首页> 外文期刊>Water, Air, and Soil Pollution >Effect of Inoculation and Co-inoculation of Acinetobacter sp. RG30 and Pseudomonas putida GN04 on Growth,Fitness,and Copper Accumulation of Maize (Zea mays)
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Effect of Inoculation and Co-inoculation of Acinetobacter sp. RG30 and Pseudomonas putida GN04 on Growth,Fitness,and Copper Accumulation of Maize (Zea mays)

机译:不动杆菌属的接种和共接种的影响RG30和恶臭假单胞菌GN04对玉米(Zea mays)的生长,健身和铜积累的影响

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摘要

Phytoremediation can be assisted by microorganisms, which promote plant growth and increase heavy metal availability in soil. In this study, we aimed at evaluating the effect of two plant growth-promoting bacteria (PGPB) on phytoextraction of copper (Cu) by maize. We chose the strains based on their ability to synthesize indole compounds, produce siderophores, solubilize phosphorus, and increase soil conductivity and extractable Cu in soil. Then, in glasshouse experiments, we assessed their ability to increase biomass, chlorophyll content, and Cu extraction by maize. Results showed that Acinetobacter sp. RG30 and Pseudomonas putida GN04 were overall the most active strains to synthesize indole, produce siderophores, and solubilize phosphorus, and hence selected for further studies. Also, both were able to significantly increase soil conductivity and release Cu from soil compared to control. Glasshouse experiments showed that Cu had a negative effect on plant growth, but inoculation with bacteria promoted plant growth and chlorophyll content in its presence (p<0.05). Notably, the effect of inoculation on plant growth was larger on contaminated than on uncontaminated soil, which suggests an overall bacterial effect for alleviation of stress caused by Cu. Inoculation with RG30 or GN04 improved Cu extraction by maize (p<0.05); interestingly, co-inoculation led to the highest accumulation (200 μg Cu/g plant dry weight). We conclude, therefore, that inoculation with RG30 and GN04 improves metal extraction by increasing plant growth, fitness, and availability of minerals in soil, which represents an important tool for the improvement of phytoextraction processes in polluted environments.
机译:植物修复可以由微生物辅助,微生物可以促进植物生长并增加土壤中重金属的利用率。在这项研究中,我们旨在评估两种植物促生长细菌(PGPB)对玉米对铜(Cu)的植物提取的影响。我们根据菌株合成吲哚化合物,产生铁载体,增溶磷以及增加土壤电导率和土壤中可提取铜的能力来选择菌株。然后,在温室实验中,我们评估了它们增加玉米生物量,叶绿素含量和提取铜的能力。结果显示不动杆菌属。 RG30和恶臭假单胞菌GN04总体上是合成吲哚,产生铁载体和溶解磷的最活跃菌株,因此被选作进一步研究。而且,与对照相比,两者都能够显着提高土壤电导率并从土壤中释放铜。温室实验表明,铜对植物的生长有负面影响,但接种细菌可以促进铜的生长和叶绿素含量(p <0.05)。值得注意的是,接种对植物生长的影响在被污染的土壤上要比在未污染的土壤上大,这表明总体细菌作用可减轻铜引起的胁迫。 RG30或GN04接种可改善玉米对Cu的提取(p <0.05);有趣的是,共同接种导致最高的累积量(200μgCu / g植物干重)。因此,我们得出结论,用RG30和GN04进行接种可通过增加植物的生长,适应性和土壤中矿物质的利用率来改善金属提取,这是改善污染环境中植物提取过程的重要工具。

著录项

  • 来源
    《Water, Air, and Soil Pollution》 |2014年第12期|2232.1-2232.13|共13页
  • 作者单位

    Laboratorio de Microbiologia de Suelos, Centro de Biotecnologia y Bioindustria, Corporacion Colombia de Investigacion Agropecuaria, Corpoica, Mosquera 250014, Colombia,Centro de Investigaciones Microbiologicas (CIMIC), Universidad de los Andes (Uniandes), Cra. 1 # 18 A-10, Bogota D.C. 110311, Colombia;

    Laboratorio de Microbiologia de Suelos, Centro de Biotecnologia y Bioindustria, Corporacion Colombia de Investigacion Agropecuaria, Corpoica, Mosquera 250014, Colombia;

    Centro de Investigaciones Microbiologicas (CIMIC), Universidad de los Andes (Uniandes), Cra. 1 # 18 A-10, Bogota D.C. 110311, Colombia,Graduate Field at Department of Microbiology, Cornell University, Wing Hall, Ithaca, NY 14853, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phytoextraction; Plant growth-promoting bacteria (PGPB); Polluted soils; Copper mobility; Photosynthetic pigments;

    机译:植物提取;促进植物生长的细菌(PGPB);污染的土壤;铜迁移率;光合色素;
  • 入库时间 2022-08-17 13:39:20

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