Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide

Burkholderia pseudomallei and Burkholderia cepacia are Gram-negative, soil-dwelling bacteria that are found in a wide variety of environmental niches. While B. pseudomallei is the causative agent of melioidosis in humans and animals, members of the B. cepacia complex typically only cause disease in...

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Main Authors: Burtnick, MN, Dance, DAB, Vongsouvath, M, Newton, PN, Dittrich, S, Sendouangphachanh, A, Woods, K, Davong, V, Kenna, DTD, Saiprom, N, Sengyee, S, Hantrakun, V, Wuthiekanun, V, Limmathurotsakul, D, Chantratita, N, Brett, PJ
Other Authors: Cardona, ST
Format: Journal article
Language:English
Published: American Society for Microbiology 2024
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author Burtnick, MN
Dance, DAB
Vongsouvath, M
Newton, PN
Dittrich, S
Sendouangphachanh, A
Woods, K
Davong, V
Kenna, DTD
Saiprom, N
Sengyee, S
Hantrakun, V
Wuthiekanun, V
Limmathurotsakul, D
Chantratita, N
Brett, PJ
author2 Cardona, ST
author_facet Cardona, ST
Burtnick, MN
Dance, DAB
Vongsouvath, M
Newton, PN
Dittrich, S
Sendouangphachanh, A
Woods, K
Davong, V
Kenna, DTD
Saiprom, N
Sengyee, S
Hantrakun, V
Wuthiekanun, V
Limmathurotsakul, D
Chantratita, N
Brett, PJ
author_sort Burtnick, MN
collection OXFORD
description Burkholderia pseudomallei and Burkholderia cepacia are Gram-negative, soil-dwelling bacteria that are found in a wide variety of environmental niches. While B. pseudomallei is the causative agent of melioidosis in humans and animals, members of the B. cepacia complex typically only cause disease in immunocompromised hosts. In this study, we report the identification of B. cepacia strains isolated from either patients or soil in Laos and Thailand that express a B. pseudomallei-like 6-deoxyheptan capsular polysaccharide (CPS). These B. cepacia strains were initially identified based on their positive reactivity in a latex agglutination assay that uses the CPS-specific monoclonal antibody (mAb) 4B11. Mass spectrometry and recA sequencing confirmed the identity of these isolates as B. cepacia (formerly genomovar I). Total carbohydrates extracted from B. cepacia cell pellets reacted with B. pseudomallei CPS-specific mAbs MCA147, 3C5, and 4C4, but did not react with the B. pseudomallei lipopolysaccharide-specific mAb Pp-PS-W. Whole genome sequencing of the B. cepacia isolates revealed the presence of genes demonstrating significant homology to those comprising the B. pseudomallei CPS biosynthetic gene cluster. Collectively, our results provide compelling evidence that B. cepacia strains expressing the same CPS as B. pseudomallei co-exist in the environment alongside B. pseudomallei. Since CPS is a target that is often used for presumptive identification of B. pseudomallei, it is possible that the occurrence of these unique B. cepacia strains may complicate the diagnosis of melioidosis.
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spelling oxford-uuid:78f3a931-2cad-4448-a6ad-bc7806631ce92024-08-05T09:28:59ZIdentification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharideJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:78f3a931-2cad-4448-a6ad-bc7806631ce9EnglishSymplectic ElementsAmerican Society for Microbiology2024Burtnick, MNDance, DABVongsouvath, MNewton, PNDittrich, SSendouangphachanh, AWoods, KDavong, VKenna, DTDSaiprom, NSengyee, SHantrakun, VWuthiekanun, VLimmathurotsakul, DChantratita, NBrett, PJCardona, STBurkholderia pseudomallei and Burkholderia cepacia are Gram-negative, soil-dwelling bacteria that are found in a wide variety of environmental niches. While B. pseudomallei is the causative agent of melioidosis in humans and animals, members of the B. cepacia complex typically only cause disease in immunocompromised hosts. In this study, we report the identification of B. cepacia strains isolated from either patients or soil in Laos and Thailand that express a B. pseudomallei-like 6-deoxyheptan capsular polysaccharide (CPS). These B. cepacia strains were initially identified based on their positive reactivity in a latex agglutination assay that uses the CPS-specific monoclonal antibody (mAb) 4B11. Mass spectrometry and recA sequencing confirmed the identity of these isolates as B. cepacia (formerly genomovar I). Total carbohydrates extracted from B. cepacia cell pellets reacted with B. pseudomallei CPS-specific mAbs MCA147, 3C5, and 4C4, but did not react with the B. pseudomallei lipopolysaccharide-specific mAb Pp-PS-W. Whole genome sequencing of the B. cepacia isolates revealed the presence of genes demonstrating significant homology to those comprising the B. pseudomallei CPS biosynthetic gene cluster. Collectively, our results provide compelling evidence that B. cepacia strains expressing the same CPS as B. pseudomallei co-exist in the environment alongside B. pseudomallei. Since CPS is a target that is often used for presumptive identification of B. pseudomallei, it is possible that the occurrence of these unique B. cepacia strains may complicate the diagnosis of melioidosis.
spellingShingle Burtnick, MN
Dance, DAB
Vongsouvath, M
Newton, PN
Dittrich, S
Sendouangphachanh, A
Woods, K
Davong, V
Kenna, DTD
Saiprom, N
Sengyee, S
Hantrakun, V
Wuthiekanun, V
Limmathurotsakul, D
Chantratita, N
Brett, PJ
Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title_full Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title_fullStr Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title_full_unstemmed Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title_short Identification of Burkholderia cepacia strains that express a Burkholderia pseudomallei-like capsular polysaccharide
title_sort identification of burkholderia cepacia strains that express a burkholderia pseudomallei like capsular polysaccharide
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