A1 Vertaisarvioitu alkuperäisartikkeli tieteellisessä lehdessä

Novel integrative elements and genomic plasticity in ocean ecosystems




TekijätHackl Thomas, Laurenceau Raphael, Ankenbrand Markus, Bliem Christina, Cariani Zev, Thomas Elaina, Dooley Keven, Arellano Aldo, Hogle Shane, Berube Paul, Leventhal Gabriel, Luo Elaine, Eppley John, Zayed Ahmed, Beaulaurier John, Stepanauskas Ramunas, Sullivan Matthew, DeLong Edward, Biller Steven, Chisholm Sallie W

KustantajaElsevier

Julkaisuvuosi2023

JournalCell

Lehden akronyymiCell

Vuosikerta186

Numero1

Aloitussivu47

Lopetussivu62

DOIhttps://doi.org/10.1016/j.cell.2022.12.006

Verkko-osoitehttps://www.sciencedirect.com/science/article/pii/S0092867422015197


Tiivistelmä

Horizontal gene transfer accelerates microbial evolution. The marine picocyanobacterium Prochlorococcus exhibits high genomic plasticity, yet the underlying mechanisms are elusive. Here, we report a novel family of DNA transposons—“tycheposons”—some of which are viral satellites while others carry cargo, such as nutrient-acquisition genes, which shape the genetic variability in this globally abundant genus. Tycheposons share distinctive mobile-lifecycle-linked hallmark genes, including a deep-branching site-specific tyrosine recombinase. Their excision and integration at tRNA genes appear to drive the remodeling of genomic islands—key reservoirs for flexible genes in bacteria. In a selection experiment, tycheposons harboring a nitrate assimilation cassette were dynamically gained and lost, thereby promoting chromosomal rearrangements and host adaptation. Vesicles and phage particles harvested from seawater are enriched in tycheposons, providing a means for their dispersal in the wild. Similar elements are found in microbes co-occurring with Prochlorococcus, suggesting a common mechanism for microbial diversification in the vast oligotrophic oceans.



Last updated on 2024-26-11 at 20:35