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1 nus Morganella were found in the study, with biogroup A (ODC positive [ODC+], LDC negative [LDC-]) pr
2 l group of strains of Haemophilus influenzae biogroup aegyptius (Hae), an organism previously solely
3                 All strains of H. influenzae biogroup aegyptius (Hi-aeg) and more than 70% of THi and
4 uences of four hifE genes from H. influenzae biogroup aegyptius and H. influenzae capsule serotypes a
5 egation of virulent strains of H. influenzae biogroup aegyptius associated with BPF.
6 was identified in the Haemophilus influenzae biogroup aegyptius Brazilian purpuric fever (BPF) strain
7 he clonal variants of Haemophilus influenzae biogroup aegyptius causing Brazilian Purpuric Fever (BPF
8 rt the cloning of two haf (for H. influenzae biogroup aegyptius fimbriae) gene clusters from a cosmid
9 n the P1 protein of strains of H. influenzae biogroup aegyptius is seen on most virulent isolates.
10 absent in noninvasive Haemophilus influenzae biogroup aegyptius isolate F1947.
11 e junctions of the hif-1 cluster (limited to biogroup aegyptius isolates) are structurally simple.
12             The BPF-associated H. influenzae biogroup aegyptius pilus system generally resembles othe
13 (hifA-hifEEag) and the related H. influenzae biogroup aegyptius strain F3031 (hifA-hifEF3031).
14 ever (BPF)-associated Haemophilus influenzae biogroup aegyptius strain F3031 contains two identical c
15  hif-1 cluster appears to have originated in biogroup aegyptius strains from invasion of the hpt-pmbA
16 F isolates, could not be detected in non-BPF biogroup aegyptius strains or in nontypeable or typeable
17 s clusters was limited to some H. influenzae biogroup aegyptius strains.
18 Brazilian case-clone strain of H. influenzae biogroup aegyptius was analyzed by cloning and sequencin
19 e identification of strains of H. influenzae biogroup aegyptius which cause BPF.
20                       Haemophilus influenzae biogroup aegyptius, the causative agent of Brazilian pur
21 invasive BPF strains and non-BPF isolates of biogroup aegyptius.
22 rmation of homologous DNA into H. influenzae biogroup aegyptius.
23 E(F3031) allele was limited to H. influenzae biogroup aegyptius.
24 f Vibrio cholerae and Haemophilus influenzae biogroup aegyptius.
25 sogenic P1-deficient mutant of H. influenzae biogroup aegyptius.
26 y specific strains of Haemophilus influenzae biogroup aegyptius.
27 caused by a strain of Haemophilus influenzae biogroup aegyptius.
28 hism analyses among strains of H. influenzae biogroup aegyptius.
29 ntation (24 h) was linked to nonmotility and biogroup B strains (ODC+, LDC+).
30             We determined the subspecies and biogroup designations for 73 strains of Morganella morga
31 tibility to tetracycline), we determined the biogroup designations for these 73 strains.
32 bsp. sibonii strains were found to belong to biogroup G (ODC+, LDC-).
33 wed none to be within traditional pathogenic biogroups or serogroups, and none carried genetic marker
34                 Four of the seven recognized biogroups within the genus Morganella were found in the

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