Evolution of Mycobacterium ulcerans and other mycolactone-producing mycobacteria from a common Mycobacterium marinum progenitor

被引:119
|
作者
Yip, Marcus J.
Porter, Jessica L.
Fyfe, Janet A. M.
Lavender, Caroline J.
Portaels, Francoise
Rhodes, Martha
Kator, Howard
Colorni, Angelo
Jenkin, Grant A.
Stinear, Tim
机构
[1] Monash Univ, Dept Microbiol, Clayton, Vic 3800, Australia
[2] Victorian Infect Dis Reference Lab, Melbourne 3051, Australia
[3] Inst Trop Med, B-2000 Antwerp, Belgium
[4] Coll William & Mary, Virginia Inst Marine Sci, Gloucester Point, VA 23062 USA
[5] Israel Oceanog & Limnol Res, Natl Ctr Mariculture, IL-88112 Elat, Israel
关键词
D O I
10.1128/JB.01442-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
It had been assumed that production of the cytotoxic polyketide mycolactone was strictly associated with Mycobacterium ulcerans, the causative agent of Buruli ulcer. However, a recent study has uncovered a broader distribution of mycolactone-producing mycobacteria (MPM) that includes mycobacteria cultured from diseased fish and frogs in the United States and from diseased fish in the Red and Mediterranean Seas. All of these mycobacteria contain versions of the M. ulcerans pMUM plasmid, produce mycolactones, and show a high degree of genetic relatedness to both M. ulcerans and Mycobacterium marinum. Here, we show by multiple genetic methods, including multilocus sequence analysis and DNA-DNA hybridization, that all MPM have evolved from a common M. marinum progenitor to form a genetically cohesive group among a more diverse assemblage of M. marinum strains. Like M. ulcerans, the fish and frog MPM show multiple copies of the insertion sequence IS2404. Comparisons of pMUM and chromosomal gene sequences demonstrate that plasmid acquisition and the subsequent ability to produce mycolactone were probably the key drivers of speciation. Ongoing evolution among MPM has since produced at least two genetically distinct ecotypes that can be broadly divided into those typically causing disease in ectotherms (but also having a high zoonotic potential) and those causing disease in endotherms, such as humans.
引用
收藏
页码:2021 / 2029
页数:9
相关论文
共 46 条
  • [21] Insights from the complete genome sequence of Mycobacterium marinum on the evolution of Mycobacterium tuberculosis (vol 18, pg 729, 2008)
    Stinear, Timothy P.
    Seemann, Torsten
    Harrison, Paul F.
    Jenkin, Grant A.
    Davies, John K.
    Johnson, Paul D. R.
    Abdellah, Zahra
    Arrowsmith, Claire
    Chillingworth, Tracey
    Churcher, Carol
    Clarke, Kay
    Cronin, Ann
    Davis, Paul
    Goodhead, Ian
    Holroyd, Nancy
    Jagels, Kay
    Lord, Angela
    Moule, Sharon
    Mungall, Karen
    Norbertczak, Halina
    Quail, Michael A.
    Rabbinowitsch, Ester
    Walker, Danielle
    White, Brian
    Whitehead, Sally
    Small, Pamela L. C.
    Brosch, Roland
    Ramakrishnan, Lalita
    Fischbach, Michael A.
    Parkhill, Julian
    Cole, Stewart T.
    [J]. GENOME RESEARCH, 2008, 18 (10) : 1681 - 1681
  • [22] DISTINCTION OF MYCOBACTERIUM-TUBERCULOSIS FROM OTHER MYCOBACTERIA THROUGH DNA HYBRIDIZATION
    BHATTACHARYA, S
    RANADIVE, SN
    BHATTACHARYA, A
    [J]. INDIAN JOURNAL OF MEDICAL RESEARCH, 1988, 87 : 144 - 150
  • [23] Isolation of mycobacteria other than Mycobacterium avium from porcine lymph nodes
    van Ingen, Jakko
    Wisselink, Henk J.
    van Solt-Smits, Conny B.
    Boeree, Martin J.
    van Soolingen, Dick
    [J]. VETERINARY MICROBIOLOGY, 2010, 144 (1-2) : 250 - 253
  • [24] THE LIPIDS ISOLATED FROM MYCOBACTERIUM-LEPRAE AND SOME OTHER STRAINS OF MYCOBACTERIA
    DAFFE, M
    LANEELLE, MA
    ASSELINEAU, C
    CLAVEL, S
    CLEMENT, F
    DAVID, HL
    [J]. ANNALES DE MICROBIOLOGIE, 1982, B133 (01): : 49 - 51
  • [25] A novel mycolactone from a clinical isolate of Mycobacterium ulcerans provides evidence for additional toxin heterogeneity as a result of specific changes in the modular polyketide synthase
    Hong, H
    Spencer, JB
    Porter, JL
    Leadlay, PF
    Stinear, T
    [J]. CHEMBIOCHEM, 2005, 6 (04) : 643 - 648
  • [26] Synthesis of wax esters and related trehalose esters from Mycobacterium avium and other mycobacteria
    Taher, Salam G.
    Al Dulayymi, Juma'a R.
    Tima, H. Giresse
    Ali, Hanan M.
    Romano, Marta
    Baird, Mark S.
    [J]. TETRAHEDRON, 2016, 72 (27-28) : 3863 - 3876
  • [27] USE OF PYRIDINE FOR DIFFERENTIATING MYCOBACTERIUM-LEPRAE FROM OTHER MYCOBACTERIA IN DIRECT MICROSCOPY
    SLOSAREK, M
    SULA, L
    THEOPHILUS, S
    HRUBY, L
    [J]. INTERNATIONAL JOURNAL OF LEPROSY AND OTHER MYCOBACTERIAL DISEASES, 1978, 46 (02) : 154 - 159
  • [28] Reductive evolution and niche adaptation inferred from the genome of Mycobacterium ulcerans, the causative agent of Buruli ulcer
    Stinear, Timothy P.
    Seemann, Torsten
    Pidot, Sacha
    Frigui, Wafa
    Reysset, Gilles
    Garnier, Thierry
    Meurice, Guillaume
    Simon, David
    Bouchier, Christiane
    Ma, Laurence
    Tichit, Magali
    Porter, Jessica L.
    Ryan, Janine
    Johnson, Paul D. R.
    Davies, John K.
    Jenkin, Grant A.
    Small, Pamela L. C.
    Jones, Louis M.
    Tekaia, Fredj
    Laval, Francoise
    Daffe, Mamadou
    Parkhill, Julian
    Cole, Stewart T.
    [J]. GENOME RESEARCH, 2007, 17 (02) : 192 - 200
  • [29] Differentiation of Mycobacterium tuberculosis from other mycobacteria with ρ-nitrobenzoic acid using MGIT960
    Giampaglia, C. M. S.
    Martins, M. C.
    Chimara, E.
    Oliveira, R. S.
    de Oliveira Vieira, G. B.
    Marsico, A. G.
    Mello, F. C. Q.
    de Souza Fonseca, L.
    Kritski, A.
    da Silva Telles, M. A.
    [J]. INTERNATIONAL JOURNAL OF TUBERCULOSIS AND LUNG DISEASE, 2007, 11 (07) : 803 - 807
  • [30] A newly discovered mycobacterial pathogen isolated from laboratory colonies of Xenopus species with lethal infections produces a novel form of mycolactone, the Mycobacterium ulcerans macrolide toxin
    Mve-Obiang, A
    Lee, RE
    Umstot, ES
    Trott, KA
    Grammer, TC
    Parker, JM
    Ranger, BS
    Grainger, R
    Mahrous, EA
    Small, PLC
    [J]. INFECTION AND IMMUNITY, 2005, 73 (06) : 3307 - 3312