Project description:Our data indicates that a higher bacterial species diversity is associated with a biologically stable and non-pathogenic co-culture. We established a commensal human skin model to more accurately emulate healthy skin and facilitate future investigations of microbiome-mediated effects on host health. The system is based on a commercial human full-thickness skin model that can be stably colonized with a defined bacterial community. This community comprises ten different bacterial species that encompass three main phyla, Bacillota, Actinomycetota, and Pseudomonadota, in ratios similar to those found on human skin (BAP). The suitability of BAP for skin colonization was evaluated against combinations of two or one phyla (BA, BP, AP, B, A, and P).
Project description:RNASeq of roots from two genotypes of Arabidopsis thaliana plants, Col-0 and myb36-2 grown axenically or with a 41 member bacterial Synthetic Community (SynCom) to explore the interaction between the root diffusion barriers and the root microbiome.
2020-11-01 | GSE151376 | GEO
Project description:Diversity of bacterial community structureof biological soil crusts under different habitats