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Honeybee gut microbiota promotes host weight gain via bacterial metabolism and hormonal signaling
by
郑浩
, Powell, J. Elijah
, Zheng, Hao
, Steele, Margaret I.
, Dietrich, Carsten
, Moran, Nancy A.
in
Animals
/ Bacteria
/ Bacteria - metabolism
/ Bees
/ Bees - microbiology
/ Bees - physiology
/ Biodegradation
/ Biological Sciences
/ Body Weight
/ Body weight gain
/ Compartments
/ Digestive system
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal tract
/ Hemolymph
/ Hormones
/ Host plants
/ Insect Hormones - metabolism
/ Insulin
/ Intestinal microflora
/ Intestine
/ Metabolism
/ Metabolites
/ Metabolomics
/ Microbiology
/ Microorganisms
/ pH effects
/ Pollen
/ Polymers
/ Redox potential
/ Signal transduction
/ Signal Transduction - physiology
/ Taste stimuli
/ Vitellogenin
2017
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Honeybee gut microbiota promotes host weight gain via bacterial metabolism and hormonal signaling
by
郑浩
, Powell, J. Elijah
, Zheng, Hao
, Steele, Margaret I.
, Dietrich, Carsten
, Moran, Nancy A.
in
Animals
/ Bacteria
/ Bacteria - metabolism
/ Bees
/ Bees - microbiology
/ Bees - physiology
/ Biodegradation
/ Biological Sciences
/ Body Weight
/ Body weight gain
/ Compartments
/ Digestive system
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal tract
/ Hemolymph
/ Hormones
/ Host plants
/ Insect Hormones - metabolism
/ Insulin
/ Intestinal microflora
/ Intestine
/ Metabolism
/ Metabolites
/ Metabolomics
/ Microbiology
/ Microorganisms
/ pH effects
/ Pollen
/ Polymers
/ Redox potential
/ Signal transduction
/ Signal Transduction - physiology
/ Taste stimuli
/ Vitellogenin
2017
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Honeybee gut microbiota promotes host weight gain via bacterial metabolism and hormonal signaling
by
郑浩
, Powell, J. Elijah
, Zheng, Hao
, Steele, Margaret I.
, Dietrich, Carsten
, Moran, Nancy A.
in
Animals
/ Bacteria
/ Bacteria - metabolism
/ Bees
/ Bees - microbiology
/ Bees - physiology
/ Biodegradation
/ Biological Sciences
/ Body Weight
/ Body weight gain
/ Compartments
/ Digestive system
/ Fatty acids
/ Gastrointestinal Microbiome - physiology
/ Gastrointestinal tract
/ Hemolymph
/ Hormones
/ Host plants
/ Insect Hormones - metabolism
/ Insulin
/ Intestinal microflora
/ Intestine
/ Metabolism
/ Metabolites
/ Metabolomics
/ Microbiology
/ Microorganisms
/ pH effects
/ Pollen
/ Polymers
/ Redox potential
/ Signal transduction
/ Signal Transduction - physiology
/ Taste stimuli
/ Vitellogenin
2017
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Honeybee gut microbiota promotes host weight gain via bacterial metabolism and hormonal signaling
Journal Article
Honeybee gut microbiota promotes host weight gain via bacterial metabolism and hormonal signaling
郑浩,
2017
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Overview
Social bees harbor a simple and specialized microbiota that is spatially organized into different gut compartments. Recent results on the potential involvement of bee gut communities in pathogen protection and nutritional function have drawn attention to the impact of the microbiota on bee health. However, the contributions of gut microbiota to host physiology have yet to be investigated. Here we show that the gut microbiota promotes weight gain of both whole body and the gut in individual honey bees. This effect is likely mediated by changes in host vitellogenin, insulin signaling, and gustatory response. We found that microbial metabolism markedly reduces gut pH and redox potential through the production of shortchain fatty acids and that the bacteria adjacent to the gut wall form an oxygen gradient within the intestine. The short-chain fatty acid profile contributed by dominant gut species was confirmed in vitro. Furthermore, metabolomic analyses revealed that the gut community has striking impacts on the metabolic profiles of the gut compartments and the hemolymph, suggesting that gut bacteria degrade plant polymers from pollen and that the resulting metabolites contribute to host nutrition. Our results demonstrate how microbial metabolism affects bee growth, hormonal signaling, behavior, and gut physicochemical conditions. These findings indicate that the bee gut microbiota has basic roles similar to those found in some other animals and thus provides a model in studies of host–microbe interactions.
Publisher
National Academy of Sciences
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