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Effect of continuous olive mill wastewater applications, in the presence and absence of nitrogen fertilization, on the structure of rhizosphere-soil fungal communities

机译:在有氮肥和无氮肥的情况下,连续施用橄榄厂废水对根际土壤真菌群落结构的影响

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Olive mill wastewater (OMW) is rich in potentially toxic organics precluding its disposal into water receptors. However, land application of diluted OMW may result in safe disposal and fertilization. In order to investigate the effects of OMW on the structure of soil fungal groups, OMW was applied daily to pepper plants growing in a loamy sand and a sandy loam at two doses for a period of 3 months (total OMW equivalents 900 and 1800 m(3) ha(-1)). Nitrogen (N) fertilization alleviated N scarcity and considerably enhanced plant biomass production; however, when applied in combination with the high OMW dose, it induced plant stress. OMW applications resulted in marked changes in the denaturing gradient gel electrophoresis patterns of soil basidiomycete communities, while concurrent N fertilization reduced these effects. In contrast, the ascomycete communities required N fertilization to respond to OMW addition. Cloning libraries for the basidiomycete communities showed that Cryptococcus yeasts and Ceratobasidium spp. dominated in the samples treated with OMW. In contrast, certain plant pathogenic basidiomycetes such as Thanatephorus cucumeris and Athelia rolfsii were suppressed. The observed changes may be reasonably explained by the capacity of OMW to enrich soils in organic substrates, to induce N immobilization and to directly introduce OMW-derived basidiomycetous yeasts.
机译:橄榄磨坊废水(OMW)富含潜在的有毒有机物,因此无法将其丢弃到水接收器中。但是,在土地上使用稀释的OMW可能会导致安全处置和施肥。为了研究OMW对土壤真菌群体结构的影响,每天将OMW应用于两个剂量的壤土沙质和沙质壤土中生长的胡椒植物,剂量为3个月(总OMW当量900和1800 m( 3)ha(-1))。施氮减少了氮的缺乏,大大提高了植物生物量的产量。但是,当与高OMW剂量组合使用时,会引起植物胁迫。 OMW的应用导致土壤担子菌群落的变性梯度凝胶电泳模式发生了显着变化,而同时施氮减少了这些影响。相比之下,子囊菌群落需要施肥以响应OMW的添加。担子菌群落的克隆文库显示,隐球菌酵母和角柏属。在用OMW处理的样品中占主导地位。相比之下,某些植物病原性担子菌如丘脑藻和罗氏雅典娜被抑制。可以通过OMW富集有机基质中的土壤,诱导N固定以及直接引入OMW衍生的担子菌酵母的能力来合理解释观测到的变化。

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