| Literature DB >> 32530732 |
Connor R Fitzpatrick1, Isai Salas-González1,2, Jonathan M Conway1, Omri M Finkel1, Sarah Gilbert1, Dor Russ1, Paulo José Pereira Lima Teixeira3, Jeffery L Dangl1,2,4.
Abstract
Methodological advances over the past two decades have propelled plant microbiome research, allowing the field to comprehensively test ideas proposed over a century ago and generate many new hypotheses. Studying the distribution of microbial taxa and genes across plant habitats has revealed the importance of various ecological and evolutionary forces shaping plant microbiota. In particular, selection imposed by plant habitats strongly shapes the diversity and composition of microbiota and leads to microbial adaptation associated with navigating the plant immune system and utilizing plant-derived resources. Reductionist approaches have demonstrated that the interaction between plant immunity and the plant microbiome is, in fact, bidirectional and that plants, microbiota, and the environment shape a complex chemical dialogue that collectively orchestrates the plantmicrobiome. The next stage in plant microbiome research will require the integration of ecological and reductionist approaches to establish a general understanding of the assembly and function in both natural and managed environments.Keywords: microbial adaptation; microbiome assembly; plant exudates; plant immunity; plant microbiome
Mesh:
Year: 2020 PMID: 32530732 DOI: 10.1146/annurev-micro-022620-014327
Source DB: PubMed Journal: Annu Rev Microbiol ISSN: 0066-4227 Impact factor: 15.500