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含羞草共生菌伯克霍尔德氏菌酚解菌株BR3459a的全基因组:共生基因与致病基因共存的突出体现

The complete genome of Burkholderia phenoliruptrix strain BR3459a, a symbiont of Mimosa flocculosa: highlighting the coexistence of symbiotic and pathogenic genes.

作者信息

Zuleta Luiz Fernando Goda, Cunha Claúdio de Oliveira, de Carvalho Fabíola Marques, Ciapina Luciane Prioli, Souza Rangel Celso, Mercante Fábio Martins, de Faria Sergio Miana, Baldani José Ivo, Straliotto Rosangela, Hungria Mariangela, de Vasconcelos Ana Tereza Ribeiro

机构信息

Bioinformatics Laboratory, National Laboratory of Scientific Computation, Av, Getúlio Vargas 333, 25651-075 Petrópolis, RJ, Brazil.

出版信息

BMC Genomics. 2014 Jun 28;15(1):535. doi: 10.1186/1471-2164-15-535.

Abstract

BACKGROUND

Burkholderia species play an important ecological role related to xenobiosis, the promotion of plant growth, the biocontrol of agricultural diseases, and symbiotic and non-symbiotic biological nitrogen fixation. Here, we highlight our study as providing the first complete genome of a symbiotic strain of B. phenoliruptrix, BR3459a (=CLA1), which was originally isolated in Brazil from nodules of Mimosa flocculosa and is effective in fixing nitrogen in association with this leguminous species.

RESULTS

Genomic comparisons with other pathogenic and non-pathogenic Burkholderia strains grouped B. phenoliruptrix BR3459a with plant-associated beneficial and environmental species, although it shares a high percentage of its gene repertoire with species of the B. cepacia complex (Bcc) and "pseudomallei" group. The genomic analyses showed that the bce genes involved in exopolysaccharide production are clustered together in the same genomic region, constituting part of the Group III cluster of non-pathogenic bacteria. Regarding environmental stresses, we highlight genes that might be relevant in responses to osmotic, heat, cold and general stresses. Furthermore, a number of particularly interesting genes involved in the machinery of the T1SS, T2SS, T3SS, T4ASS and T6SS secretion systems were identified. The xenobiotic properties of strain BR3459a were also investigated, and some enzymes involved in the degradation of styrene, nitrotoluene, dioxin, chlorocyclohexane, chlorobenzene and caprolactam were identified. The genomic analyses also revealed a large number of antibiotic-related genes, the most important of which were correlated with streptomycin and novobiocin. The symbiotic plasmid showed high sequence identity with the symbiotic plasmid of B. phymatum. Additionally, comparative analysis of 545 housekeeping genes among pathogenic and non-pathogenic Burkholderia species strongly supports the definition of a new genus for the second branch, which would include BR3459a.

CONCLUSIONS

The analyses of B. phenoliruptrix BR3459a showed key property of fixing nitrogen that together with genes for high tolerance to environmental stresses might explain a successful strategy of symbiosis in the tropics. The strain also harbours interesting sets of genes with biotechnological potential. However, the resemblance of certain genes to those of pathogenic Burkholderia raise concerns about large-scale applications in agriculture or for bioremediation.

摘要

背景

伯克霍尔德氏菌属在与异生物质代谢、促进植物生长、农业病害生物防治以及共生和非共生生物固氮相关的生态过程中发挥着重要作用。在此,我们着重介绍我们的研究,该研究提供了第一株共生型酚裂解伯克霍尔德氏菌BR3459a(=CLA1)的完整基因组,该菌株最初从巴西含羞草的根瘤中分离得到,并且能与这种豆科植物共生固氮。

结果

与其他致病和非致病伯克霍尔德氏菌菌株的基因组比较表明,酚裂解伯克霍尔德氏菌BR3459a与植物相关的有益菌和环境菌归为一类,尽管它与洋葱伯克霍尔德菌复合体(Bcc)和“类鼻疽杆菌”组的物种有很高比例的基因库相同。基因组分析表明,参与胞外多糖产生的bce基因聚集在同一基因组区域,构成了非致病细菌的III组簇的一部分。关于环境胁迫,我们着重介绍了可能与渗透、热、冷和一般胁迫反应相关的基因。此外,还鉴定了一些与I型分泌系统、II型分泌系统、III型分泌系统、IV型附属分泌系统和VI型分泌系统机制相关的特别有趣的基因。还研究了菌株BR3459a的异生物质特性,并鉴定了一些参与苯乙烯、硝基甲苯、二恶英、氯环己烷、氯苯和己内酰胺降解的酶。基因组分析还揭示了大量与抗生素相关的基因,其中最重要的与链霉素和新生霉素相关。共生质粒与费氏伯克霍尔德氏菌的共生质粒具有高度的序列同一性。此外,对致病和非致病伯克霍尔德氏菌物种中的545个管家基因的比较分析有力地支持了为第二个分支定义一个新属,其中将包括BR3459a。

结论

对酚裂解伯克霍尔德氏菌BR3459a的分析表明,其固氮的关键特性以及对环境胁迫的高耐受性基因可能解释了其在热带地区成功的共生策略。该菌株还拥有一系列具有生物技术潜力的有趣基因。然而,某些基因与致病伯克霍尔德氏菌的基因相似性引发了对其在农业或生物修复中大规模应用的担忧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc5f/4101177/dfb07a968e37/12864_2014_6246_Fig1_HTML.jpg

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