Back to Search
Start Over
Bolstering fitness via CO2fixation and organic carbon uptake: mixotrophs in modern groundwater
- Source :
- The ISME Journal; April 2022, Vol. 16 Issue: 4 p1153-1162, 10p
- Publication Year :
- 2022
-
Abstract
- Current understanding of organic carbon inputs into ecosystems lacking photosynthetic primary production is predicated on data and inferences derived almost entirely from metagenomic analyses. The elevated abundances of putative chemolithoautotrophs in groundwaters suggest that dark CO2fixation is an integral component of subsurface trophic webs. To understand the impact of autotrophically fixed carbon, the flux of CO2-derived carbon through various populations of subsurface microbiota must first be resolved, both quantitatively and temporally. Here we implement novel Stable Isotope Cluster Analysis to render a time-resolved and quantitative evaluation of 13CO2-derived carbon flow through a groundwater community in microcosms stimulated with reduced sulfur compounds. We demonstrate that mixotrophs, not strict autotrophs, were the most abundant active organisms in groundwater microcosms. Species of Hydrogenophaga, Polaromonas, Dechloromonas, and other metabolically versatile mixotrophs drove the production and remineralization of organic carbon. Their activity facilitated the replacement of 43% and 80% of total microbial carbon stores in the groundwater microcosms with 13C in just 21 and 70 days, respectively. The mixotrophs employed different strategies for satisfying their carbon requirements by balancing CO2fixation and uptake of available organic compounds. These different strategies might provide fitness under nutrient-limited conditions, explaining the great abundances of mixotrophs in other oligotrophic habitats, such as the upper ocean and boreal lakes.
Details
- Language :
- English
- ISSN :
- 17517362 and 17517370
- Volume :
- 16
- Issue :
- 4
- Database :
- Supplemental Index
- Journal :
- The ISME Journal
- Publication Type :
- Periodical
- Accession number :
- ejs65211114
- Full Text :
- https://doi.org/10.1038/s41396-021-01163-x