Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge

Background: Early gut microbial colonization is important for postnatal growth and immune development of the chicken. However, at present, commercial chickens are hatched and raised without adult hens, thus are cut off from the microbiota transfer between hens and chicks. In this study, we compare...

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Huvudskapare: Roy, Ayan
Materialtyp: Artikel
Språk:engelska
Publicerad: Microbiome 2025
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Länkar:https://repository.auw.edu.bd/handle/123456789/778
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author Roy, Ayan
author_facet Roy, Ayan
author_sort Roy, Ayan
collection institutional Repository
description Background: Early gut microbial colonization is important for postnatal growth and immune development of the chicken. However, at present, commercial chickens are hatched and raised without adult hens, thus are cut off from the microbiota transfer between hens and chicks. In this study, we compared the gut microbiota composition between hen-reared and separately reared chicks, and its impact on the resistance to H9N2 avian influenza virus, with the motive of investigating the impact of this cutoff in microbiota transfer. Results: We used the 16SrRNA sequencing method to assess the composition of the gut microbiota in chicks rep- resented by three hen-reared groups and one separately reared group. We found that the diversity of gut microbes in the chicks from the three hen-reared groups was more abundant than in the separately reared group, both at the phylum and genus levels. Our findings highlight the importance of early parental care in influencing the establish- ment of gut microbiota in the early life of chicks. SourceTracker analysis showed that the feather and cloaca micro- biota of hens are the main sources of gut microbiota of chicks. After H9N2 exposure, the viral infection lasted longer in the separately reared chicks, with the viral titers in their oropharyngeal swabs being higher compared to the hen-reared chicks at day 5 post-infection. Interestingly, our results revealed that the gut microbiota of the hen-reared chicks was more stable after H9N2 infection in comparison to that of the separately reared chicks. Conclusions: Microbiota transfer between the hens and their chicks promotes the establishment of a balanced and diverse microbiota in the early life of the chicks and improves microbiota stability after H9N2 challenge. These findings advance our understanding of the protective role of gut microbiota in the early life of chicks and should be instru- mental in improving chick rearing in the commercial poultry industry.
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spelling 123456789-7782026-02-18T06:15:09Z Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge Roy, Ayan Gut microbiota, Maternal microbial transmission, H9N2 avian influenza virus, Disease resistance Background: Early gut microbial colonization is important for postnatal growth and immune development of the chicken. However, at present, commercial chickens are hatched and raised without adult hens, thus are cut off from the microbiota transfer between hens and chicks. In this study, we compared the gut microbiota composition between hen-reared and separately reared chicks, and its impact on the resistance to H9N2 avian influenza virus, with the motive of investigating the impact of this cutoff in microbiota transfer. Results: We used the 16SrRNA sequencing method to assess the composition of the gut microbiota in chicks rep- resented by three hen-reared groups and one separately reared group. We found that the diversity of gut microbes in the chicks from the three hen-reared groups was more abundant than in the separately reared group, both at the phylum and genus levels. Our findings highlight the importance of early parental care in influencing the establish- ment of gut microbiota in the early life of chicks. SourceTracker analysis showed that the feather and cloaca micro- biota of hens are the main sources of gut microbiota of chicks. After H9N2 exposure, the viral infection lasted longer in the separately reared chicks, with the viral titers in their oropharyngeal swabs being higher compared to the hen-reared chicks at day 5 post-infection. Interestingly, our results revealed that the gut microbiota of the hen-reared chicks was more stable after H9N2 infection in comparison to that of the separately reared chicks. Conclusions: Microbiota transfer between the hens and their chicks promotes the establishment of a balanced and diverse microbiota in the early life of the chicks and improves microbiota stability after H9N2 challenge. These findings advance our understanding of the protective role of gut microbiota in the early life of chicks and should be instru- mental in improving chick rearing in the commercial poultry industry. 2025-07-24T07:38:30Z 2025-07-24T07:38:30Z 2022 Article https://repository.auw.edu.bd/handle/123456789/778 en application/pdf Microbiome
spellingShingle Gut microbiota, Maternal microbial transmission, H9N2 avian influenza virus, Disease resistance
Roy, Ayan
Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title_full Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title_fullStr Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title_full_unstemmed Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title_short Hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after H9N2 challenge
title_sort hen raising helps chicks establish gut microbiota in their early life and improve microbiota stability after h9n2 challenge
topic Gut microbiota, Maternal microbial transmission, H9N2 avian influenza virus, Disease resistance
url https://repository.auw.edu.bd/handle/123456789/778
work_keys_str_mv AT royayan henraisinghelpschicksestablishgutmicrobiotaintheirearlylifeandimprovemicrobiotastabilityafterh9n2challenge