Mathee_2008_Proc.Natl.Acad.Sci.U.S.A_105_3100

Reference

Title : Dynamics of Pseudomonas aeruginosa genome evolution - Mathee_2008_Proc.Natl.Acad.Sci.U.S.A_105_3100
Author(s) : Mathee K , Narasimhan G , Valdes C , Qiu X , Matewish JM , Koehrsen M , Rokas A , Yandava CN , Engels R , Zeng E , Olavarietta R , Doud M , Smith RS , Montgomery P , White JR , Godfrey PA , Kodira C , Birren B , Galagan JE , Lory S
Ref : Proc Natl Acad Sci U S A , 105 :3100 , 2008
Abstract :

One of the hallmarks of the Gram-negative bacterium Pseudomonas aeruginosa is its ability to thrive in diverse environments that includes humans with a variety of debilitating diseases or immune deficiencies. Here we report the complete sequence and comparative analysis of the genomes of two representative P. aeruginosa strains isolated from cystic fibrosis (CF) patients whose genetic disorder predisposes them to infections by this pathogen. The comparison of the genomes of the two CF strains with those of other P. aeruginosa presents a picture of a mosaic genome, consisting of a conserved core component, interrupted in each strain by combinations of specific blocks of genes. These strain-specific segments of the genome are found in limited chromosomal locations, referred to as regions of genomic plasticity. The ability of P. aeruginosa to shape its genomic composition to favor survival in the widest range of environmental reservoirs, with corresponding enhancement of its metabolic capacity is supported by the identification of a genomic island in one of the sequenced CF isolates, encoding enzymes capable of degrading terpenoids produced by trees. This work suggests that niche adaptation is a major evolutionary force influencing the composition of bacterial genomes. Unlike genome reduction seen in host-adapted bacterial pathogens, the genetic capacity of P. aeruginosa is determined by the ability of individual strains to acquire or discard genomic segments, giving rise to strains with customized genomic repertoires. Consequently, this organism can survive in a wide range of environmental reservoirs that can serve as sources of the infecting organisms.

PubMedSearch : Mathee_2008_Proc.Natl.Acad.Sci.U.S.A_105_3100
PubMedID: 18287045
Gene_locus related to this paper: pseae-a3kt39 , pseae-a3l6v1 , pseae-clipa , pseae-CPO , pseae-llipa , pseae-metx , pseae-PA0201 , pseae-PA0231 , pseae-PA0308 , pseae-PA0368 , pseae-PA0480 , pseae-PA0502 , pseae-PA0543 , pseae-PA0599 , pseae-PA1166 , pseae-PA1239 , pseae-PA1291 , pseae-PA1304 , pseae-PA1510 , pseae-PA1558 , pseae-PA1597 , pseae-PA1990 , pseae-PA2086 , pseae-PA2098 , pseae-PA2302 , pseae-PA2425 , pseae-PA2451 , pseae-PA2540 , pseae-PA2682 , pseae-PA2689 , pseae-PA2745 , pseae-PA2764 , pseae-PA2927 , pseae-PA2934 , pseae-PA2949 , pseae-PA3132 , pseae-PA3301 , pseae-PA3324 , pseae-PA3327 , pseae-PA3429 , pseae-PA3586 , pseae-PA3628 , pseae-PA3695 , pseae-PA3859 , pseae-PA3994 , pseae-PA4152 , pseae-PA4968 , pseae-PA5080 , pseae-PHAC2 , pseae-phaD , pseae-phag , pseae-PVDD , pseae-Q8G8C7 , pseae-Q8G8T6 , pseae-Q9APW4 , pseae-rhla , pseae-q9i252

Related information

Gene_locus pseae-a3kt39    pseae-a3l6v1    pseae-clipa    pseae-CPO    pseae-llipa    pseae-metx    pseae-PA0201    pseae-PA0231    pseae-PA0308    pseae-PA0368    pseae-PA0480    pseae-PA0502    pseae-PA0543    pseae-PA0599    pseae-PA1166    pseae-PA1239    pseae-PA1291    pseae-PA1304    pseae-PA1510    pseae-PA1558    pseae-PA1597    pseae-PA1990    pseae-PA2086    pseae-PA2098    pseae-PA2302    pseae-PA2425    pseae-PA2451    pseae-PA2540    pseae-PA2682    pseae-PA2689    pseae-PA2745    pseae-PA2764    pseae-PA2927    pseae-PA2934    pseae-PA2949    pseae-PA3132    pseae-PA3301    pseae-PA3324    pseae-PA3327    pseae-PA3429    pseae-PA3586    pseae-PA3628    pseae-PA3695    pseae-PA3859    pseae-PA3994    pseae-PA4152    pseae-PA4968    pseae-PA5080    pseae-PHAC2    pseae-phaD    pseae-phag    pseae-PVDD    pseae-Q8G8C7    pseae-Q8G8T6    pseae-Q9APW4    pseae-rhla    pseae-q9i252

Citations formats

Mathee K, Narasimhan G, Valdes C, Qiu X, Matewish JM, Koehrsen M, Rokas A, Yandava CN, Engels R, Zeng E, Olavarietta R, Doud M, Smith RS, Montgomery P, White JR, Godfrey PA, Kodira C, Birren B, Galagan JE, Lory S (2008)
Dynamics of Pseudomonas aeruginosa genome evolution
Proc Natl Acad Sci U S A 105 :3100

Mathee K, Narasimhan G, Valdes C, Qiu X, Matewish JM, Koehrsen M, Rokas A, Yandava CN, Engels R, Zeng E, Olavarietta R, Doud M, Smith RS, Montgomery P, White JR, Godfrey PA, Kodira C, Birren B, Galagan JE, Lory S (2008)
Proc Natl Acad Sci U S A 105 :3100