Phyllosphere Microbiome

Микробиом филлосферы
Sheng Yang He, Reza Sohrabi, Bradley C. Paasch, Julian Liber
2023-03-01

biological controlgnotobiotic systemsphyllosphere functionsphyllosphere microbiotaplant–microbe interactions
The aboveground parts of terrestrial plants are colonized by a variety of microbes that collectively constitute the phyllosphere microbiota. Decades of pioneering work using individual phyllosphere microbes, including commensals and pathogens, have provided foundational knowledge about how individual microbes adapt to the phyllosphere environment and their role in providing biological control against pathogens. Recent studies have revealed a more complete repertoire of phyllosphere microbiota across plant taxa and how plants respond to and regulate the level and composition of phyllosphere microbiota. Importantly, the development of several gnotobiotic systems is allowing causative and mechanistic studies to determine the contributions of microbiota to phyllosphere health and productivity. New insights into how the phyllosphere carries out key biological processes, including photosynthesis, biomass accumulation, reproduction, and defense against biotic and abiotic insults, in either the presence or absence of a normal microbiota could unleash novel plant- and microbiota-based technologies to improve agriculturally relevant traits of crop plants.
1
Decades of work on individual phyllosphere microbes have clarified microbial adaptation to the phyllosphere and their biocontrol roles against pathogens.
2
Development of gnotobiotic systems enables causal, mechanistic studies of microbiota contributions to phyllosphere health and productivity.
3
Recent studies have expanded the known repertoire of phyllosphere microbiota across plant taxa and shown plants can regulate microbiota composition and load.
4
The phyllosphere microbiota consists of diverse microbes colonizing aboveground plant parts and influences plant health and productivity.
5
Understanding microbiota effects on photosynthesis, biomass accumulation, reproduction, and stress defense could enable novel plant- and microbiota-based agricultural technologies.

Phyllosphere microbiota (microbial community colonizing the aboveground parts of terrestrial plants)

Composition, regulation, and functional contributions of the phyllosphere microbiome to plant processes (photosynthesis, biomass accumulation, reproduction, defense) and phyllosphere health and productivity

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Publication Date
2023-03-01
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Authors
Sheng Yang He
Reza Sohrabi
Bradley C. Paasch
Julian Liber
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