Functional characterization of the ABC transporters and transposable elements of an uncultured Paracoccus sp. recovered from a hydrocarbon-polluted soil metagenome

被引:0
作者
Lateef Babatunde Salam
Oluwafemi Sunday Obayori
机构
[1] Microbiology Unit,Department of Biological Sciences
[2] Elizade University,Department of Microbiology
[3] Lagos State University,undefined
来源
Folia Microbiologica | 2023年 / 68卷
关键词
Uncultured ; Hydrocarbon-polluted soil; ABC transporters; Antibiotic resistance genes; Heavy metal resistance genes; Transposable elements;
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摘要
Environmental microorganisms usually exhibit a high level of genomic plasticity and metabolic versatility that allow them to be well-adapted to diverse environmental challenges. This study used shotgun metagenomics to decipher the functional and metabolic attributes of an uncultured Paracoccus recovered from a polluted soil metagenome and determine whether the detected attributes are influenced by the nature of the polluted soil. Functional and metabolic attributes of the uncultured Paracoccus were elucidated via functional annotation of the open reading frames (ORFs) of its contig. Functional tools deployed for the analysis include KEGG, KEGG KofamKOALA, Clusters of Orthologous Groups of proteins (COG), Comprehensive Antibiotic Resistance Database (CARD), and the Antibiotic Resistance Gene-ANNOTation (ARG-ANNOT V6) for antibiotic resistance genes, TnCentral for transposable element, Transporter Classification Database (TCDB) for transporter genes, and FunRich for gene enrichment analysis. Analyses revealed the preponderance of ABC transporter genes responsible for the transport of oligosaccharides (malK, msmX, msmK, lacK, smoK, aglK, togA, thuK, treV, msiK), monosaccharides (glcV, malK, rbsC, rbsA, araG, ytfR, mglA), amino acids (thiQ, ynjD, thiZ, glnQ, gluA, gltL, peb1C, artP, aotP, bgtA, artQ, artR), and several others. Also detected are transporter genes for inorganic/organic nutrients like phosphate/phosphonate, nitrate/nitrite/cyanate, sulfate/sulfonate, bicarbonate, and heavy metals such as nickel/cobalt, molybdate/tungstate, and iron, among others. Antibiotic resistance genes that mediate efflux, inactivation, and target protection were detected, while transposable elements carrying resistance phenotypes for antibiotics and heavy metals were also annotated. The findings from this study have established the resilience, adaptability, and survivability of the uncultured Paracoccus in the hydrocarbon-polluted soil.
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页码:299 / 314
页数:15
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共 321 条
[21]  
Endo H(2008)ABC solute importers in bacteria Microbiol Mol Biol Rev 72 317-693
[22]  
Ohkubo K(2020)ABC transporters involved in export of cell surface glycoconjugates Sci Rep 10 3383-54
[23]  
Kanehisa M(2014)Functional characterization of Tn4401, a Tn3-based transposon involved in blaKPC gene mobilization Appl Microbiol Biotechnol 98 4041-613
[24]  
Goto S(2019)Amino acids in microbial metabolism and function Protein Sci 28 684-220
[25]  
Ogata H(2021)Structure, function, and evolution of bacterial ATP-binding cassette systems J Antimicrob Chemother 76 48-214
[26]  
Bader GD(1990)A potassium chloride to glycine betaine osmoprotectant switch in the extreme halophile Arch Microbiol 153 607-434
[27]  
Hogue CW(2018)Group III alcohol dehydrogenase from Front Microbiol 9 950-2417
[28]  
Bhandal IS(2014): insights into enzymatic activity and organization of the metal ion-containing region Antimicrob Agents Chemother 58 212-4749
[29]  
Hauptman RM(2017)Ribosome protection by ABC-F proteins - molecular mechanism and potential drug design Biol Chem 398 193-83
[30]  
Widholm JM(1989)The novel macrolide resistance genes mef(F) and msr(G) are located on a plasmid in FEBS Lett 255 431-1002