Project description:Flavonoids are stress-inducible metabolites important for plant-microbe interactions. In contrast to their well-known function in initiating rhizobia nodulation in legumes, it is unclear whether and how flavonoids may contribute to plant stress resistance through affecting non-nodulating bacteria in the root microbiome. Here we show how flavonoids preferentially attracts Aeromonadaceae in Arabidopsis thaliana root microbiome and how flavonoid-dependent recruitment of an Aeromona spp. results in enhanced plant Na_H1 resistance.
Project description:Flavonoids are stress-inducible metabolites important for plant-microbe interactions. In contrast to their well-known function in initiating rhizobia nodulation in legumes, it is unclear whether and how flavonoids may contribute to plant stress resistance through affecting non-nodulating bacteria in the root microbiome. Here we show how flavonoids preferentially attracts Aeromonadaceae in Arabidopsis thaliana root microbiome and how flavonoid-dependent recruitment of an Aeromona spp. results in enhanced plant drought resistance.
2022-10-19 | GSE184872 | GEO
Project description:Microbiome and inquiline communities of pitcher plants vary depending on the host plant species
| PRJNA1043418 | ENA
Project description:Microbiome and inquiline communities of pitcher plants vary depending on the host plant species
| PRJNA1041069 | ENA
Project description:Biogeography of pitcher plant fungi in North America
| PRJNA821163 | ENA
Project description:Pitcher plant Darlingtonia california microbe intervention and analysis