The various lifestyles of the Burkholderia cepacia complex species: a tribute to adaptation

被引:118
作者
Vial, Ludovic [1 ]
Chapalain, Annelise [1 ]
Groleau, Marie-Christine [1 ]
Deziel, Eric [1 ]
机构
[1] INRS Inst Armand Frappier, Laval, PQ H7V 1B7, Canada
基金
加拿大健康研究院;
关键词
CHRONIC GRANULOMATOUS-DISEASE; RESPIRATORY EPITHELIAL-CELLS; CYSTIC-FIBROSIS PATIENTS; FREE-LIVING AMEBAS; PSEUDOMONAS-CEPACIA; INTRACELLULAR SURVIVAL; MAIZE RHIZOSPHERE; SP-NOV; ACANTHAMOEBA-POLYPHAGA; MCI;
D O I
10.1111/j.1462-2920.2010.02343.x
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
P>The Burkholderia cepacia complex (Bcc) is composed of 17 closely related species. These bacteria are widely but heterogeneously distributed in the natural environment, such as soil, water and rhizosphere. Bcc strains are able to colonize various ecological niches by adopting versatile lifestyles, including saprophytism and (positive or deleterious) association with eukaryotic cells. Bcc strains have proven to be very efficient in biocontrol, plant growth promotion and bioremediation. However, they also are important opportunistic pathogens that can cause severe respiratory infections among individuals suffering from cystic fibrosis or chronic granulomatous disease. Therefore, considering that the distinction between plant beneficial and clinical strains is not obvious, biotechnological applications of Bcc strains are currently not allowed. This minireview provides an overview of the wide range of lifestyles that Bcc bacteria can adopt, leading to glimpses into their tremendous adaptation potential and highlighting remaining questions concerning potential implicated mechanisms.
引用
收藏
页码:1 / 12
页数:12
相关论文
共 78 条
[1]   Lung transplantation for cystic fibrosis patients with Burkholderia cepacia complex -: Survival linked to genomovar type [J].
Aris, RM ;
Routh, JC ;
LiPuma, JJ ;
Heath, DG ;
Gilligan, PH .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2001, 164 (11) :2102-2106
[2]   Burkholderia cepacia genomovar III is a common plant-associated bacterium [J].
Balandreau, J ;
Viallard, V ;
Cournoyer, B ;
Coenye, T ;
Laevens, S ;
Vandamme, P .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2001, 67 (02) :982-985
[3]   Environmental Burkholderia cepacia complex isolates in human infections [J].
Baldwin, Adam ;
Mahenthiralingam, Eshwar ;
Drevinek, Pavel ;
Vandamme, Peter ;
Govan, John R. ;
Waine, David J. ;
LiPuma, John J. ;
Chiarini, Luigi ;
Dalmastri, Claudia ;
Henry, Deborah A. ;
Speert, David P. ;
Honeybourne, David ;
Maiden, Martin C. J. ;
Dowson, Chris G. .
EMERGING INFECTIOUS DISEASES, 2007, 13 (03) :458-461
[4]   The rhizosphere as a reservoir for opportunistic human pathogenic bacteria [J].
Berg, G ;
Eberl, L ;
Hartmann, A .
ENVIRONMENTAL MICROBIOLOGY, 2005, 7 (11) :1673-1685
[5]   Comparative analysis of plant and animal models for characterization of Burkholdetia cepacia virulence [J].
Bernier, SP ;
Silo-Suh, L ;
Woods, DE ;
Ohman, DE ;
Sokol, PA .
INFECTION AND IMMUNITY, 2003, 71 (09) :5306-5313
[6]   A LysR-type transcriptional regulator in Burkholderia cenocepacia influences colony morphology and virulence [J].
Bernier, Steve P. ;
Nguyen, David T. ;
Sokol, Pamela A. .
INFECTION AND IMMUNITY, 2008, 76 (01) :38-47
[7]   Efficacy of Burkholderia cepacia MCI 7 in disease suppression and growth promotion of maize [J].
Bevivino, A ;
Dalmastri, C ;
Tabacchioni, S ;
Chiarini, L .
BIOLOGY AND FERTILITY OF SOILS, 2000, 31 (3-4) :225-231
[8]   PHENOTYPIC COMPARISON BETWEEN RHIZOSPHERE AND CLINICAL ISOLATES OF BURKHOLDERIA-CEPACIA [J].
BEVIVINO, A ;
TABACCHIONI, S ;
CHIARINI, L ;
CARUSI, MV ;
DELGALLO, M ;
VISCA, P .
MICROBIOLOGY-UK, 1994, 140 :1069-1077
[9]  
BURKHOLDER WH, 1950, PHYTOPATHOLOGY, V40, P115
[10]   Invasion of respiratory epithelial cells by Burkholderia (Pseudomonas) cepacia [J].
Burns, JL ;
Jonas, M ;
Chi, EY ;
Clark, DK ;
Berger, A ;
Griffith, A .
INFECTION AND IMMUNITY, 1996, 64 (10) :4054-4059