High royal jelly production does not impact the gut microbiome of honey bees

Abstract Background Honey bees are not only essential for pollination services, but are also economically important as a source of hive products (e.g., honey, royal jelly, pollen, wax, and propolis) that are used as foods, cosmetics, and alternative medicines. Royal jelly is a popular honey bee prod...

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Main Authors: Megan E. Damico, Olav Rueppell, Zack Shaffer, Bin Han, Kasie Raymann
Format: Article
Language:English
Published: BMC 2021-09-01
Series:Animal Microbiome
Online Access:https://doi.org/10.1186/s42523-021-00124-1
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spelling doaj-12a1196d8a4f42dbb834b1ef575f55b42021-09-19T11:41:29ZengBMCAnimal Microbiome2524-46712021-09-013111110.1186/s42523-021-00124-1High royal jelly production does not impact the gut microbiome of honey beesMegan E. Damico0Olav Rueppell1Zack Shaffer2Bin Han3Kasie Raymann4Biology Department, University of North Carolina at GreensboroDepartment of Biological Sciences, University of AlbertaBiology Department, University of North Carolina at GreensboroInstitute of Apicultural Research, Chinese Academy of Agricultural ScienceBiology Department, University of North Carolina at GreensboroAbstract Background Honey bees are not only essential for pollination services, but are also economically important as a source of hive products (e.g., honey, royal jelly, pollen, wax, and propolis) that are used as foods, cosmetics, and alternative medicines. Royal jelly is a popular honey bee product with multiple potential medicinal properties. To boost royal jelly production, a long-term genetic selection program of Italian honey bees (ITBs) in China has been performed, resulting in honey bee stocks (here referred to as RJBs) that produce an order of magnitude more royal jelly than ITBs. Although multiple studies have investigated the molecular basis of increased royal jelly yields, one factor that has not been considered is the role of honey bee-associated gut microbes. Results Based on the behavioral, morphological, physiological, and neurological differences between RJBs and ITBs, we predicted that the gut microbiome composition of RJBs bees would differ from ITBs. To test this hypothesis, we investigated the bacterial composition of RJB and ITB workers from an urban location and RJBs from a rural location in China. Based on 16S rRNA gene profiling, we did not find any evidence that RJBs possess a unique bacterial gut community when compared to ITBs. However, we observed differences between honey bees from the urban versus rural sites. Conclusions Our results suggest that the environmental factors rather than stock differences are more important in shaping the bacterial composition in honey bee guts. Further studies are needed to investigate if the observed differences in relative abundance of taxa between the urban and rural bees correspond to distinct functional capabilities that impact honey bee health. Because the lifestyle, diet, and other environmental variables are different in rural and urban areas, controlled studies are needed to determine which of these factors are responsible for the observed differences in gut bacterial composition between urban and rural honeybees.https://doi.org/10.1186/s42523-021-00124-1
collection DOAJ
language English
format Article
sources DOAJ
author Megan E. Damico
Olav Rueppell
Zack Shaffer
Bin Han
Kasie Raymann
spellingShingle Megan E. Damico
Olav Rueppell
Zack Shaffer
Bin Han
Kasie Raymann
High royal jelly production does not impact the gut microbiome of honey bees
Animal Microbiome
author_facet Megan E. Damico
Olav Rueppell
Zack Shaffer
Bin Han
Kasie Raymann
author_sort Megan E. Damico
title High royal jelly production does not impact the gut microbiome of honey bees
title_short High royal jelly production does not impact the gut microbiome of honey bees
title_full High royal jelly production does not impact the gut microbiome of honey bees
title_fullStr High royal jelly production does not impact the gut microbiome of honey bees
title_full_unstemmed High royal jelly production does not impact the gut microbiome of honey bees
title_sort high royal jelly production does not impact the gut microbiome of honey bees
publisher BMC
series Animal Microbiome
issn 2524-4671
publishDate 2021-09-01
description Abstract Background Honey bees are not only essential for pollination services, but are also economically important as a source of hive products (e.g., honey, royal jelly, pollen, wax, and propolis) that are used as foods, cosmetics, and alternative medicines. Royal jelly is a popular honey bee product with multiple potential medicinal properties. To boost royal jelly production, a long-term genetic selection program of Italian honey bees (ITBs) in China has been performed, resulting in honey bee stocks (here referred to as RJBs) that produce an order of magnitude more royal jelly than ITBs. Although multiple studies have investigated the molecular basis of increased royal jelly yields, one factor that has not been considered is the role of honey bee-associated gut microbes. Results Based on the behavioral, morphological, physiological, and neurological differences between RJBs and ITBs, we predicted that the gut microbiome composition of RJBs bees would differ from ITBs. To test this hypothesis, we investigated the bacterial composition of RJB and ITB workers from an urban location and RJBs from a rural location in China. Based on 16S rRNA gene profiling, we did not find any evidence that RJBs possess a unique bacterial gut community when compared to ITBs. However, we observed differences between honey bees from the urban versus rural sites. Conclusions Our results suggest that the environmental factors rather than stock differences are more important in shaping the bacterial composition in honey bee guts. Further studies are needed to investigate if the observed differences in relative abundance of taxa between the urban and rural bees correspond to distinct functional capabilities that impact honey bee health. Because the lifestyle, diet, and other environmental variables are different in rural and urban areas, controlled studies are needed to determine which of these factors are responsible for the observed differences in gut bacterial composition between urban and rural honeybees.
url https://doi.org/10.1186/s42523-021-00124-1
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