Chromosome dynamics and spatial organization during the non-binary cell cycle of a predatory bacterium
Kaljevic, J.; Saaki, T. N. V.; Govers, S. K.; Remy, O.; van Raaphorst, R.; Lamot, T.; Laloux, G.
Show abstract
In bacteria, the dynamics of chromosome replication and segregation are tightly coordinated with cell cycle progression, and largely rely on specific spatiotemporal arrangement of the chromosome. Whereas these key processes are mostly investigated in species that divide by binary fission, they remain mysterious in bacteria producing larger number of descendants. Here, we establish the predatory bacterium Bdellovibrio bacteriovorus as a model to investigate the non-binary processing of a circular chromosome. Our data reveal its extreme compaction in a dense polarized nucleoid. We also show that a first binary-like cycle of replication and asymmetric segregation is followed by multiple asynchronous rounds of replication and progressive ParABS-dependent partitioning, uncoupled from cell division. Surprisingly, ParB localization at the centromere is cell-cycle regulated. Altogether, our findings support a model of complex chromosome choreography, leading to the generation of variable numbers of offspring, highlighting the adaptation of conserved mechanisms to achieve non-binary reproduction in bacteria.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Asymmetric localization of the cell division machinery during Bacillus subtilis sporulation 96%
- Genome concentration limits cell growth and modulates proteome composition in Escherichia coli 95%
- Function and firing of the Streptomyces coelicolor contractile injection system requires the membrane protein CisA 95%
Similar papers in this journal
- Halofilins as Emerging Bactofilin Families of Archaeal Cell Shape Plasticity Orchestrators 96%
- Dosage compensation in Bombyx mori is achieved by partial repression of both Z chromosomes in males 96%
- Molecular convergence by differential domain acquisition is a hallmark of chromosomal passenger complex evolution 96%
Similar papers in this journal
- Identification and characterization of structural and regulatory cell-shape determinants in Haloferax volcanii 96%
- Precise transcription timing by a second-messenger drives a bacterial G1/S cell cycle transition 96%
- A deterministic, c-di-GMP-dependent genetic program ensures the generation of phenotypically similar, symmetric daughter cells during cytokinesis 95%
Similar papers in this journal
- Dynamics of bacterial cell division: Z ring condensation is essential for cytokinesis 97%
- Spatio-temporal control of DNA replication by the pneumococcal cell cycle regulator CcrZ 95%
- Massively-parallel Microbial mRNA Sequencing (M3-Seq) reveals heterogenous behaviors in bacteria at single-cell resolution 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.