4.8 Article

Rare and localized events stabilize microbial community composition and patterns of spatial self-organization in a fluctuating environment

Journal

ISME JOURNAL
Volume 16, Issue 5, Pages 1453-1463

Publisher

SPRINGERNATURE
DOI: 10.1038/s41396-022-01189-9

Keywords

-

Funding

  1. Swiss National Science Foundation [13003A_149304, 31003A_176101, 310030_188642]
  2. European Research Council [ERC-3200499]
  3. RTD SystemsX.ch project 'MicroscapesX'
  4. Swiss National Science Foundation (SNF) [310030_188642, 31003A_176101] Funding Source: Swiss National Science Foundation (SNF)

Ask authors/readers for more resources

This study explores the growth and spatial self-organization of microbial co-cultures and reveals the emergence of rare and highly localized clusters, referred to as spatial jackpot events, that help stabilize the composition of the microbial community under fluctuating environmental conditions. A mechanistic agent-based mathematical model is used to understand the underlying mechanisms for the formation of these spatial jackpot events.
Spatial self-organization is a hallmark of surface-associated microbial communities that is governed by local environmental conditions and further modified by interspecific interactions. Here, we hypothesize that spatial patterns of microbial cell-types can stabilize the composition of cross-feeding microbial communities under fluctuating environmental conditions. We tested this hypothesis by studying the growth and spatial self-organization of microbial co-cultures consisting of two metabolically interacting strains of the bacterium Pseudomonas stutzeri. We inoculated the co-cultures onto agar surfaces and allowed them to expand (i.e. range expansion) while fluctuating environmental conditions that alter the dependency between the two strains. We alternated between anoxic conditions that induce a mutualistic interaction and oxic conditions that induce a competitive interaction. We observed co-occurrence of both strains in rare and highly localized clusters (referred to as spatial jackpot events) that persist during environmental fluctuations. To resolve the underlying mechanisms for the emergence of spatial jackpot events, we used a mechanistic agent-based mathematical model that resolves growth and dispersal at the scale relevant to individual cells. While co-culture composition varied with the strength of the mutualistic interaction and across environmental fluctuations, the model provides insights into the formation of spatially resolved substrate landscapes with localized niches that support the co-occurrence of the two strains and secure co-culture function. This study highlights that in addition to spatial patterns that emerge in response to environmental fluctuations, localized spatial jackpot events ensure persistence of strains across dynamic conditions.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.8
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available