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  4. Nutrient Stoichiometry Shapes Microbial Community Structure in an Evaporitic Shallow Pond
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Nutrient Stoichiometry Shapes Microbial Community Structure in an Evaporitic Shallow Pond

Full metadata

Title
Nutrient Stoichiometry Shapes Microbial Community Structure in an Evaporitic Shallow Pond
Description

Nutrient availability and ratios can play an important role in shaping microbial communities of freshwater ecosystems. The Cuatro Ciénegas Basin (CCB) in Mexico is a desert oasis where, perhaps paradoxically, high microbial diversity coincides with extreme oligotrophy. To better understand the effects of nutrients on microbial communities in CCB, a mesocosm experiment was implemented in a stoichiometrically imbalanced pond, Lagunita, which has an average TN:TP ratio of 122 (atomic). The experiment had four treatments, each with five spatial replicates – unamended controls and three fertilization treatments with different nitrogen:phosphorus (N:P) regimes (P only, N:P = 16 and N:P = 75 by atoms). In the water column, quantitative PCR of the 16S rRNA gene indicated that P enrichment alone favored proliferation of bacterial taxa with high rRNA gene copy number, consistent with a previously hypothesized but untested connection between rRNA gene copy number and P requirement. Bacterial and microbial eukaryotic community structure was investigated by pyrosequencing of 16S and 18S rRNA genes from the planktonic and surficial sediment samples. Nutrient enrichment shifted the composition of the planktonic community in a treatment-specific manner and promoted the growth of previously rare bacterial taxa at the expense of the more abundant, potentially endemic, taxa. The eukaryotic community was highly enriched with phototrophic populations in the fertilized treatment. The sediment microbial community exhibited high beta diversity among replicates within treatments, which obscured any changes due to fertilization. Overall, these results showed that nutrient stoichiometry can be an important factor in shaping microbial community structure.

Date Created
2017-05-30
Contributors
  • Lee, Zarraz (Author)
  • Poret-Peterson, Amisha (Author)
  • Siefert, Janet L. (Author)
  • Kaul, Drishti (Author)
  • Moustafa, Ahmed (Author)
  • Allen, Andrew E. (Author)
  • Dupont, Chris L. (Author)
  • Eguiarte, Luis E. (Author)
  • Souza, Valeria (Author)
  • Elser, James (Author)
  • College of Liberal Arts and Sciences (Contributor)
  • School of Life Sciences (Contributor)
  • School of Earth and Space Exploration (Contributor)
Resource Type
Text
Extent
15 pages
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
Attribution
Primary Member of
ASU Regents' Professors Open Access Works
Identifier
Digital object identifier: 10.3389/fmicb.2017.00949
Identifier Type
ISSN (International Standard Serial Number)
Identifier Value
1664-1078
Peer-reviewed
Open Access
Yes
Series
FRONTIERS IN MICROBIOLOGY
Handle
https://hdl.handle.net/2286/R.I.44694
Preferred Citation

Lee, Z. M., Poret-Peterson, A. T., Siefert, J. L., Kaul, D., Moustafa, A., Allen, A. E., . . . Elser, J. J. (2017). Nutrient Stoichiometry Shapes Microbial Community Structure in an Evaporitic Shallow Pond. Frontiers in Microbiology, 8. doi:10.3389/fmicb.2017.00949

Level of coding
minimal
Cataloging Standards
asu1
Note
View the article as published at http://journal.frontiersin.org/article/10.3389/fmicb.2017.00949/full
System Created
  • 2017-07-05 10:47:53
System Modified
  • 2025-09-16 11:34:45
  •     
  • 9 months 1 week ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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