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Exercise Is More Effective at Altering Gut Microbial Composition and Producing Stable Changes in Lean Mass in Juvenile versus Adult Male F344 Rats
by
González, Antonio
, Knight, Rob
, Mika, Agnieszka
, Van Treuren, Will
, Fleshner, Monika
, Herrera, Jonathan J.
in
Adults
/ Age
/ Animals
/ Antibiotics
/ Anxiety
/ Body composition
/ Body Composition - physiology
/ Body mass
/ Communities
/ Community structure
/ Composition effects
/ Developmental stages
/ Digestive system
/ Digestive tract
/ Ecosystems
/ Environmental changes
/ Exercise
/ Gastrointestinal tract
/ Gastrointestinal Tract - microbiology
/ Gene sequencing
/ Genera
/ Genetic aspects
/ Immune response
/ Intestinal microflora
/ Intestine
/ Juveniles
/ Lactobacillus
/ Lean body mass
/ Life span
/ Male
/ Metabolism
/ Microbial activity
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Neurosciences
/ Obesity
/ Pediatrics
/ Physical activity
/ Physical Conditioning, Animal
/ Physical training
/ Physiological aspects
/ Physiology
/ Proteins
/ Rats
/ Rats, Inbred F344
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ rRNA 16S
/ Stability
/ Studies
/ Taxonomy
/ Volatility
/ Weight control
/ Wheel running
2015
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Exercise Is More Effective at Altering Gut Microbial Composition and Producing Stable Changes in Lean Mass in Juvenile versus Adult Male F344 Rats
by
González, Antonio
, Knight, Rob
, Mika, Agnieszka
, Van Treuren, Will
, Fleshner, Monika
, Herrera, Jonathan J.
in
Adults
/ Age
/ Animals
/ Antibiotics
/ Anxiety
/ Body composition
/ Body Composition - physiology
/ Body mass
/ Communities
/ Community structure
/ Composition effects
/ Developmental stages
/ Digestive system
/ Digestive tract
/ Ecosystems
/ Environmental changes
/ Exercise
/ Gastrointestinal tract
/ Gastrointestinal Tract - microbiology
/ Gene sequencing
/ Genera
/ Genetic aspects
/ Immune response
/ Intestinal microflora
/ Intestine
/ Juveniles
/ Lactobacillus
/ Lean body mass
/ Life span
/ Male
/ Metabolism
/ Microbial activity
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Neurosciences
/ Obesity
/ Pediatrics
/ Physical activity
/ Physical Conditioning, Animal
/ Physical training
/ Physiological aspects
/ Physiology
/ Proteins
/ Rats
/ Rats, Inbred F344
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ rRNA 16S
/ Stability
/ Studies
/ Taxonomy
/ Volatility
/ Weight control
/ Wheel running
2015
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Exercise Is More Effective at Altering Gut Microbial Composition and Producing Stable Changes in Lean Mass in Juvenile versus Adult Male F344 Rats
by
González, Antonio
, Knight, Rob
, Mika, Agnieszka
, Van Treuren, Will
, Fleshner, Monika
, Herrera, Jonathan J.
in
Adults
/ Age
/ Animals
/ Antibiotics
/ Anxiety
/ Body composition
/ Body Composition - physiology
/ Body mass
/ Communities
/ Community structure
/ Composition effects
/ Developmental stages
/ Digestive system
/ Digestive tract
/ Ecosystems
/ Environmental changes
/ Exercise
/ Gastrointestinal tract
/ Gastrointestinal Tract - microbiology
/ Gene sequencing
/ Genera
/ Genetic aspects
/ Immune response
/ Intestinal microflora
/ Intestine
/ Juveniles
/ Lactobacillus
/ Lean body mass
/ Life span
/ Male
/ Metabolism
/ Microbial activity
/ Microbiota
/ Microbiota (Symbiotic organisms)
/ Microorganisms
/ Neurosciences
/ Obesity
/ Pediatrics
/ Physical activity
/ Physical Conditioning, Animal
/ Physical training
/ Physiological aspects
/ Physiology
/ Proteins
/ Rats
/ Rats, Inbred F344
/ RNA, Ribosomal, 16S - genetics
/ Rodents
/ rRNA 16S
/ Stability
/ Studies
/ Taxonomy
/ Volatility
/ Weight control
/ Wheel running
2015
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Exercise Is More Effective at Altering Gut Microbial Composition and Producing Stable Changes in Lean Mass in Juvenile versus Adult Male F344 Rats
Journal Article
Exercise Is More Effective at Altering Gut Microbial Composition and Producing Stable Changes in Lean Mass in Juvenile versus Adult Male F344 Rats
2015
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Overview
The mammalian intestine harbors a complex microbial ecosystem that influences many aspects of host physiology. Exposure to specific microbes early in development affects host metabolism, immune function, and behavior across the lifespan. Just as the physiology of the developing organism undergoes a period of plasticity, the developing microbial ecosystem is characterized by instability and may also be more sensitive to change. Early life thus presents a window of opportunity for manipulations that produce adaptive changes in microbial composition. Recent insights have revealed that increasing physical activity can increase the abundance of beneficial microbial species. We therefore investigated whether six weeks of wheel running initiated in the juvenile period (postnatal day 24) would produce more robust and stable changes in microbial communities versus exercise initiated in adulthood (postnatal day 70) in male F344 rats. 16S rRNA gene sequencing was used to characterize the microbial composition of juvenile versus adult runners and their sedentary counterparts across multiple time points during exercise and following exercise cessation. Alpha diversity measures revealed that the microbial communities of young runners were less even and diverse, a community structure that reflects volatility and malleability. Juvenile onset exercise altered several phyla and, notably, increased Bacteroidetes and decreased Firmicutes, a configuration associated with leanness. At the genus level of taxonomy, exercise altered more genera in juveniles than in the adults and produced patterns associated with adaptive metabolic consequences. Given the potential of these changes to contribute to a lean phenotype, we examined body composition in juvenile versus adult runners. Interestingly, exercise produced persistent increases in lean body mass in juvenile but not adult runners. Taken together, these results indicate that the impact of exercise on gut microbiota composition as well as body composition may depend on the developmental stage during which exercise is initiated.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
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