Project description:The availability of organic carbon represents a major bottleneck for the development of soil microbial communities and the regulation of microbially-mediated ecosystem processes. However, there is still a lack of knowledge on how the lifestyle and population abundances are physiologically regulated by the availability of energy and organic carbon in soil ecosystems. To date, functional insights into the lifestyles of microbial populations have been limited by the lack of straightforward approaches to the tracking of the active microbial populations. Here, by the use of an comprehensiv metaproteomics and genomics, we reveal that C-availability modulates the lifestyles of bacterial and fungal populations in drylands and determines the compartmentalization of functional niches. This study highlights that the active diversity (evaluated by metaproteomics) but not the diversity of the whole microbial community (estimated by genome profiling) is modulated by the availability of carbon and is connected to the ecosystem functionality in drylands.
Project description:Biocrusts not only are considered ecosystem pioneers, but also have been recognized as a model system for soil ecosystem research. Furthermore, visually distinguishable phenotypic traits and stable physiological characteristics make biocrusts have significant advantages in meta-omics researches. So, we collected four types of biocrusts, applied metaproteome, to explore active microbial metabolism.
2021-08-02 | PXD027685 | iProX
Project description:Soil microbiota in China's drylands
| PRJNA609019 | ENA
Project description:Soil microbiota in China's drylands