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首页> 外文期刊>Symbiosis >The effects of the arbuscular mycorrhizal fungusGlomus deserticola on growth of tomato plants grown in the presence of olive mill residues modified by treatment with saprophytic fungi
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The effects of the arbuscular mycorrhizal fungusGlomus deserticola on growth of tomato plants grown in the presence of olive mill residues modified by treatment with saprophytic fungi

机译:丛枝菌根真菌Glomus deserticola对通过腐生真菌处理改性的橄榄磨残余物存在下生长的番茄植株生长的影响

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摘要

Olive oil extraction generates large amounts of olive mill residues (DOR) which may be used as fertilizer. The influence of arbuscular mycorrhizal (AM) on the phytotoxicity of dry olive residue (DOR) transformed with saprophytic fungi was studied. Aqueous extraction of DOR gave an (ADOR) fraction and an exhausted (SDOR) fraction, both of which had less phytotoxicity for tomato than the original DOR. The saprophytic fungiTrametes versicolor andPycnoporus cinnabarinus further decreased the phytotoxicity of ADOR and SDOR on tomato. The decrease of phenols concentration and the differences in the level of laccase activity caused by these fungi suggest did not account fully for the reduced phytoxicity but the fact that the higher hydrolytic enzyme activity ofP. cinnabarinus, paralleled the decrease of phytotoxicity, indicates that these enzymes seem to be involved. The AM fungusGlomus deserticola increased or exacerbated the beneficial effect of SDOR incubated with saprophytic fungi, in terms of dry weight of tomato plants. The percentage of root length colonized byG. deserticola strongly decreased in presence of DOR, but the level of mycorrhization was higher in presence of ADOR or SDOR. Our results suggest that the combination of aqueous extraction and incubation with saprophytic fungi will open the way for the use of olive oil extraction residues as organic amendment in agricultural soils.
机译:橄榄油提取会产生大量的橄榄磨残余物(DOR),可用作肥料。研究了丛枝菌根(AM)对腐生真菌转化的干橄榄渣(DOR)的植物毒性的影响。用水提取DOR可以得到(ADOR)馏分和耗尽(SDOR)馏分,两者对番茄的植物毒性都小于原始DOR。腐生真菌杂色Trametes和朱砂比克努比(Pycnoporus cinnabarinus)进一步降低了ADOR和SDOR对番茄的植物毒性。这些真菌引起的酚类物质浓度降低和漆酶活性水平的差异,并不完全说明降低的植物毒性,而是P水解酶活性较高的事实。朱砂,与植物毒性的降低平行,表明这些酶似乎参与其中。就番茄植物的干重而言,AM真菌Glomus deserticola增加或加剧了与腐生真菌一起培养的SDOR的有益作用。 G定植的根长百分比。在存在DOR的情况下,沙漠菌强烈减少,但在存在ADOR或SDOR的情况下,菌根的水平较高。我们的结果表明,水提取和与腐生真菌一起孵育将为在农业土壤中使用橄榄油提取残留物作为有机改良剂开辟道路。

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