Two-way microscale interactions between immigrant bacteria and plant leaf microbiota as revealed by live imaging

Author:

Steinberg Shifra,Grinberg Maor,Beitelman Michael,Peixoto Julianna,Orevi Tomer,Kashtan NadavORCID

Abstract

AbstractThe phyllosphere – the aerial parts of plants – is an important microbial habitat that is home to diverse microbial communities. The spatial organization of bacterial cells on leaf surfaces is non-random, and correlates with leaf microscopic features. Yet, the role of microscale interactions between bacterial cells therein is not well understood. Here, we ask how interactions between immigrant bacteria and resident microbiota affect the spatial organization of the combined community. By means of live imaging in a simplified in vitro system, we studied the spatial organization, at the micrometer scale, of the bio-control agent Pseudomonas fluorescens A506 and the plant pathogen P. syringae B728a when introduced to pear and bean leaf microbiota (the corresponding native plants of these strains). We found significant co-localization of immigrant and resident microbial cells at distances of a few micrometers, for both strains. Interestingly, this co-localization was in part due to preferential attachment of microbiota cells near newly formed P. fluorescens aggregates. Our results indicate that two-way immigrant bacteria – resident microbiota interactions affect the leaf’s microscale spatial organization, and possibly that of other surface-related microbial communities.

Publisher

Cold Spring Harbor Laboratory

Reference49 articles.

1. Microbiology of the Phyllosphere

2. Phyllosphere microbiology

3. Microbial life in the phyllosphere

4. The phyllosphere: Microbial jungle at the plant–climate interface;Annual Review of Ecology, Evolution, and Systematics,2016

5. Pivotal roles of phyllosphere microorganisms at the interface between plant functioning and atmospheric trace gas dynamics;Frontiers in Microbiology,2015

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