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首页> 外文期刊>The Science of the Total Environment >Development of plant-microbe phytoremediation system for petroleum hydrocarbon degradation: An insight from alkb gene expression and phytotoxicity analysis
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Development of plant-microbe phytoremediation system for petroleum hydrocarbon degradation: An insight from alkb gene expression and phytotoxicity analysis

机译:用于石油烃降解的植物-微生物植物修复系统的开发:alkb基因表达和植物毒性分析的启示

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Aim of present work was to assess in-planta association potential of isolated endophytic bacterial strain Pseudomonas sp. (J10) (KY608252) with two cultivars of Lolium perenne L. (small & jumbo) and Arabidopsis thaliana L. for total petroleum hydrocarbon (TPH) degradation, alkane monooxygenase (alkb) gene expression and phytotoxicity analysis. A plant-microbe phytoremediation system was established to investigate the bacteria's ability to colonize the plant body and quantification of alkb gene to help withstand TPH stress in soil as well as in hydroponics. A real-time PCR method was developed to analyze bacterial colonization and survival within the plant body. Analysis revealed that J10 efficiently colonized all the tested plant species and expressed alkb gene under hydrocarbon stress ranging between 3.7 x 10(2)-3.9 x 10(6) in A. thaliana and L. perenne (small), respectively. The colonization was more pronounced in soil as compared to hydroponic system. J10 inoculation reduced phytotoxicity and suggested that inoculation had a positive effect on plant growth under stress conditions as compared to control. L. perenne (small) showed significant TPH removal efficiency (45.6%) followed by L. perenne jumbo (24.5%) and A. thaliana (6.2%). In hydroponics, L. perenne (small) degraded about 28.2% TPH followed by L. perenne (jumbo) as 24.4%. Potential of the indigenously isolated plant endophytes may be exploited further for phytoremediation efficiency and industrial applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:目前工作的目的是评估分离的内生细菌菌株假单胞菌属菌种的体内结合潜力。 (J10)(KY608252)具有两个品种的黑麦草(小叶和巨型)和拟南芥(Arabidopsis thaliana L.),用于总石油烃(TPH)降解,烷烃单加氧酶(alkb)基因表达和植物毒性分析。建立了一种植物-微生物植物修复系统,以研究细菌在植物体内定殖的能力和alkb基因的定量,以帮助抵抗土壤以及水培法中的TPH胁迫。开发了一种实时PCR方法来分析细菌在植物体内的定殖和存活。分析表明,J10有效地定殖了所有被测植物物种,并在碳胁迫下分别在拟南芥(A. thaliana)和紫薇(L. perenne)(小)中的3.7 x 10(2)-3.9 x 10(6)范围内表达alkb基因。与水耕系统相比,在土壤中的定植更为明显。 J10接种降低了植物毒性,因此与对照相比,接种在胁迫条件下对植物生长具有积极影响。 L. perenne(小)表现出显着的TPH去除效率(45.6%),其次是L. perenne巨型(24.5%)和A. thaliana(6.2%)。在水培法中,Perenne乳杆菌(小)的TPH下降约28.2%,随后是Perenne乳杆菌(大)的24.4%。本地分离的植物内生菌的潜力可进一步用于植物修复效率和工业应用。 (C)2019 Elsevier B.V.保留所有权利。

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