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洋葱伯克霍尔德菌新洋葱亚种TAtl - 371(一种从番茄根际分离出的菌株)的广谱抗菌活性。

Broad-spectrum antimicrobial activity by Burkholderia cenocepacia TAtl-371, a strain isolated from the tomato rhizosphere.

作者信息

Rojas-Rojas Fernando Uriel, Salazar-Gómez Anuar, Vargas-Díaz María Elena, Vásquez-Murrieta María Soledad, Hirsch Ann M, De Mot René, Ghequire Maarten G K, Ibarra J Antonio, Estrada-de Los Santos Paulina

机构信息

1​Instituto Politécnico Nacional, Escuela Nacional de Ciencias Biológicas, Prol. Carpio y Plan de Ayala s/n, Col. Santo Tomas, Del. Miguel Hidalgo. México, Cd. de, México.

2​Dept. of Molecular, Cell and Developmental Biology, University of California Los Angeles, Los Angeles, CA, USA.

出版信息

Microbiology (Reading). 2018 Sep;164(9):1072-1086. doi: 10.1099/mic.0.000675. Epub 2018 Jul 20.

DOI:10.1099/mic.0.000675
PMID:29906254
Abstract

The Burkholderia cepacia complex (Bcc) comprises a group of 24 species, many of which are opportunistic pathogens of immunocompromised patients and also are widely distributed in agricultural soils. Several Bcc strains synthesize strain-specific antagonistic compounds. In this study, the broad killing activity of B. cenocepacia TAtl-371, a Bcc strain isolated from the tomato rhizosphere, was characterized. This strain exhibits a remarkable antagonism against bacteria, yeast and fungi including other Bcc strains, multidrug-resistant human pathogens and plant pathogens. Genome analysis of strain TAtl-371 revealed several genes involved in the production of antagonistic compounds: siderophores, bacteriocins and hydrolytic enzymes. In pursuit of these activities, we observed growth inhibition of Candida glabrata and Paraburkholderia phenazinium that was dependent on the iron concentration in the medium, suggesting the involvement of siderophores. This strain also produces a previously described lectin-like bacteriocin (LlpA88) and here this was shown to inhibit only Bcc strains but no other bacteria. Moreover, a compound with an m/z 391.2845 with antagonistic activity against Tatumella terrea SHS 2008 was isolated from the TAtl-371 culture supernatant. This strain also contains a phage-tail-like bacteriocin (tailocin) and two chitinases, but the activity of these compounds was not detected. Nevertheless, the previous activities are not responsible for the whole antimicrobial spectrum of TAtl-371 seen on agar plates, suggesting the presence of other compounds yet to be found. In summary, we observed a diversified antimicrobial activity for strain TAtl-371 and believe it supports the biotechnological potential of this Bcc strain as a source of new antimicrobials.

摘要

洋葱伯克霍尔德菌复合体(Bcc)由24个物种组成,其中许多是免疫功能低下患者的机会致病菌,并且在农业土壤中广泛分布。几种Bcc菌株能合成菌株特异性的拮抗化合物。在本研究中,对从番茄根际分离出的Bcc菌株嗜洋葱伯克霍尔德菌TAtl-371的广泛杀伤活性进行了表征。该菌株对细菌、酵母和真菌表现出显著的拮抗作用,包括其他Bcc菌株、多重耐药的人类病原体和植物病原体。对TAtl-371菌株的基因组分析揭示了几个参与拮抗化合物产生的基因:铁载体、细菌素和水解酶。为了探究这些活性,我们观察到光滑念珠菌和吩嗪类副伯克霍尔德菌的生长抑制依赖于培养基中的铁浓度,这表明铁载体参与其中。该菌株还产生一种先前描述的凝集素样细菌素(LlpA88),在此研究中表明它仅抑制Bcc菌株,而不抑制其他细菌。此外,从TAtl-371培养上清液中分离出一种对土生塔特姆菌SHS 2008具有拮抗活性、质荷比为391.2845的化合物。该菌株还含有一种噬菌体尾样细菌素(尾菌素)和两种几丁质酶,但未检测到这些化合物的活性。然而,先前的这些活性并不能解释在琼脂平板上观察到的TAtl-371的整个抗菌谱,这表明还存在其他有待发现的化合物。总之,我们观察到TAtl-371菌株具有多样化的抗菌活性,并认为这支持了该Bcc菌株作为新型抗菌剂来源的生物技术潜力。

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