Kwasiborski Anthony, Mondy Samuel, Chong Teik-Min, Chan Kok-Gan, Beury-Cirou Amélie, Faure Denis
Institut for Integrative Biology of the Cell, I2BC, Université Paris Saclay, Saclay Plant Sciences, UMR9198 CNRS CEA Université Paris-Sud, Avenue de la Terrasse, 91198, Gif-sur-Yvette Cedex, France.
Genetica. 2015 Apr;143(2):253-61. doi: 10.1007/s10709-015-9827-4. Epub 2015 Feb 13.
Rhodococcus erythropolis is a worldwide-distributed actinobacterium that exhibits a remarkable metabolic versatility illustrated by its ability to degrade complex compounds, such as quorum-sensing signals N-acylhomoserine lactones (NAHLs), phenols, sterols and fuel derivatives. Because of its catabolic properties, R. erythropolis strains are proposed as anti-biofouling agents against NAHL-dependent biofilms, biocontrol agents against NAHL-emitting plant pathogens, and bioremediation agents in contaminated waters and soils. Here, we used the PacBio technology to resolve the complete genome sequence of the biocontrol strain R. erythropolis R138. Its genome consisted in a circular chromosome (6,236,862 bp), a linear plasmid pLRE138 (477,915 bp) and a circular plasmid pCRE138 (91,729 bp). In addition, draft genomes of five R. erythropolis strains were determined by Illumina technology and compared with the other five R. erythropolis genomes that are available in public databases: 5,825 common CDSs were present in all of the eleven analyzed genomes and represented up to 87 % of those identified in R. erythropolis R138. This study highlighted the high proportion of core-genome genes in R. erythropolis, but a high variability of the plasmid content. Key-metabolic pathways which are involved in the degradation of complex molecules, such as NAHLs and phenol, catechol and sterol derivatives are coded by the R. erythropolis core-genome.
红平红球菌是一种广泛分布于全球的放线菌,具有显著的代谢多样性,其能够降解复杂化合物,如群体感应信号N-酰基高丝氨酸内酯(NAHLs)、酚类、固醇类和燃料衍生物,即为这种多样性的例证。由于其分解代谢特性,红平红球菌菌株被提议用作针对依赖NAHL的生物膜的抗生物污损剂、针对释放NAHL的植物病原体的生物防治剂以及受污染水体和土壤中的生物修复剂。在此,我们使用PacBio技术解析了生物防治菌株红平红球菌R138的完整基因组序列。其基因组由一条环状染色体(6,236,862 bp)、一条线性质粒pLRE138(477,915 bp)和一条环状质粒pCRE138(91,729 bp)组成。此外,通过Illumina技术测定了五株红平红球菌菌株的草图基因组,并与公共数据库中可用的其他五株红平红球菌基因组进行了比较:在所有11个分析的基因组中存在5,825个共同的编码序列(CDSs),占红平红球菌R138中鉴定出的编码序列的比例高达87%。这项研究突出了红平红球菌中核心基因组基因的高比例,但质粒含量具有高度变异性。参与复杂分子如NAHLs、酚类、儿茶酚和固醇衍生物降解的关键代谢途径由红平红球菌核心基因组编码。