publication . Article . Preprint . 2020

Disentangling the Relative Roles of Vertical Transmission, Subsequent Colonizations, and Diet on Cockroach Microbiome Assembly

Kristjan Germer; Justinn Renelies-Hamilton; David Sillam-Dussès; Kasun H. Bodawatta; Michael Poulsen;
Open Access
  • Published: 01 Dec 2020 Journal: mSphere, volume 6 (eissn: 2379-5042, Copyright policy)
  • Publisher: American Society for Microbiology
  • Country: Denmark
Abstract
When host fitness is dependent on gut microbiota, microbial community flexibility and reproducibility enhance host fitness by allowing fine-tuned environmental tracking and sufficient stability for host traits to evolve. Our findings lend support to the importance of vertically transmitted early-life microbiota as stabilizers through interactions with potential colonizers that may contribute to ensuring that the microbiota aligns within host fitness-enhancing parameters.
Subjects
Medical Subject Headings: digestive system
free text keywords: Molecular Biology, Microbiology, host specificity, microbial inocula, microbiome stability, network analysis, symbiosis, transmission, /dk/atira/pure/researchoutput/pubmedpublicationtype/D016428, Journal Article, /dk/atira/pure/researchoutput/pubmedpublicationtype/D013485, Research Support, Non-U.S. Gov't, Research Article, Host-Microbe Biology, host specificity, microbial inocula, microbiome stability, network analysis, symbiosis, transmission, QR1-502, Ecological network, Microbiome, Colonization, Ecology, Symbiosis, Gut flora, biology.organism_classification, biology, Parenteral transmission, Microbial population biology, Community structure, Cockroach, biology.animal, Transmission (mechanics), law.invention, law, Omnivore, Bacteria, Zoology
Funded by
EC| DEFEAT
Project
DEFEAT
DiseasE-FreE social life without Antibiotics resisTance
  • Funder: European Commission (EC)
  • Project Code: 771349
  • Funding stream: H2020 | ERC | ERC-COG
Validated by funder
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