Emergence and evolution of heterocyte glycolipid biosynthesis enabled specialized nitrogen fixation in cyanobacteria

Ruth Pérez Gallego*, F. A.Bastiaan von Meijenfeldt*, Nicole J. Bale, Jaap S. Sinninghe Damsté, Laura Villanueva

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Heterocytes, specialized cells for nitrogen fixation in cyanobacteria, are surrounded by heterocyte glycolipids (HGs), which contribute to protection of the nitrogenase enzyme from oxygen. Diverse HGs preserve in the sediment and have been widely used as evidence of past nitrogen fixation, and structural variation has been suggested to preserve taxonomic information and reflect paleoenvironmental conditions. Here, by comprehensive HG identification and screening of HG biosynthetic gene clusters throughout cyanobacteria, we reconstruct the convergent evolutionary history of HG structure, in which different clades produce the same HGs. We find that rudimentary HG biosynthetic machinery was already present in cyanobacteria before the emergence of heterocytes for functions unrelated to nitrogen fixation and identify HG analogs produced by specific and distantly related nonheterocytous cyanobacteria. These structurally less complex molecules represent precursors of HGs, suggesting that HGs arose after a genomic reorganization and expansion of ancestral biosynthetic machinery, enabling the rise of cyanobacterial heterocytes in an increasingly oxygenated atmosphere. Our results open a chapter in the potential use of diagenetic products of HGs and HG analogs as fossils for reconstructing the evolution of multicellularity and division of labor in cyanobacteria.

Original languageEnglish
Article numbere2413972122
Number of pages11
JournalProceedings of the National Academy of Sciences of the United States of America
Volume122
Issue number5
DOIs
Publication statusPublished - 4 Feb 2025

Bibliographical note

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Copyright © 2025 the Author(s).

Keywords

  • biosynthetic gene cluster
  • heterocyte glycolipid biosynthesis
  • heterocytous cyanobacteria
  • lipid biomarkers
  • nitrogen fixation

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