https://doi.org/10.25678/0003F0

Data for: Light limitation increases multidimensional trait evenness in phytoplankton populations

Individual-level variation arising from responses to environmental gradients influences population and community dynamics. How such responses empirically relate to the mechanisms that govern species coexistence is, however, poorly understood. Previous results from lake phytoplankton communities suggested that the evenness of organismal traits in multiple dimensions increases with resource limitation, possibly due to resource partitioning at the individual level. Here we experimentally tested the emergence of this pattern by growing two phytoplankton species (Pseudokirchneriella subcapitata and Microcystis aeruginosa) under a gradient of light intensity, in monoculture and jointly. Under low light (resource) conditions, the populations diversified into a wide range of phenotypes, which were evenly distributed in multidimensional trait space (defined by four pigment-related trait dimensions), consistent with the observed field pattern. Our interpretation is that under conditions of light limitation, individual phytoplankton cells alter photosynthetic traits to reduce overlap in light acquisition, acquiring unexploited resources and thereby likely maximising individual success. Our results provide prime experimental evidence that resource limitation increases the evenness of conspecific and heterospecific microbial phenotypes along trait axes, advancing our understanding of trait-based coexistence.

Data and Resources

Citation

This Data Package

Fontana, S., Thomas, M. K., Reyes, M., & Pomati, F. (2021). Data for: Light limitation increases multidimensional trait evenness in phytoplankton populations (Version 1.0) [Data set]. Eawag: Swiss Federal Institute of Aquatic Science and Technology. https://doi.org/10.25678/0003F0

The associated article

Fontana, S., Thomas, M. K., Reyes, M., & Pomati, F. (2019). Light limitation increases multidimensional trait evenness in phytoplankton populations. The ISME Journal, 13(5), 1159–1167. https://doi.org/10.1038/s41396-018-0320-9

Metadata

Open Data Open Data
Author
  • Fontana, Simone
  • Thomas, Mridul K.
  • Reyes, Marta
  • Pomati, Francesco
Keywords light limitation,phytoplankton,photosynthetic traits
Variables
  • count
  • flow_cytometric_cell_counts
  • PAR
Timerange
  • *
Review Level none
Curator Pomati, Francesco
Contact Francesco.Pomati@eawag.ch
DOI 10.25678/0003F0