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应用 2III7-3 部分因子实验设计提高香菇对高浓度多氯联苯的酶活力。

Application of 2III7-3 fractional factorial experimental design to enhance enzymatic activities of Pleurotus ostreatus with high concentrations of polychlorinated biphenyls.

机构信息

Depto. de Biotecnologia y Bioingenieria, San Pedro, Zacatenco, Mexico.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2011;46(3):298-305. doi: 10.1080/10934529.2011.539095.

Abstract

A 2(III)(7-3) fractional factorial experimental design was used to establish 16 culture media, with and without PCBs to enhance the activities of laccase (Lac), manganese peroxidase (MnP), and versatile peroxidase (VP) produced by the white rot fungus Pleurotus ostreatus. The culture was added to 10,000 mg L(-1) of transformer oil, containing 71% of the identified Arochlor 1242. The culture conditions were established with eight variables at two values (levels); pH (4 and 6), agitation (100 and 200 rpm), CuSO(4) (150 and 250 mg L(-1)), MnSO(4) (50 and 200 mg L(-1)), Tween 80 (13 and 3500 mg L(-1)), wheat straw (0 and 2.5 g L(-1)), sugarcane bagasse (0 and 2.5 g L(-1)),and Arochlor 1242 (0 and 7100 mg L(-1)) at 4, 8, 12, 16 and 20 days old culture. Laccase activity was enhanced at a high value of pH and low value of agitation (P<0.001) and correlated positively (R(2)= 0.9; α=0.05) with the removal of polychlorinated biphenyls (PCBs). VP activity was enhanced 27-fold with PCBs, Tween 80 and pH. The MnP activity was increased 1.2-fold with PCBs. The fractional factorial experimental design methodology allowed us to determine the P. ostreatus culture media conditions to enhance Lac and VP activities for efficient removal of Arochlor 1242 (one of the most recalcitrant organochloride pollutants). The factors that shown the greatest effect on Lac activity were: pH, agitation and high concentrations of Arochlor 1242.

摘要

采用 2(III)(7-3)部分因子实验设计建立了 16 种培养基,其中包括含有和不含有多氯联苯(PCBs)的培养基,以提高白腐菌糙皮侧耳产生的漆酶(Lac)、锰过氧化物酶(MnP)和多功能过氧化物酶(VP)的活性。将培养物添加到 10000mg/L 的变压器油中,其中含有已鉴定的 Arochlor 1242 的 71%。在 pH 值为 4 和 6、搅拌速度为 100 和 200rpm、CuSO4(150 和 250mg/L)、MnSO4(50 和 200mg/L)、吐温 80(13 和 3500mg/L)、小麦秸秆(0 和 2.5g/L)、甘蔗渣(0 和 2.5g/L)和 Arochlor 1242(0 和 7100mg/L)的八个变量在两个水平(值)下,建立了培养条件,培养时间为 4、8、12、16 和 20 天。漆酶活性在高 pH 值和低搅拌速度下(P<0.001)得到增强,并与多氯联苯(PCBs)的去除呈正相关(R(2)=0.9;α=0.05)。VP 活性在添加 PCBs、吐温 80 和 pH 值时增强了 27 倍。MnP 活性在添加 PCBs 时增加了 1.2 倍。部分因子实验设计方法使我们能够确定糙皮侧耳的培养条件,以增强 Lac 和 VP 的活性,从而有效去除 Arochlor 1242(最具抗降解性的有机氯污染物之一)。对 Lac 活性影响最大的因素是:pH 值、搅拌速度和 Arochlor 1242 的高浓度。

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