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Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)

The chrysomelid beetles Podontiaaffinis and Silanafarinosa are members of the subfamilies Galerucinae and Cassidinae, respectively. This study, based on 16S rRNA gene-targeted metagenomics sequencing, reports the core members and differential abundance of bacterial communities in the larvae and adul...

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Autores principales: Song, Sze-Looi, Yong, Hoi-Sen, Chua, Kah-Ooi, Eamsobhana, Praphathip, Lim, Phaik-Eem, Chan, Kok-Gan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pensoft Publishers 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9836631/
https://www.ncbi.nlm.nih.gov/pubmed/36761655
http://dx.doi.org/10.3897/BDJ.10.e87459
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author Song, Sze-Looi
Yong, Hoi-Sen
Chua, Kah-Ooi
Eamsobhana, Praphathip
Lim, Phaik-Eem
Chan, Kok-Gan
author_facet Song, Sze-Looi
Yong, Hoi-Sen
Chua, Kah-Ooi
Eamsobhana, Praphathip
Lim, Phaik-Eem
Chan, Kok-Gan
author_sort Song, Sze-Looi
collection PubMed
description The chrysomelid beetles Podontiaaffinis and Silanafarinosa are members of the subfamilies Galerucinae and Cassidinae, respectively. This study, based on 16S rRNA gene-targeted metagenomics sequencing, reports the core members and differential abundance of bacterial communities in the larvae and adult beetles of P.affinis and the adult S.farinosa. Cyanobacteria/Melainabacteria group was the predominant phylum in the larvae of P.affinis, while Proteobacteria was the predominant phylum in adult P.affinis and S.farinosa. The number of Order, Family, Genus and Species OTUs in the adult stage of P.affinis was higher than that in the larval stage. The bacterial species richness of adult P.affinis was significantly higher than that of adult S.farinosa. Betaproteobacteria was the predominant class in adult P.affinis, Cyanobacteria in the larvae of P.affinis and Gammaproteobacteria in S.farinosa. The larvae and adult beetles of P.affinis and adult S.farinosa had a low number of unique and shared bacterial OTUs (> 5% relative abundance). The differences in the microbiota indicate possible differences in nutrient assimilation, host taxonomy and other stochastic processes. These findings provide new information to our understanding of the bacteria associated with specialist phytophagous chrysomelid beetles and beetles in general.
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spelling pubmed-98366312023-02-08 Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera) Song, Sze-Looi Yong, Hoi-Sen Chua, Kah-Ooi Eamsobhana, Praphathip Lim, Phaik-Eem Chan, Kok-Gan Biodivers Data J Research Article The chrysomelid beetles Podontiaaffinis and Silanafarinosa are members of the subfamilies Galerucinae and Cassidinae, respectively. This study, based on 16S rRNA gene-targeted metagenomics sequencing, reports the core members and differential abundance of bacterial communities in the larvae and adult beetles of P.affinis and the adult S.farinosa. Cyanobacteria/Melainabacteria group was the predominant phylum in the larvae of P.affinis, while Proteobacteria was the predominant phylum in adult P.affinis and S.farinosa. The number of Order, Family, Genus and Species OTUs in the adult stage of P.affinis was higher than that in the larval stage. The bacterial species richness of adult P.affinis was significantly higher than that of adult S.farinosa. Betaproteobacteria was the predominant class in adult P.affinis, Cyanobacteria in the larvae of P.affinis and Gammaproteobacteria in S.farinosa. The larvae and adult beetles of P.affinis and adult S.farinosa had a low number of unique and shared bacterial OTUs (> 5% relative abundance). The differences in the microbiota indicate possible differences in nutrient assimilation, host taxonomy and other stochastic processes. These findings provide new information to our understanding of the bacteria associated with specialist phytophagous chrysomelid beetles and beetles in general. Pensoft Publishers 2022-10-07 /pmc/articles/PMC9836631/ /pubmed/36761655 http://dx.doi.org/10.3897/BDJ.10.e87459 Text en Sze-Looi Song, Hoi-Sen Yong, Kah-Ooi Chua, Praphathip Eamsobhana, Phaik-Eem Lim, Kok-Gan Chan https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Song, Sze-Looi
Yong, Hoi-Sen
Chua, Kah-Ooi
Eamsobhana, Praphathip
Lim, Phaik-Eem
Chan, Kok-Gan
Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title_full Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title_fullStr Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title_full_unstemmed Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title_short Core members and differential abundance of chrysomelid microbiota in the life stages of Podontiaaffinis (Galerucinae) and adult Silanafarinosa (Cassidinae, Coleoptera)
title_sort core members and differential abundance of chrysomelid microbiota in the life stages of podontiaaffinis (galerucinae) and adult silanafarinosa (cassidinae, coleoptera)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9836631/
https://www.ncbi.nlm.nih.gov/pubmed/36761655
http://dx.doi.org/10.3897/BDJ.10.e87459
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