The heritable natural competency trait of Burkholderia pseudomallei in other Burkholderia species through comE and crp
Natural competency requires uptake of exogenous DNA from the environment and the integration of that DNA into recipient bacteria can be used for DNA-repair or genetic diversification. The Burkholderia genus is unique in that only some of the species and strains are naturally competent. We identified...
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Veröffentlicht in: | Scientific reports 2018-08, Vol.8 (1), p.12422-10, Article 12422 |
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Zusammenfassung: | Natural competency requires uptake of exogenous DNA from the environment and the integration of that DNA into recipient bacteria can be used for DNA-repair or genetic diversification. The
Burkholderia
genus is unique in that only some of the species and strains are naturally competent. We identified and characterized two genes,
comE
and
crp
, from naturally competent
B
.
pseudomallei
1026b that play a role in DNA uptake and catabolism. Single-copies of rhamnose-inducible
comE
and
crp
genes were integrated into a
Tn7
attachment-site in non-naturally competent
Burkholderia
including pathogens
B
.
pseudomallei
K96243,
B
.
cenocepacia
K56-2, and
B
.
mallei
ATCC23344. Strains expressing
comE
or
crp
were assayed for their ability to uptake and catabolize DNA. ComE and Crp allowed non-naturally competent
Burkholderia
species to catabolize DNA, uptake exogenous
gfp
DNA and express GFP. Furthermore, we used synthetic
comE
and
crp
to expand the utility of the λ-red recombineering system for genetic manipulation of non-competent
Burkholderia
species. A newly constructed vector, pKaKa4, was used to mutate the aspartate semialdehyde dehydrogenase (
asd
) gene in four
B
.
mallei
strains, leading to the complete attenuation of these tier-1 select-agents. These strains have been excluded from select-agent regulations and will be of great interest to the field. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-018-30853-4 |