Nitrogen and sulfur for phosphorus: Lipidome adaptation of anaerobic sulfate- reducing bacteria in phosphorus- deprived conditions

Publication date

2024-06-11

Authors

Ding, Su
Grossi, Vincent
Hopmans, Ellen C.
Bale, Nicole J.
Laureau, Cristiana Cravo-
Sinninghe Damste, Jaap S.ORCID 0000-0002-8683-1854ISNI 0000000390349312

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Understanding how microbial lipidomes adapt to environmental and nutrient stress is crucial for comprehending microbial survival and functionality. Certain anaerobic bacteria can synthesize glycerolipids with ether/ester bonds, yet the complexities of their lipidome remodeling under varying physicochemical and nutritional conditions remain largely unexplored. In this study, we thoroughly examined the lipidome adaptations of Desulfatibacillum alkenivorans strain PF2803T, a mesophilic anaerobic sulfate-reducing bacterium known for its high proportions of alkylglycerol ether lipids in its membrane, under various cultivation conditions including temperature, pH, salinity, and ammonium and phosphorous concentrations. Employing an extensive analytical and computational lipidomic methodology, we identified an assemblage of nearly 400 distinct lipids, including a range of glycerol ether/ester lipids with various polar head groups. Information theory-based analysis revealed that temperature fluctuations and phosphate scarcity profoundly influenced the lipidome's composition, leading to an enhanced diversity and specificity of novel lipids. Notably, phosphorous limitation led to the biosynthesis of novel glucuronosylglycerols and sulfur-containing aminolipids, termed butyramide cysteine glycerols, featuring various ether/ester bonds. This suggests a novel adaptive strategy for anaerobic heterotrophs to thrive under phosphorus-depleted conditions, characterized by a diverse array of nitrogen-and sulfur-containing polar head groups, moving beyond a reliance on conventional nonphospholipid types.

Keywords

Lipidome adaptation, Molecular network, Phosphorus limitation, Sulfate- reducing bacteria

Citation

Ding, S, Grossi, V, Hopmans, E C, Bale, N J, Laureau, C C & Damste, J S S 2024, 'Nitrogen and sulfur for phosphorus : Lipidome adaptation of anaerobic sulfate- reducing bacteria in phosphorus- deprived conditions', Proceedings of the National Academy of Sciences of the United States of America, vol. 121, no. 24, e2400711121. https://doi.org/10.1073/pnas.2400711121