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Proteogenomic Analysis of Burkholderia Species Strains 25 and 46 Isolated from Uraniferous Soils Reveals Multiple Mechanisms to Cope with Uranium Stress

机译:从铀质土壤中分离的伯克霍尔德氏菌物种25和46的蛋白质组学分析揭示了应对铀胁迫的多种机制。

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摘要

Two Burkholderia spp. (strains SRS-25 and SRS-46) were isolated from high concentrations of uranium (U) from the U.S. Department of Energy (DOE)-managed Savannah River Site (SRS). SRS contains soil gradients that remain co-contaminated by heavy metals from previous nuclear weapons production activities. Uranium (U) is one of the dominant contaminants within the SRS impacted soils, which can be microbially transformed into less toxic forms. We established microcosms containing strains SRS-25 and SRS-46 spiked with U and evaluated the microbially-mediated depletion with concomitant genomic and proteomic analysis. Both strains showed a rapid depletion of U; draft genome sequences revealed SRS-25 genome to be of approximately 8,152,324 bp, a G + C content of 66.5, containing a total 7604 coding sequences with 77 total RNA genes. Similarly, strain SRS-46 contained a genome size of 8,587,429 bp with a G + C content of 67.1, 7895 coding sequences, with 73 total RNA genes, respectively. An in-depth, genome-wide comparisons between strains 25, 46 and a previously isolated strain from our research (Burkholderia sp. strain SRS-W-2-2016), revealed a common pool of 3128 genes; many were found to be homologues to previously characterized metal resistance genes (e.g., for cadmium, cobalt, and zinc), as well as for transporter, stress/detoxification, cytochromes, and drug resistance functions. Furthermore, proteomic analysis of strains with or without U stress, revealed the increased expression of 34 proteins from strain SRS-25 and 52 proteins from strain SRS-46; similar to the genomic analyses, many of these proteins have previously been shown to function in stress response, DNA repair, protein biosynthesis and metabolism. Overall, this comparative proteogenomics study confirms the repertoire of metabolic and stress response functions likely rendering the ecological competitiveness to the isolated strains for colonization and survival in the heavy metals contaminated SRS soil habitat.
机译:两个伯克霍尔德菌属。 (SRS-25和SRS-46菌株)是从美国能源部(DOE)管理的萨凡纳河站点(SRS)的高浓度铀(U)中分离出来的。 SRS包含的土壤梯度仍被先前核武器生产活动中的重金属共同污染。铀(S)是受SRS影响的土壤中的主要污染物之一,可以通过微生物转化为毒性较小的形式。我们建立了包含掺有U的SRS-25和SRS-46菌株的微观世界,并通过基因组和蛋白质组学分析评估了微生物介导的耗竭。两种菌株均显示出U的快速消耗。基因组序列草案显示,SRS-25基因组大约为8,152,324 bp,G + C含量为66.5,包含总共7604个编码序列和77个RNA总基因。同样,菌株SRS-46的基因组大小为8,587,429 bp,G + C含量为67.1、7895编码序列,分别具有73个总RNA基因。在菌株25、46与先前从我们的研究中分离的菌株(Burkholderia sp。SRS-W-2-2016)之间的深入,全基因组比较中,发现共有3128个基因。发现许多与先前表征的金属抗性基因(例如,镉,钴和锌)以及转运蛋白,应激/排毒,细胞色素和药物抗性功能的同源物。此外,对有或没有U胁迫的菌株进行蛋白质组学分析,发现来自SRS-25菌株的34种蛋白和来自SRS-46菌株的52种蛋白表达增加;与基因组分析相似,这些蛋白中的许多以前已显示出在应激反应,DNA修复,蛋白生物合成和代谢中起作用。总的来说,这项比较蛋白质组学研究证实了新陈代谢和应激反应功能的丰富性,可能使这些菌株在被重金属污染的SRS土壤生境中的定殖和生存方面具有生态竞争力。

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