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首页> 外文期刊>BioMetals >Abortiporus biennis tolerance to insoluble metal oxides: oxalate secretion, oxalate oxidase activity, and mycelial morphology
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Abortiporus biennis tolerance to insoluble metal oxides: oxalate secretion, oxalate oxidase activity, and mycelial morphology

机译:Abortiporus biennis对不溶性金属氧化物的耐受性:草酸盐分泌,草酸盐氧化酶活性和菌丝体形态

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The ability of Abortiporus biennis to tolerate and solubilize toxic metal oxides (Cu2O, Al2O3, ZnO, CuFe2O4Zn, CdO, and MnO2) incorporated into agar media was investigated and the growth rate, oxalic acid secretion, and mycelial morphology were monitored. Among the tested metal oxides, formation of clear zones underneath the mycelium growing on Cu2O- and ZnO-amended plates was observed. ZnO, CdO and Cu2O caused the highest rate of fungal growth inhibition. An increased level of oxalic acid concentration was detected as a response of A. biennis to the presence of Cu2O, MnO2, ZnO and CuFe2O4Zn in growth medium. The oxalate oxidase (OXO) was found to be responsible for oxalic acid degradation in A. biennis cultivated in metal-amended media. An increased level of OXO was observed in media amended with Cu2O, ZnO and MnO2. Confocal microscopy used in this study revealed changes in mycelial morphology which appeared as increased hyphal branching, increased septation and increased spore number.
机译:Abortiporus biennis耐受和溶解有毒金属氧化物(Cu2 O,Al2 O3 ,ZnO,CuFe2 O4 Zn,CdO和MnO2 <研究掺入琼脂培养基中的细菌的生长速率,草酸分泌和菌丝体形态。在测试的金属氧化物中,观察到在经Cu2O和ZnO修饰的平板上生长的菌丝体下方形成了透明区域。 ZnO,CdO和Cu2 引起真菌生长的抑制率最高。草酸浓度的升高被认为是双歧杆菌对生长培养基中Cu2O,MnO2,ZnO和CuFe2O4Zn的响应。发现草酸氧化酶(OXO)负责在金属改良培养基中培养的双歧草中草酸的降解。在用Cu2 O,ZnO和MnO2 修正的培养基中观察到OXO含量增加。在这项研究中使用的共聚焦显微镜检查揭示了菌丝形态的变化,表现为菌丝分支增加,分隔增加和孢子数增加。

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