial 16S rRNA gene was sequenced to characterize and compare microbial communities within and among cohorts. Results: Core genera in feces were Streptococcus, Escherichia/Shigella, and Veillonella, and in milk were Streptococcus and Staphylococcus, although substantial variability existed within and across cohorts. For instance, relative abundance of Lactobacillus was highest in feces from rural Ethiopia and The Gambia, and lowest in feces from Peru, Spain, Sweden, and the US; Rhizobium was relatively more abundant in milk produced by women in rural Ethiopia than all other cohorts. Bacterial diversity also varied among cohorts. For example, Shannon diversity was higher in feces from Kenya than Ghana and US-California, and higher in rural Ethiopian than Ghana, Peru, Spain, Sweden, and US-California. There were limited associations between individual genera in milk and feces, but community-level analyses suggest strong, positive associations between the complex communities in these sample types. Conclusions: Our data provide additional evidence of within- and among-population differences in milk and infant fecal bacterial community membership and diversity and support for a relationship between the bacterial communities in milk and those of the recipient infant's feces. Additional research is needed to understand environmental, behavioral, and genetic factors driving this variation and association, as well as its significance for acute and chronic maternal and infant health.
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spelling pubmed-64790152019-05-03 What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study Lackey, Kimberly A. Williams, Janet E. Meehan, Courtney L. Zachek, Jessica A. Benda, Elizabeth D. Price, William J. Foster, James A. Sellen, Daniel W. Kamau-Mbuthia, Elizabeth W. Kamundia, Egidioh W. Mbugua, Samwel Moore, Sophie E. Prentice, Andrew M. K., Debela Gindola Kvist, Linda J. Otoo, Gloria E. García-Carral, Cristina Jiménez, Esther Ruiz, Lorena Rodríguez, Juan M. Pareja, Rossina G. Bode, Lars McGuire, Mark A. McGuire, Michelle K. Front Nutr Nutrition Background: Microbial communities in human milk and those in feces from breastfed infants vary within and across populations. However, few researchers have conducted cross-cultural comparisons between populations, and little is known about whether certain “core” taxa occur normally within or between populations and whether variation in milk microbiome is related to variation in infant fecal microbiome. The purpose of this study was to describe microbiomes of milk produced by relatively healthy women living at diverse international sites and compare these to the fecal microbiomes of their relatively healthy infants. Methods: We analyzed milk (n = 394) and infant feces (n = 377) collected from mother/infant dyads living in 11 international sites (2 each in Ethiopia, The Gambia, and the US; 1 each in Ghana, Kenya, Peru, Spain, and Sweden). The V1-V3 region of the bacterial 16S rRNA gene was sequenced to characterize and compare microbial communities within and among cohorts. Results: Core genera in feces were Streptococcus, Escherichia/Shigella, and Veillonella, and in milk were Streptococcus and Staphylococcus, although substantial variability existed within and across cohorts. For instance, relative abundance of Lactobacillus was highest in feces from rural Ethiopia and The Gambia, and lowest in feces from Peru, Spain, Sweden, and the US; Rhizobium was relatively more abundant in milk produced by women in rural Ethiopia than all other cohorts. Bacterial diversity also varied among cohorts. For example, Shannon diversity was higher in feces from Kenya than Ghana and US-California, and higher in rural Ethiopian than Ghana, Peru, Spain, Sweden, and US-California. There were limited associations between individual genera in milk and feces, but community-level analyses suggest strong, positive associations between the complex communities in these sample types. Conclusions: Our data provide additional evidence of within- and among-population differences in milk and infant fecal bacterial community membership and diversity and support for a relationship between the bacterial communities in milk and those of the recipient infant's feces. Additional research is needed to understand environmental, behavioral, and genetic factors driving this variation and association, as well as its significance for acute and chronic maternal and infant health. Frontiers Media S.A. 2019-04-17 /pmc/articles/PMC6479015/ /pubmed/31058158 http://dx.doi.org/10.3389/fnut.2019.00045 Text en Copyright © 2019 Lackey, Williams, Meehan, Zachek, Benda, Price, Foster, Sellen, Kamau-Mbuthia, Kamundia, Mbugua, Moore, Prentice, K., Kvist, Otoo, García-Carral, Jiménez, Ruiz, Rodríguez, Pareja, Bode, McGuire and McGuire. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Nutrition
Lackey, Kimberly A.
Williams, Janet E.
Meehan, Courtney L.
Zachek, Jessica A.
Benda, Elizabeth D.
Price, William J.
Foster, James A.
Sellen, Daniel W.
Kamau-Mbuthia, Elizabeth W.
Kamundia, Egidioh W.
Mbugua, Samwel
Moore, Sophie E.
Prentice, Andrew M.
K., Debela Gindola
Kvist, Linda J.
Otoo, Gloria E.
García-Carral, Cristina
Jiménez, Esther
Ruiz, Lorena
Rodríguez, Juan M.
Pareja, Rossina G.
Bode, Lars
McGuire, Mark A.
McGuire, Michelle K.
What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title_full What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title_fullStr What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title_full_unstemmed What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title_short What's Normal? Microbiomes in Human Milk and Infant Feces Are Related to Each Other but Vary Geographically: The INSPIRE Study
title_sort what's normal? microbiomes in human milk and infant feces are related to each other but vary geographically: the inspire study
topic Nutrition
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479015/
https://www.ncbi.nlm.nih.gov/pubmed/31058158
http://dx.doi.org/10.3389/fnut.2019.00045
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