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Assessment of toxic impact of metals on proline, antioxidant enzymes, and biological characteristics of Pseudomonas aeruginosa inoculated Cicer arietinum grown in chromium and nickel-stressed sandy clay loam soils

机译:评估金属对铬和镍胁迫的沙壤土上生长的铜绿假单胞菌接种的苹果蜡菊的脯氨酸,抗氧化酶和生物学特性的金属毒性影响

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摘要

Considering the heavy metal risk to soil microbiota and agro-ecosystems, the study was designed to determine metal toxicity to bacteria and to find metal tolerant bacteria carrying multifarious plant growth promoting activities and to assess their impact on chickpea cultivated in stressed soils. Metal tolerant strain SFP1 recognized as Pseudomonas aeruginosa employing 16S rRNA gene sequence determination showed maximum tolerance to Cr (400 mu g/ml) and Ni (800 mu g/ml) and produced variable amounts of indole acetic acid, HCN, NH3, and ACC deaminase and could solubilize insoluble phosphates even under Cr (VI) and Ni stress. Metal tolerant P. aeruginosa reduced toxicity of Cr (VI) and Ni and concomitantly enhanced the performance of chickpea grown under stressed and conventional soils. At 144 mg Cr kg(-1), the measured parameters of a bacterial strain was significantly enhanced, but it was lower compared to those recorded at 660 mg Ni kg(-1). The strain SFP1 demonstrated maximum increase in seed yield (81%) and grain protein (16%) at 660 mg Ni kg(-1) over uninoculated and untreated control. Stressed plants had more proline, antioxidant enzymes, and metal concentrations in plant tissues. P. aeruginosa, however, remarkably declined the level of stress markers (proline and APX, SOD, CAT, and GR), as well as with Cr (VI) and Ni uptake by chickpea. Conclusively, P. aeruginosa strain SFP1 due to its dual metal tolerant ability, capacity to secrete plant growth promoting regulators even under metal stress and potential to mitigate metal toxicity, could be developed as microbial inoculant for enhancing chickpea production in Cr and Ni contaminated soils.
机译:考虑到重金属对土壤微生物和农业生态系统的危害,该研究旨在确定金属对细菌的毒性,并发现具有多种植物生长促进活性的耐金属细菌,并评估其对在压力土壤中种植的鹰嘴豆的影响。通过16S rRNA基因序列测定,金属耐受性菌株SFP1被识别为铜绿假单胞菌,显示出对Cr(400μg / ml)和Ni(800μg / ml)的最大耐受性,并产生了不同量的吲哚乙酸,HCN,NH3和ACC脱氨酶,甚至在Cr(VI)和Ni胁迫下也可以溶解不溶性磷酸盐。金属耐受性铜绿假单胞菌降低了Cr(VI)和Ni的毒性,并同时提高了在压力和常规土壤下生长的鹰嘴豆的性能。在144 mg Cr kg(-1)时,细菌菌株的测量参数显着提高,但与660 mg Ni kg(-1)记录的参数相比较低。与未接种和未处理的对照相比,菌株SFP1在660 mg Ni kg(-1)时显示出最大的种子产量(81%)和谷物蛋白(16%)增加。胁迫植物在植物组织中具有更多的脯氨酸,抗氧化酶和金属浓度。但是,铜绿假单胞菌显着降低了胁迫标志物(脯氨酸和APX,SOD,CAT和GR)的水平,鹰嘴豆对Cr(VI)和Ni的吸收也降低了水平。总之,铜绿假单胞菌菌株SFP1具有双重金属耐受能力,即使在金属胁迫下也能分泌植物生长促进调节剂的能力以及减轻金属毒性的潜力,因此可以作为微生物接种剂开发,以增强受Cr和Ni污染的土壤中鹰嘴豆的产量。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2018年第5期|290.1-290.18|共18页
  • 作者单位

    Aligarh Muslim Univ, Fac Agr Sci, Dept Agr Microbiol, Aligarh 202002, Uttar Pradesh, India;

    Aligarh Muslim Univ, Fac Agr Sci, Dept Agr Microbiol, Aligarh 202002, Uttar Pradesh, India;

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

    Metals; PGPR; Bioremediation; Chickpea; Antioxidant enzymes;

    机译:金属;PGPR;生物修复;鹰嘴豆;抗氧化酶;
  • 入库时间 2022-08-17 13:25:30

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