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Effects of Plant Growth-Promoting Bacteria (PGPB) Inoculation on the Growth Antioxidant Activity Cu Uptake and Bacterial Community Structure of Rape (Brassica napus L.) Grown in Cu-Contaminated Agricultural Soil

机译:铜污染农业土壤中植物促生长细菌(PGPB)接种对油菜生长的抗氧化活性铜吸收和细菌群落结构的影响

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摘要

Previous analyses of plant growth-promoting bacteria (PGPB) combined with the remediation of heavy metal pollution in soil have largely been performed under potting or greenhouse conditions, and in situ remediation experiments under field conditions have rarely been reported. In this study, the effects of the metal-resistant PGPB Microbacterium oxydans JYC17, Pseudomonas thivervalensis Y1-3-9, and Burkholderia cepacia J62 on soil Cu pollution under rape remediation were studied in the farmland surrounding the Nanjing Jiuhuashan copper mining region in China. Following inoculation treatment for 50 days, the biomasses of the rape inoculated with strains JYC17, Y1-3-9, and J62 increased, and the total amounts of Cu uptake increased by 113.38, 66.26, and 67.91%, respectively, the translocation factor (TF) of rape inoculated with J62 was 0.85, a significant increase of 70.68%, thus improving the Cu remediation efficiency of the rape. Y1-3-9 and J62 affected the bioavailability of Cu in the soil, and the water-soluble Cu contents were increased by 10.13 and 41.77%, respectively, compared with the control. The antioxidant activities in the rape leaves showed that the tested bacteria increased the contents of antioxidant non-enzymatic substances, including ascorbic acid (ASA) and glutathione (GSH), which were increased by 40.24–91.22% and 9.89–17.67%, respectively, thereby reducing the oxidative stress caused by heavy metals and the contents of thiobarbituric acid-reactive substances (TBARS) and peroxidase (POD). PCR-denaturing gradient gel electrophoresis (PCR-DGGE) was used to analyze the effects of the tested bacteria on the cultivation-dependent and cultivation-independent bacterial communities in the root endosphere and rhizosphere soil of the rape. The sequencing results of the DGGE bands indicated that the tested bacteria colonized the endosphere and rhizosphere, and they became an important component of the cultivation-dependent bacteria. The canonical correspondence analysis (CCA) of the DGGE profile and similarity cluster analysis showed that the tested bacteria affected the cultivation-dependent and cultivation-independent bacterial communities in the root endosphere and rhizosphere. In this experiment, the effects and mechanisms of the combined plant-microbe remediation under field conditions were preliminarily studied, and the results are expected to provide a theoretical basis for future combined remediation experiments.
机译:先前对植物生长促进细菌(PGPB)与土壤中重金属污染的修复相结合的分析大多是在盆栽或温室条件下进行的,很少有在田间条件下进行原位修复实验的报道。在本研究中,研究了南京九华山铜矿开采区周围农田中金属抗性PGPB氧化微细菌JYC17,铜假单胞菌Y1-3-9和洋葱伯克霍尔德菌J62对土壤铜污染的影响。接种50天后,接种菌株JYC17,Y1-3-9和J62的油菜生物量增加,Cu吸收总量分别比易位因子增加113.38%,66.26和67.91%。接种J62的油菜的TF)为0.85,显着增加70.68%,从而提高了油菜的Cu修复效率。 Y1-3-9和J62影响土壤中Cu的生物利用度,水溶性Cu含量与对照相比分别增加了10.13和41.77%。油菜叶片的抗氧化活性表明,被测细菌增加了抗氧化非酶物质的含量,包括抗坏血酸(ASA)和谷胱甘肽(GSH),分别增加了40.24–91.22%和9.89–17.67%。从而减少了由重金属以及硫代巴比妥酸反应性物质(TBARS)和过氧化物酶(POD)含量引起的氧化应激。 PCR-变性梯度凝胶电泳(PCR-DGGE)用于分析被测细菌对油菜根内和根际土壤中依赖于培养和不依赖于培养的细菌群落的影响。 DGGE条带的测序结果表明,被测细菌定居于球内和根际,它们成为依赖培养细菌的重要组成部分。 DGGE图谱的典型对应分析(CCA)和相似性聚类分析表明,受试细菌影响根内球根和根际中依赖于培养和不依赖于培养的细菌群落。本实验对田间条件下植物-微生物联合修复的效果及机理进行了初步研究,其结果有望为今后的联合修复实验提供理论依据。

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