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141.
The effects of interspecific fungal interactions between Trametes versicolor and Phanerochaete chrysosporium on laccase activity and enzymatic oxidation of polycyclic aromatic hydrocarbons (PAHs) were investigated. A deadlock between the two mycelia rather than replacement of one fungus by another was observed on an agar medium. The laccase activity in crude enzyme extracts from interaction zones reached a maximum after a 5-day incubation, which was significantly higher than that from regions of T. versicolor or P. chrysosporium alone. The enhanced induction of laccase activity lasted longer in half nutrition than in normal nutrition. A higher potential to oxidize benzo[a]pyrene by a crude enzyme preparation extracted from the interaction zones was demonstrated. After a 48 hr incubation period, the oxidation of benzo[a]pyrene by crude enzyme extracts from interaction zones reached 26.2%, while only 9.5% of benzo[a]pyrene was oxidized by crude extracts from T. versicolor. The oxidation was promoted by the co-oxidant 2,2'-azinobis-3-ethylbenzthiazoline-6-sulphonate diammonium salt (ABTS). These findings indicate that the application of co-culturing of white-rot fungi in bioremediation is a potential ameliorating technique for the restoration of PAH-contaminated soil. 相似文献
142.
Amarpreet Chahal John Bissett Owen Rowland Myron L. Smith S. Shea Miller 《Journal of environmental science and health. Part. B》2013,48(12):945-954
The capacity of two soil fungi, Trichoderma koningii and Penicillium janthinellum, to oxidize n-C10:0 and n-C11:0 fatty acids to CO2 and store intracellular lipids during growth is unknown. This article reports for the first time the metabolism of decanoic acid (DA, C10:0), undecanoic acid (UDA, n-C11:0), a mixture of the acids (UDA+DA) and a mixture of UDA+ potato dextrose broth (PDB) by T. koningii and P. janthinellum and their mixed culture. A control PDB complex substrate was used as a substrate control treatment. The fungal cultures were assayed for their capacity to: (1) oxidize n-C10:0 and n-C11:0 fatty acids to CO2 and (2) store lipids intracellularly during growth. On all four fatty acid substrates, the mixed T. koningii and P. janthinellum culture produced more biomass and CO2 than the individual fungal cultures. Per 150 mL culture, the mixed species culture grown on UDA+PDB and on PDB alone produced the most biomass (7,567 mg and 11,425 mg, respectively). When grown in DA, the mixed species culture produced the least amount of biomass (6,400 mg), a quantity that was lower than those obtained in UDA (7,550 mg) or UDA+DA (7,270 mg). Amounts of CO2 produced ranged from 210 mg under DA to 618 mg under PDB, and these amounts were highly correlated with biomass (r2 = 0.99). Fluorescence microscopy of stained lipids in the mixed fungal cell cultures growing during the exponential phase demonstrated larger fungal cells and higher accumulation of lipids in membranes and storage bodies than those observed during the lag and stationary phases. T. koningii and P. janthinellum grown on n-C10:0 and n-C11:0 fatty acids produced lower amounts of biomass and CO2, but stored higher amounts of intracellular lipids, than when grown on PDB alone. 相似文献
143.
Jirí Gabriel Marina Capelari Petr Rychlovský Milan Krenželok František Zadražil 《毒物与环境化学》2013,95(1-4):141-146
The presence of Cd in substrate (wheat straw) strongly depressed the growth and mineralization of substrate by Agrocybe perfecta. Pleurolus ostreatoroseus was only slightly depressed and Pleurotus sp. CCB 068 increased degradation by the two highest Cd concentration. Mineralization rate of fungal substrate were increased by indigenous soil flora. However increase in Cd concentrations added to the soil depressed mineralisation of organic matter. Cadmium also affected the fruitbody yield and only Pleurotus sp. was able to fructify in high Cd concentrations. Translocation and accumulation of Cd in fruitbodies increased with the increase of Cd concentrations in substrate. 相似文献
144.
利用有机酸改性壳聚糖和交联法制备酸化壳聚糖载体,然后用改性壳聚糖载体固定漆酶。结果表明,甲酸、酒石酸改性壳聚糖的最适条件是壳聚糖与酸的量比分别为100/1(g/mol)、100/0.5(g/mol),戊二醛的浓度分别为1%、2%,缓冲溶液的pH分别为4.4、3.6,反应时间分别为3h、4.5h。两种酸改性的壳聚糖用于漆酶的固定,其酶活都有所提高,尤其用酒石酸改性的壳聚糖载体的效果最好,其酶活提高了57%。 相似文献
145.
146.
基于磁性纳米粒子固定技术的漆酶传感器用于垃圾堆肥中邻苯二酚的检测 总被引:3,自引:0,他引:3
以邻苯二酚为检测目标,研究了一种基于核/壳磁性纳米粒子固定漆酶的邻苯二酚生物传感器制备方法及其在城市生活垃圾堆肥中的应用.制备Fe3O4磁性纳米颗粒,使用正硅酸乙酯(TEOS)和氨丙基三甲氧基硅烷(APTMS)将其功能化并利用戊二醛将漆酶共价固定,借助磁场吸附在磁性碳糊电极上,检测邻苯二酚.固定在电极表面的漆酶保持了很好的活性.该生物传感器的检测线性范围为7.5×10-7~2.75×10-4 mol/L,检测下限达到7.5×10-7 mol/L,达到稳态电流95%所需时间大概为70 s.将该传感器检测堆肥浸出液中酚的含量的结果与高效液相色谱法对比,两者非常接近. 相似文献
147.
为明确生物炭施入后对西瓜连作土壤真菌群落结构及功能类群的长期影响,以西瓜成熟期根区土壤为研究对象,借助Illumina NovaSeq高通量测序技术和 FUNGuild平台,探究不同用量(7.5、15.0和30.0 t·hm-2)生物炭施用3 a后西瓜连作土壤真菌群落组成、多样性及功能的差异,并分析土壤环境因子与真菌群落结构间的关联性.结果表明,添加生物炭3 a后提高了土壤pH、有效磷、速效钾、全氮、有机质和阳离子交换量,降低了土壤碱解氮含量.生物炭的施用改变了西瓜连作土壤真菌群落结构,提高了土壤真菌的丰富度和多样性.所有土壤样本共获得922个OTU,子囊菌门、担子菌门、被孢菌门、壶菌门和球囊菌门为优势真菌类群,占土壤真菌群落的85.70 %~92.45 %,生物炭的施入降低了子囊菌门和担子菌门的相对丰度,增加了被孢菌门和球囊菌门的相对丰度;属水平上,随着生物炭的施用,被孢霉属和囊根壶菌属的相对丰度增加,而镰刀菌属相对丰度降低.Mantel检验分析发现,速效钾、碱解氮、有机质和pH是影响土壤真菌群落结构的主要环境因子.真菌主要营养类型为腐生营养型、病理营养型和共生营养型,中、高剂量生物炭处理显著降低了土壤中病理营养型真菌的相对丰度,显著增加了共生营养型真菌的相对丰度.综上,生物炭施用3 a后可改变西瓜连作土壤理化性质,促进土壤真菌群落结构和功能类群向健康有益方向发展. 相似文献
148.
Phospholipid fatty acid patterns of microbial communities in paddy soil under different fertilizer treatments 总被引:1,自引:0,他引:1
The microbial communities under irrigated rice cropping with different fertilizer treatments, including control (CK), PK, NK, NP, NPK fertilization, were investigated using phospholipid fatty acid (PLFA) profile method. The results of this study revealed that the fertilizer practice had an impact on the community structure of specific microbial groups. The principal components analysis (PCA) showed that proportion of the actinomycete PLFAs (10Me 18:0 and 10Me 16:0) were the lowest in the PK treatment and the highest in the NPK treatment, which means that soil nitrogen status affected the diversity of actinomycetes, whereas nitrogen cycling was related to the actinomycets. Under CK treatment, the ratio of Gram-positive to Gram-negative bacteria was lower compared with that in fertilizer addition treatments, indicating that fertilizer application stimulated Gram-positive bacterial population in paddy soil. The fatty acid 18:2to6,9, which is considered to be predominantly of fungal origin, was at low level in all the treatments. The ratio of cyl9:0 to 18:1 to7, which has been proposed as an indicator of stress conditions, decreased in PK treatment. Changes of soil microbial community under different fertilizer treatments of paddy soil were detected in this study; however, the causes that lead to changes in the microbial community still needs further study. 相似文献
149.
于2014年12月—2015年11月收集了浙江北部地区4个采样点的PM2.5样品,利用高效液相色谱-串联质谱仪分析获得真菌气溶胶示踪物阿糖醇和甘露醇的浓度,研究了浙北地区真菌气溶胶的季节性变化特征及其来源.观测结果显示,浙北地区阿糖醇和甘露醇的年均浓度分别为(5.6±0.7)和(5.7±1.3)ng·m-3.真菌气溶胶示踪物夏季浓度最高,可能是由于当地夏季频繁的生物质燃烧和温暖湿润的气候条件促进了真菌孢子的释放;另外,在该地区真菌孢子对气溶胶中有机碳(OC)的贡献并不显著(1%).主成分分析显示,真菌气溶胶示踪物(阿糖醇、甘露醇)和生物质燃烧示踪物(左旋葡聚糖、甘露聚糖、半乳聚糖、nss-K+)在整个采样过程中都包含在同一个因子中,表明浙北地区大气中真菌气溶胶持续受到生物质燃烧排放源的影响. 相似文献
150.
研究了自然环境、垃圾渗滤液及工业废水中广泛存在的金属离子对真菌漆酶(Trametes versicolor)酶活性以及对漆酶催化降解典型溴代阻燃剂四溴双酚A(TBBPA)的影响.金属离子包括Na+、K+、Zn2+、Cd2+、Cu2+、Hg2+、Fe2+、Fe3+、Pb2+、Al3+能抑制漆酶酶活性和降低TBBPA的降解转化率,抑制效应随着金属离子浓度的升高而增大;Ca2+、Mg2+、Mn2+则对漆酶活性和TBBPA去除率均没有显著影响.金属离子的抑制作用主要是通过干扰漆酶的电子传递过程产生的.其中,Fe2+和Hg2+的抑制效应尤为明显,而二者的抑制机制不同,Fe2+竞争消耗O2,Hg2+则通过与漆酶结构中氨基酸络合,改变其构型从而抑制其活性.此外,通过加入介体物质2,2-联氮-二(3-乙基-苯并噻唑-6-磺酸)二铵盐(ABTS)、2,2,6,6-四甲基哌啶-氮-氧化物(TEMPO)等物质能够显著提高金属离子存在下漆酶对TBBPA的去除率. 相似文献