PLoS Genetics · 2017 · 18 citations · 46 references
GeneticsMolecular BiologyMolecular GeneticsArchaeaGenomicsIntegrase EnzymeUnicellular OrganismMarine GenomicsMolecular EcologyGenomic InversionsLarge Chromosomal InversionsDeep-sea ArchaeaDirected EvolutionDna ReplicationMolecular MicrobiologyBiologyNatural SciencesSynthetic BiologyMicrobiologyMedicineDeep Sea
One of the major mechanisms driving the evolution of all organisms is genomic rearrangement. In hyperthermophilic Archaea of the order Thermococcales, large chromosomal inversions occur so frequently that even closely related genomes are difficult to align. Clearly not resulting from the native homologous recombination machinery, the causative agent of these inversions has remained elusive. We present a model in which genomic inversions are catalyzed by the integrase enzyme encoded by a family of mobile genetic elements. We characterized the integrase from Thermococcus nautili plasmid pTN3 and showed that besides canonical site-specific reactions, it catalyzes low sequence specificity recombination reactions with the same outcome as homologous recombination events on DNA segments as short as 104bp both in vitro and in vivo, in contrast to other known tyrosine recombinases. Through serial culturing, we showed that the integrase-mediated divergence of T. nautili strains occurs at an astonishing rate, with at least four large-scale genomic inversions appearing within 60 generations. Our results and the ubiquitous distribution of pTN3-like integrated elements suggest that a major mechanism of evolution of an entire order of Archaea results from the activity of a selfish mobile genetic element.
46
Enzymatic assembly of DNA molecules up to several hundred kilobases
Daniel G. Gibson, Lei Young, Ray-Yuan Chuang et al. · Nature Methods · 2009 · 10.6K citations
Junzou Hiratsuka, Hiroaki Shimada, Robert F. Whittier et al. · Molecular and General Genetics MGG · 1989 · 1.2K citations
Gibbon genome and the fast karyotype evolution of small apes
Lucia Carbone, R. Alan Harris, Sante Gnerre et al. · Nature · 2014 · 388 citations · Full text