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Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth

The interplay between nutrition and the microbial communities colonizing the gastrointestinal tract (i.e., gut microbiota) determines juvenile growth trajectory. Nutritional deficiencies trigger developmental delays, and an immature gut microbiota is a hallmark of pathologies related to childhood un...

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Autores principales: Consuegra, Jessika, Grenier, Théodore, Baa-Puyoulet, Patrice, Rahioui, Isabelle, Akherraz, Houssam, Gervais, Hugo, Parisot, Nicolas, da Silva, Pedro, Charles, Hubert, Calevro, Federica, Leulier, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112240/
https://www.ncbi.nlm.nih.gov/pubmed/32196485
http://dx.doi.org/10.1371/journal.pbio.3000681
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author Consuegra, Jessika
Grenier, Théodore
Baa-Puyoulet, Patrice
Rahioui, Isabelle
Akherraz, Houssam
Gervais, Hugo
Parisot, Nicolas
da Silva, Pedro
Charles, Hubert
Calevro, Federica
Leulier, François
author_facet Consuegra, Jessika
Grenier, Théodore
Baa-Puyoulet, Patrice
Rahioui, Isabelle
Akherraz, Houssam
Gervais, Hugo
Parisot, Nicolas
da Silva, Pedro
Charles, Hubert
Calevro, Federica
Leulier, François
author_sort Consuegra, Jessika
collection PubMed
description The interplay between nutrition and the microbial communities colonizing the gastrointestinal tract (i.e., gut microbiota) determines juvenile growth trajectory. Nutritional deficiencies trigger developmental delays, and an immature gut microbiota is a hallmark of pathologies related to childhood undernutrition. However, how host-associated bacteria modulate the impact of nutrition on juvenile growth remains elusive. Here, using gnotobiotic Drosophila melanogaster larvae independently associated with Acetobacter pomorum(WJL) (Ap(WJL)) and Lactobacillus plantarum(NC8) (Lp(NC8)), 2 model Drosophila-associated bacteria, we performed a large-scale, systematic nutritional screen based on larval growth in 40 different and precisely controlled nutritional environments. We combined these results with genome-based metabolic network reconstruction to define the biosynthetic capacities of Drosophila germ-free (GF) larvae and its 2 bacterial partners. We first established that Ap(WJL) and Lp(NC8) differentially fulfill the nutritional requirements of the ex-GF larvae and parsed such difference down to individual amino acids, vitamins, other micronutrients, and trace metals. We found that Drosophila-associated bacteria not only fortify the host’s diet with essential nutrients but, in specific instances, functionally compensate for host auxotrophies by either providing a metabolic intermediate or nutrient derivative to the host or by uptaking, concentrating, and delivering contaminant traces of micronutrients. Our systematic work reveals that beyond the molecular dialogue engaged between the host and its bacterial partners, Drosophila and its associated bacteria establish an integrated nutritional network relying on nutrient provision and utilization.
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spelling pubmed-71122402020-04-09 Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth Consuegra, Jessika Grenier, Théodore Baa-Puyoulet, Patrice Rahioui, Isabelle Akherraz, Houssam Gervais, Hugo Parisot, Nicolas da Silva, Pedro Charles, Hubert Calevro, Federica Leulier, François PLoS Biol Research Article The interplay between nutrition and the microbial communities colonizing the gastrointestinal tract (i.e., gut microbiota) determines juvenile growth trajectory. Nutritional deficiencies trigger developmental delays, and an immature gut microbiota is a hallmark of pathologies related to childhood undernutrition. However, how host-associated bacteria modulate the impact of nutrition on juvenile growth remains elusive. Here, using gnotobiotic Drosophila melanogaster larvae independently associated with Acetobacter pomorum(WJL) (Ap(WJL)) and Lactobacillus plantarum(NC8) (Lp(NC8)), 2 model Drosophila-associated bacteria, we performed a large-scale, systematic nutritional screen based on larval growth in 40 different and precisely controlled nutritional environments. We combined these results with genome-based metabolic network reconstruction to define the biosynthetic capacities of Drosophila germ-free (GF) larvae and its 2 bacterial partners. We first established that Ap(WJL) and Lp(NC8) differentially fulfill the nutritional requirements of the ex-GF larvae and parsed such difference down to individual amino acids, vitamins, other micronutrients, and trace metals. We found that Drosophila-associated bacteria not only fortify the host’s diet with essential nutrients but, in specific instances, functionally compensate for host auxotrophies by either providing a metabolic intermediate or nutrient derivative to the host or by uptaking, concentrating, and delivering contaminant traces of micronutrients. Our systematic work reveals that beyond the molecular dialogue engaged between the host and its bacterial partners, Drosophila and its associated bacteria establish an integrated nutritional network relying on nutrient provision and utilization. Public Library of Science 2020-03-20 /pmc/articles/PMC7112240/ /pubmed/32196485 http://dx.doi.org/10.1371/journal.pbio.3000681 Text en © 2020 Consuegra et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Consuegra, Jessika
Grenier, Théodore
Baa-Puyoulet, Patrice
Rahioui, Isabelle
Akherraz, Houssam
Gervais, Hugo
Parisot, Nicolas
da Silva, Pedro
Charles, Hubert
Calevro, Federica
Leulier, François
Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title_full Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title_fullStr Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title_full_unstemmed Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title_short Drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
title_sort drosophila-associated bacteria differentially shape the nutritional requirements of their host during juvenile growth
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7112240/
https://www.ncbi.nlm.nih.gov/pubmed/32196485
http://dx.doi.org/10.1371/journal.pbio.3000681
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