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PMID: 22258099 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Variation in local carrying capacity and the individual fate of bacterial colonizers in the phyllosphere.

The ISME journal ·Vol. 6 ·No. 4 ·2012-04-00 ·Pages 756-65

Remus-Emsermann MN, Tecon R, Kowalchuk GA, Leveau JH

Abstract

Using a phyllosphere model system, we demonstrated that the term 'carrying capacity', as it is commonly used in microbial ecology, needs to be understood as the sum of many 'local carrying capacities' in order to better explain and predict the course and outcome of bacterial colonization of an environment. Using a green fluorescent protein-based bioreporter system for the quantification of reproductive success (RS) in individual Erwinia herbicola cells, we were able to reconstruct the contribution of individual immigrants to bacterial population sizes on leaves. Our analysis revealed that plant foliage represents to bacteria an environment where individual fate is determined by the local carrying capacity of the site where an immigrant cell lands. With increasing inoculation densities, the RS of most immigrants declined, suggesting that local carrying capacity under the tested conditions was linked to local nutrient availability. Fitting the observed experimental data to an adapted model of phyllosphere colonization indicated that there might exist three types of sites on leaves, which differ in their frequency of occurrence and local carrying capacity. Specifically, our data were consistent with a leaf environment that is characterized by few sites where individual immigrants can produce high numbers of offspring, whereas the remainder of the leaf offered an equal number of sites with low and medium RS. Our findings contribute to a bottom-up understanding of bacterial colonization of leaf surfaces, which includes a quantifiable role of chance in the experience at the individual level and in the outcome at the population level.

MeSH Terms
Ecosystem Fabaceae/microbiology Models, Biological Pantoea/growth & development Plant Leaves/microbiology
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Remus-Emsermann Mitja N P
Department of Microbial Ecology, Netherlands Institute of Ecology, NIOO-KNAW, Wageningen, The Netherlands.
Tecon Robin
Kowalchuk George A
Leveau Johan H J
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Article Info
Journal
The ISME journal
Abbr.
ISME J
ISSN
1751-7370
Published
2012-04-00
Epub
2012-00-19
Pages
756-65
Language
English
Region
England
NLM ID
101301086
PMCID
PMC3309366
Subset
IM
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