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Cd⁺²对从芦苇根际分离的土壤传播微真菌的解磷能力和过氧化氢产生的影响。

Effect of Cd⁺² on phosphate solubilizing abilities and hydrogen peroxide production of soil-borne micromycetes isolated from Phragmites australis-rhizosphere.

作者信息

Zúñiga-Silva Jose Roberto, Chan-Cupul Wilberth, Kuschk Peter, Loera Octavio, Aguilar-López Ricardo, Rodríguez-Vázquez Refugio

机构信息

Department of Biotechnology and Bioengineering, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Avenida Instituto Politécnico Nacional 2508, San Pedro Zacatenco, 07360, México, DF, Mexico.

Laboratorio de Fitopatología y Micología Aplicada, Facultad de Ciencias Biológicas y Agropecuarias, Universidad de Colima, Autopista Colima-Manzanillo km 40, C. P. 28100, Tecomán, Colima, México.

出版信息

Ecotoxicology. 2016 Mar;25(2):367-79. doi: 10.1007/s10646-015-1595-5. Epub 2015 Dec 8.

Abstract

The aims of this work were to evaluate the phosphate-solubilization and hydrogen peroxide (H2O2) production by the soil-borne micromycetes, Aspergillus japonicus, Penicillium italicum and Penicillium dipodomyicola, isolated from Phragmites australis rhizosphere and to study the effect of several concentrations of Cadmium (Cd(2+)) on both variables. Our results showed that P. italicum achieved a higher P-solubilization and H2O2 production than A. japonicus and P. dipodomyicola, as only P. italicum showed a positive correlation (R(2) = 0.71) between P-solubilization and H2O2 production. In dose-response assays, P. italicum was also more tolerant to Cd(2+) (0.31 mM) in comparison to A. japonicus (0.26 mM). Analysis of the 2(4) factorial experimental design showed that P-solubilization by P. italicum was negatively affected by increases in Cd(2+) (p = 0.04) and yeast extract (p = 0.02) in the culture medium. The production of H2O2 was positively affected only by glucose (p = 0.002). Fungal biomass production was reduced significantly (p = 0.0009) by Cd(2+) and increased (p = 0.0003) by high glucose concentration in the culture medium. The tolerance and correlation between P-solubilization and H2O2 production in the presence of Cd(2+) was strain and species dependent. The effects of Cd(2+), glucose, ammonium sulfate and yeast extract on those variables were evaluated through a two-level factorial design. P. italicum is promising for P-solubilization in soils contaminated with Cd(2+) and may be an alternative for manufacture of biofertilizers to replace chemical fertilizers.

摘要

本研究旨在评估从芦苇根际分离出的土壤传播的小型真菌日本曲霉、意大利青霉和双足袋形霉的解磷能力和过氧化氢(H2O2)产生情况,并研究几种镉(Cd(2+))浓度对这两个变量的影响。我们的结果表明,与日本曲霉和双足袋形霉相比,意大利青霉具有更高的解磷能力和H2O2产生量,因为只有意大利青霉在解磷能力和H2O2产生量之间呈现正相关(R(2) = 0.71)。在剂量反应试验中,与日本曲霉(0.26 mM)相比,意大利青霉对Cd(2+)(0.31 mM)的耐受性也更强。对2(4)析因实验设计的分析表明,培养基中Cd(2+)(p = 0.04)和酵母提取物(p = 0.02)的增加对意大利青霉的解磷能力产生负面影响。H2O2的产生仅受到葡萄糖的正向影响(p = 0.002)。培养基中Cd(2+)显著降低了真菌生物量的产生(p = 0.0009),而高葡萄糖浓度则增加了真菌生物量的产生(p = 0.0003)。在Cd(2+)存在下,解磷能力和H2O2产生之间的耐受性和相关性取决于菌株和物种。通过二级析因设计评估了Cd(2+)、葡萄糖、硫酸铵和酵母提取物对这些变量的影响。意大利青霉在被Cd(2+)污染的土壤中具有解磷潜力,可能是制造生物肥料以替代化学肥料的一种选择。

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