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Effects of soil application of olive mill wastewaters on the structure and function of the community of arbuscular mycorrhizal fungi

机译:橄榄磨坊废水土壤施用对丛枝菌根真菌群落结构和功能的影响

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Recycling of olive mill wastewaters (OMW) into agricultural soils is a controversial issue since benefits to soil fertility should counterbalance potential short-term toxicity effects. We investigated the short-term effects of OMW on the soilplant system, regarding the diversity, structure and root colonization capacity of arbuscular mycorrhizal (AM) fungi and the respective growth response of Vicia faba L, commonly used as green manure in olive-tree plantations. A compartmentalized pot system was used that allowed the establishment of an AM fungal community in one compartment (feeder) and the application of three OMW dose levels in an adjacent second compartment (receiver). At 0, 10, and 30 days after OMW treatment (DAT), V. faba pre-germinated seeds were seeded in the receiver compartment. At harvest, shoot and root dry weights, AM fungal root colonization, soil hyphal length and P availability were recorded in the receiver compartment. In addition, OMW effects on AM fungal diversity in plant roots were studied by DGGE. A transient effect of OMW application was observed; plant growth and AM fungal colonization were initially inhibited, whereas soil hyphal length was stimulated, but in most cases differences were absent when seeding was performed 30 DAT. Similarly, changes induced in the structure of the root AM fungal community were of transient nature. Cloning and sequencing of all the major DGGE bands showed that roots were colonized by Glomus spp. The transient effects of OMW on the structure and function of AM fungi could be attributed to OMW-derived phytoxicity to V. faba plants or to an indirect effect via alteration of soil nutritional status. The high OMW dose significantly increased soil P availability in the presence of AM fungi, suggesting efficient involvement of AM fungi in organic-P minerilization. Overall our results indicate that soil application of OMW would cause transient changes in the AM fungal colonization of V. faba plants, which, would not impair their long-term plant growth promoting ability.
机译:将橄榄磨坊废水(OMW)再循环到农业土壤中是一个有争议的问题,因为对土壤肥力的好处应抵消潜在的短期毒性影响。我们调查了OMW对土壤植物系统的短期影响,研究了丛枝菌根(AM)真菌的多样性,结构和根部定殖能力,以及通常用作橄榄树人工林绿肥的蚕豆(Vicia faba L)的生长反应。 。使用了分隔的盆栽系统,该系统允许在一个隔室(进料器)中建立AM真菌群落,并在相邻的第二个隔室(接收器)中应用三个OMW剂量水平。在OMW处理(DAT)后的0、10和30天,将蚕豆预发芽的种子播种到接收器隔室中。在收割时,在接收器隔室中记录茎和根的干重,AM真菌根定植,土壤菌丝长度和磷的有效性。此外,DGGE还研究了OMW对植物根系AM真菌多样性的影响。观察到OMW应用的短暂影响;最初抑制了植物的生长和AM真菌定植,而刺激了土壤菌丝的长度,但是在大多数情况下,播种30 DAT时没有差异。同样,根AM真菌群落结构的诱导变化是短暂的。所有主要DGGE条带的克隆和测序表明,根被Glomus spp定殖。 OMW对AM真菌的结构和功能的短暂影响可能归因于OMW对蚕豆的植物毒性,也可能归因于土壤营养状况改变的间接影响。在AM真菌存在下,高OMW剂量显着增加了土壤P的利用率,表明AM真菌有效参与了有机P矿化作用。总体而言,我们的结果表明,土壤施用OMW会引起V. faba植物AM真菌定殖的瞬时变化,这不会损害其长期促进植物生长的能力。

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