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ICLR

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Regulatory protein IclR

ABSTRACT Alicycliphilus denitrificans strain BC and A. denitrificans strain K601 T degrade cyclic
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Regulatory protein IclR

ABSTRACT Here we report on the complete genome sequence of Cupriavidus basilensis OR16 NCAIM BO2487. The genome of strain OR16 contains 7,534 putative coding sequences, including a large set of xenobiotics-degrading genes and a unique glucose dehydrogenase gene that is absent from other
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Transcriptional regulator IclR

ABSTRACT The first complete genome sequence of a p -nitrophenol (PNP)-degrading bacterium is reported here. Pseudomonas putida DLL-E4, a Gram-negative bacterium isolated from methyl-parathion-polluted soil, can utilize PNP as the sole carbon and nitrogen source.
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Transcriptional repressor IclR

Hafnia alvei is an opportunistic pathogen involved in various types of nosocomical infections. The species has been found to inhabit food and mammalian guts. However, its status as an enteropathogen, and whether the food-inhabiting strains could be a source of gastrointestinal infection remains obscure. In this report we present a draft genome of H. alvei strain FB1 isolated from fish paste meatball, a food popular among Malaysian and Chinese populations. The data was generated on the Illumina M
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Regulatory protein, IclR

Closely related pathogens may differ dramatically in host range, but the molecular, genetic, and evolutionary basis for these differences remains unclear. In many Gram- negative bacteria, including the phytopathogen Pseudomonas syringae, type III effectors (TTEs) are essential for pathogenicity, instrumental in structuring host range, and exhibit wide diversity between strains. To capture the dynamic nature of virulence gene repertoires across P. syringae, we screened 11 diverse strains for nove
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Regulatory protein, IclR

ABSTRACTDespite extensive surveillance, food-borneSalmonella entericainfections continue to be a significant burden on public health systems worldwide. As theS. entericaspecies comprises sublineages th
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Transcriptional regulator, IclR

The key genes required forBacillus anthracisto cause anthrax have been acquired recently by horizontal gene transfer. To understand the genetic background for the evolution ofB. anthracisvirulence, we obtained high-redundancy genome sequences of 45 strains of theBacillus cereussensu lato (s.l.) species that were chosen for their genetic diversity within the species based on the existing multilocus sequence t
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