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在接种了黄孢原毛平革菌和云芝的土壤提取液肉汤中农药混合物的酶活性、渗透胁迫及降解情况

Enzymatic activity, osmotic stress and degradation of pesticide mixtures in soil extract liquid broth inoculated with Phanerochaete chrysosporium and Trametes versicolor.

作者信息

Fragoeiro Silvia, Magan Naresh

机构信息

Applied Mycology Group, Institute of Bioscience and Biotechnology, Cranfield University, Silsoe, Bedford MK45 4DT, UK.

出版信息

Environ Microbiol. 2005 Mar;7(3):348-55. doi: 10.1111/j.1462-2920.2005.00699.x.

Abstract

In this study we examined the extracellular enzymatic activity of two white rot fungi (Phanerochaete chrysosporium and Trametes versicolor) in a soil extract broth in relation to differential degradation of a mixture of different concentrations (0-30 p.p.m.) of simazine, dieldrin and trifluralin under different osmotic stress (-0.7 and -2.8 MPa) and quantified enzyme production, relevant to P and N release (phosphomonoesterase, protease), carbon cycling (beta-glucosidase, cellulase) and laccase activity, involved in lignin degradation. Our results suggest that T. versicolor and P. chrysosporium have the ability to degrade different groups of pesticides, supported by the capacity for expression of a range of extracellular enzymes at both -0.7 and -2.8 MPa water potential. Phanerochaete chrysosporium was able to degrade this mixture of pesticides independently of laccase activity. In soil extract, T. versicolor was able to produce the same range of enzymes as P. chrysoporium plus laccase, even in the presence of 30 p.p.m. of the pesticide mixture. Complete degradation of dieldrin and trifluralin was observed, while about 80% of the simazine was degraded regardless of osmotic stress treatment in a nutritionally poor soil extract broth. The capacity of tolerance and degradation of high concentrations of mixtures of pesticides and production of a range of enzymes, even under osmotic stress, suggest potential bioremediation applications.

摘要

在本研究中,我们检测了两种白腐真菌(黄孢原毛平革菌和云芝)在土壤提取液中与不同浓度(0 - 30 ppm)的西玛津、狄氏剂和氟乐灵混合物的差异降解相关的胞外酶活性,这些降解是在不同渗透胁迫(-0.7和-2.8 MPa)条件下进行的,并且我们对与磷和氮释放相关的酶(磷酸单酯酶、蛋白酶)、碳循环相关的酶(β - 葡萄糖苷酶、纤维素酶)以及参与木质素降解的漆酶活性进行了定量分析。我们的结果表明,在-0.7和-2.8 MPa水势下,云芝和黄孢原毛平革菌都有表达一系列胞外酶的能力,这支持了它们降解不同种类农药的能力。黄孢原毛平革菌能够独立于漆酶活性降解这种农药混合物。在土壤提取液中,即使存在30 ppm的农药混合物,云芝也能够产生与黄孢原毛平革菌相同范围的酶以及漆酶。在营养贫瘠的土壤提取液中,无论渗透胁迫处理如何,均观察到狄氏剂和氟乐灵被完全降解,而约80%的西玛津被降解。即使在渗透胁迫下,对高浓度农药混合物的耐受和降解能力以及产生一系列酶的能力表明其具有潜在的生物修复应用价值。

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