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Tytuł pozycji:

Genetic variations in the pgm locus among natural isolates of Yersinia pestis.

Tytuł:
Genetic variations in the pgm locus among natural isolates of Yersinia pestis.
Autorzy:
Tong ZZ; Beijing Genomics Institute, Chinese Academy of Sciences, Beijing 101300, P. R. China.
Zhou DS
Song YJ
Zhang L
Pei D
Han YP
Pang X
Li M
Cui BZ
Wang J
Guo ZB
Qi ZZ
Jin LX
Zhai JH
Du ZM
Wang XY
Wang J
Huang PT
Yang HM
Yang RF
Źródło:
The Journal of general and applied microbiology [J Gen Appl Microbiol] 2005 Feb; Vol. 51 (1), pp. 11-9.
Typ publikacji:
Comparative Study; Journal Article; Research Support, Non-U.S. Gov't
Język:
English
Imprint Name(s):
Publication: Tokyo : Microbiology Research Foundation
Original Publication: Tokyo, Institute of Applied Microbiology, Univ. of Tokyo.
MeSH Terms:
Genes, Bacterial*
Yersinia pestis/*genetics
Alleles ; Base Sequence ; China ; DNA Transposable Elements ; DNA, Bacterial/genetics ; Genetic Variation ; Genomic Instability ; Genomic Islands ; Humans ; Phenotype ; Pigmentation/genetics ; Polymerase Chain Reaction ; Pseudogenes ; Yersinia pestis/classification ; Yersinia pestis/isolation & purification ; Yersinia pseudotuberculosis/classification ; Yersinia pseudotuberculosis/genetics
Substance Nomenclature:
0 (DNA Transposable Elements)
0 (DNA, Bacterial)
Entry Date(s):
Date Created: 20050503 Date Completed: 20050630 Latest Revision: 20191109
Update Code:
20240104
DOI:
10.2323/jgam.51.11
PMID:
15864756
Czasopismo naukowe
A PCR-based screening method was used to study the genetic variations of the pgm locus among natural isolates of Yersinia pestis from China. Our results indicate that genetic variations in the pgm locus are well correlated with biovars of Y. pestis and plague foci, suggesting that the pgm locus plays a role in Y. pestis adaptation to its environment. The gene encoding two-component regulatory system sensor kinase became a pseudogene in all strains of biovar Orientalis due to a thymidine deletion, while it is intact in all the strains of the other biovars. Only strains from Foci H and L are the same as Yersinia pseudotuberculosis in that they have an intact transmembrane helix in the sensor kinase protein, which is lost in all the other strains because of the 18 bp in-frame deletion. The IS100 element that flanks the 39 terminus of the pgm locus was inserted into the chromosome during the within-species microevolution of Y. pestis, which is absent in strains from Foci G, H and L and also in Y. pseudotuberculosis. This fact indicates that the strains from these three foci are of an older lineage of Chinese Y. pestis. It is this IS100 element's absence that maintained high stability of the pgm locus in the Y. pestis strains from these three foci. The IS285 element insertion in the pigmentation segment and the IS100 element insertion in the downstream flanking region of the pgm locus are only present in strains from Foci H and L. The flanking region outside the 59 terminus of the upstream IS100 element is identical in the strains from these two foci, which is different in the other strains. All of these unique characteristics suggest that they are of a special lineage of Chinese Y. pestis.

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