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Hexavalent chromium stress response, reduction capability and bioremediation potential of Trichoderma sp. isolated from electroplating wastewater

机译:木霉菌的六价铬胁迫响应,还原能力和生物修复潜力。

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In the present study we are investigating the Cr-(VI) reduction potential of a multi-metal tolerant fungus (isolate CR700); isolated from electroplating wastewater. Based on the ITS region sequencing, the isolate was identified as Trichoderma lixii isolate CR700 and able to tolerate As(2000 mg/L), Ni(1500 mg/L), Zn(1200 mg/L), Cu (1200 mg/L), Cr(1000 mg/L), and 100 mg/L of Pb and Cd evident from tolerance assay. Cr-(VI) reduction experiment was conducted in Erlenmeyer flasks containing different concentration of Cr-(VI) (0-200 mg/L) amended potato dextrose broth medium followed by inoculating with a disk (0.5 cm diameter) of 7 days grown isolate CR700, and achieved a maximum of 99.4% within 120 h at 50 mg/L of Cr-(VI). However, the accumulation of total Cr by isolate CR700 was 2.12 +/- 0.15 mg/g of dried biomass at the same concentration after 144 h of exposure. Isolate CR700 showed the capability to reduce Cr-(VI) at different physicochemical stress conditions such as pH, temperature, heavy metals, metabolic inhibitor and also in tannery wastewater. Fungus exhibited multifarious morphological and biochemical response under the exposure of Cr-(VI); the scanning electron microscopic analysis revealed that Cr-(VI) treated mycelia of isolate CR700 comparatively irregular, aggregated and swelled than without treated mycelia which might be due to the tolerance mechanism and vacuolar compartmentation of chromium. Moreover, energy dispersive spectroscopy and x-ray photoelectron spectroscopic analysis exposed the Cr-(III) precipitation on the mycelia surface of isolate CR700 and Fourier-transform infrared spectroscopic analysis suggested the contribution of the protein associated functional group in the complexation of Cr-(VI). The phytotoxicity test of fungal treated 100 mg/L of Cr-(VI) supernatant on Vigna radiata and Cicer arietinum revealed the successful detoxification/remediation of Cr-(VI).
机译:在本研究中,我们正在研究多金属耐受性真菌(CR700分离株)的Cr-(VI)还原潜力。从电镀废水中分离出来。根据ITS区域测序,该分离物被鉴定为木霉菌CR700,能够耐受As(2000 mg / L),Ni(1500 mg / L),Zn(1200 mg / L),Cu(1200 mg / L) ),Cr(1000 mg / L)和100 mg / L的Pb和Cd(从耐受性分析中可以看出)。在装有不同浓度的Cr-(VI)(0-200 mg / L)修正的马铃薯葡萄糖肉汤培养基的锥形瓶中进行Cr-(VI)还原实验,然后接种生长7天的分离盘(直径0.5 cm) CR700,并在50 mg / L的Cr-(VI)下在120小时内达到了99.4%的最大值。然而,在暴露144小时后,分离物CR700在相同浓度下的干燥生物质的总Cr累积量为2.12 +/- 0.15 mg / g。分离物CR700在不同的物理化学应力条件下,例如pH,温度,重金属,代谢抑制剂以及制革废水中,均具有还原Cr-(VI)的能力。 Cr-(VI)暴露下,真菌表现出多种形态和生化反应。扫描电子显微镜分析显示,Cr-(VI)处理的CR700分离菌丝比未处理的菌丝相对不规则,聚集和溶胀,这可能是由于铬的耐受机制和液泡分隔所致。此外,能量色散光谱和X射线光电子能谱分析暴露了分离株CR700菌丝体表面的Cr-(III)沉淀,傅立叶变换红外光谱分析表明蛋白质相关的官能团在Cr-( VI)。真菌处理的100 mg / L Cr-(VI)上清液对Vigna radiata和Cicer arietinum的植物毒性测试表明,对Cr-(VI)进行了成功的解毒/修复。

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