Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A plasmid-encoded type IIB restriction-modification system in cyanobacteria blocks conjugative gene transfer

View through CrossRef
Abstract Anabaena (aka Trichormus ) variabilis ATCC 29413 is a filamentous, heterocyst-forming cyanobacterium with a 6.36 Mb chromosome, four circular plasmids, A (366 kb), B (35.8 kb), C (301 kb), and D (27 kb), and a 37-kb excision element. The hsdRMS genes on plasmid D may encode a type IIB restriction-modification system that protects the cells from invasion by foreign DNA. A variant of A. variabilis , strain FD, lacking plasmid D, grew with the same generation time as A. variabilis ATCC 29413, which stably maintained plasmid D. Nostoc sp. PCC 7120 and Nostoc sp. M131, which lack plasmid D and hsdRMS , grew similarly with a synthetic replicating plasmid, with or without added hsdRMS genes. Although the natural plasmid D was very stable in A. variabilis ATCC 29413, the synthetic plasmid was easily lost in Nostoc sp. PCC 7120 and Nostoc sp. M131, with or without hsdRMS . Strain FD, lacking plasmid D, and an A. variabilis hsdRM deletion mutant were much better hosts for conjugation of a non-replicative, integrative plasmid than wild-type A. variabilis . The conjugative nonreplicating plasmid formed circular molecules in strain FD and in the A. variabilis hsdRM deletion mutant, allowing for a high percentage of single-recombinant exconjugants. In contrast, the relatively few exconjugants in A. variabilis were all double recombinants, suggesting that the restriction-modification system encoded by the genes on plasmid D resulted in only linear molecules that recombined by double crossovers. Expression of the hsdRMS genes in strains Nostoc sp. PCC 7120 and Nostoc sp. M131 drastically reduced conjugation frequency and recombination of a non-replicative plasmid. Together, these data indicate that HsdRMS acts as a defense against the successful transfer of foreign DNA into these cyanobacteria, likely by double-stranded DNA cleavage. Many cyanobacterial strains that are not amenable to gene transfer might have similar restriction-modification systems that lead to cleavage and subsequent degradation of foreign DNA. Although such systems inhibit gene transfer, they may yield a high proportion, although a low number, of gene replacement recombinants.
Title: A plasmid-encoded type IIB restriction-modification system in cyanobacteria blocks conjugative gene transfer
Description:
Abstract Anabaena (aka Trichormus ) variabilis ATCC 29413 is a filamentous, heterocyst-forming cyanobacterium with a 6.
36 Mb chromosome, four circular plasmids, A (366 kb), B (35.
8 kb), C (301 kb), and D (27 kb), and a 37-kb excision element.
The hsdRMS genes on plasmid D may encode a type IIB restriction-modification system that protects the cells from invasion by foreign DNA.
A variant of A.
variabilis , strain FD, lacking plasmid D, grew with the same generation time as A.
variabilis ATCC 29413, which stably maintained plasmid D.
Nostoc sp.
PCC 7120 and Nostoc sp.
M131, which lack plasmid D and hsdRMS , grew similarly with a synthetic replicating plasmid, with or without added hsdRMS genes.
Although the natural plasmid D was very stable in A.
variabilis ATCC 29413, the synthetic plasmid was easily lost in Nostoc sp.
PCC 7120 and Nostoc sp.
M131, with or without hsdRMS .
Strain FD, lacking plasmid D, and an A.
variabilis hsdRM deletion mutant were much better hosts for conjugation of a non-replicative, integrative plasmid than wild-type A.
variabilis .
The conjugative nonreplicating plasmid formed circular molecules in strain FD and in the A.
variabilis hsdRM deletion mutant, allowing for a high percentage of single-recombinant exconjugants.
In contrast, the relatively few exconjugants in A.
variabilis were all double recombinants, suggesting that the restriction-modification system encoded by the genes on plasmid D resulted in only linear molecules that recombined by double crossovers.
Expression of the hsdRMS genes in strains Nostoc sp.
PCC 7120 and Nostoc sp.
M131 drastically reduced conjugation frequency and recombination of a non-replicative plasmid.
Together, these data indicate that HsdRMS acts as a defense against the successful transfer of foreign DNA into these cyanobacteria, likely by double-stranded DNA cleavage.
Many cyanobacterial strains that are not amenable to gene transfer might have similar restriction-modification systems that lead to cleavage and subsequent degradation of foreign DNA.
Although such systems inhibit gene transfer, they may yield a high proportion, although a low number, of gene replacement recombinants.

Related Results

Observation and interpretation of type IIB supernova explosions
Observation and interpretation of type IIB supernova explosions
Core-collapse supernovae (CC-SNe) explosions represent the final demise of massive stars. Among the various types, there is a group of relatively infrequent CC-SNe termed type IIb,...
Experimental and Mathematical Models of Escherichia coli Plasmid Transfer In Vitro and In Vivo
Experimental and Mathematical Models of Escherichia coli Plasmid Transfer In Vitro and In Vivo
Little is known about the factors that govern plasmid transfers in natural ecosystems such as the gut. The consistent finding by earlier workers that plasmid transfer in the normal...
plsMD: A plasmid reconstruction tool from short-read assemblies
plsMD: A plasmid reconstruction tool from short-read assemblies
Abstract While whole genome sequencing (WGS) has become a cornerstone of antimicrobial resistance (AMR) surveillance, the reconstruction of plasmid sequences from s...
Molecular Characterization of Plasmid-Mediated Non-O157 Verotoxigenic Escherichia coli Isolated from Infants and Children with Diarrhea
Molecular Characterization of Plasmid-Mediated Non-O157 Verotoxigenic Escherichia coli Isolated from Infants and Children with Diarrhea
A significant increase in the incidence of non-O157 verotoxigenic Escherichia coli (VTEC) infections have become a serious health issues, and this situation is worsening due to the...
Transcriptional regulation of tissue-specific expression of the platelet [alpha]IIb gene
Transcriptional regulation of tissue-specific expression of the platelet [alpha]IIb gene
The integrin [alpha]IIb gene is expressed in a megakaryocyte-specific fashion. This dissertation study has characterized an Sp1-binding silencer element between -145 bp and -125 bp...
Limits to evolutionary rescue by conjugative plasmids
Limits to evolutionary rescue by conjugative plasmids
Abstract Plasmids may carry genes coding for beneficial traits and thus contribute to adaptation of bacterial populations to environmental stress. Conjugative plasm...
Cyanobacterial taxonomy, metabolism, and cyanophage association in dark and anoxic sediment
Cyanobacterial taxonomy, metabolism, and cyanophage association in dark and anoxic sediment
Abstract Background Cyanobacteria are photosynthetic ancient bacteria ubiquitous in terrestrial and aquatic environments. Even though they carry a photosynthesis apparatus ...
Diverse and abundant phages exploit conjugative plasmids
Diverse and abundant phages exploit conjugative plasmids
Summary Phages exert profound evolutionary pressure on bacteria by interacting with receptors on the cell surface to initiate infection. While the majority of phage...

Back to Top