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首页> 外文期刊>Journal of Environmental Management >Implications of mycoremediated dry olive residue application and arbuscular mycorrhizal fungi inoculation on the microbial community composition and functionality in a metal-polluted soil
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Implications of mycoremediated dry olive residue application and arbuscular mycorrhizal fungi inoculation on the microbial community composition and functionality in a metal-polluted soil

机译:Mycore介导的干橄榄渣施用和丛枝菌根真菌接种对金属污染土壤中微生物群落组成和功能的影响

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Metal-polluted soils represent hostile environments affecting the composition and functions of soil microbial communities. This study evaluated the implication of combining the mycoremediated dry olive residue (MDOR) amendment application with the inoculation of the arbuscular mycorrhizal fungi (AMF) Fwineliformis mosseae in restoring the quality, composition, and functionality of soil microbial communities. To achieve this aim, a mesocosms experiment was set up that included three variations: i) with and without application of Penicilliwn chrysogenum-10-transformed MDOR (MDOR_Pc), and Chondrosterwn pwpureum-transformed MDOR (MDOR_Cp) amendments; ii) with and without F. mosseae inoculation; and iii) 30-day and 60-day soil treatment time. As a result of this combined treatment, changes in the soil labile organic C and N fractions were observed throughout the experiment. Increases in the abundance of phospholipid fatty acids (PLFAs) for bacteria, actinobacteria, and Gram and Gram + bacteria were also recorded at the end of the experiment. The addition of MDOR amendments boosted fungal and AM fungi communities. AM fungi root and soil colonization was also enhanced as the result of improvement nutrient turnover and spatial conditions caused by adding MDOR in combination with an inoculation of F. mosseae. The composition and functionality of microbial communities seemed to be an important ecological attribute indicating an apparently fully functional restoration of this metal-polluted soil and therefore suggesting the suitability of the combined MDOR and AM fungus treatment as a reclamation practice.
机译:金属污染的土壤是影响土壤微生物群落组成和功能的不利环境。这项研究评估了将mycore介导的干橄榄残留物(MDOR)改良剂与接种丛枝菌根真菌(Faneliformis mosseae)组合对恢复土壤微生物群落的质量,组成和功能的影响。为了实现这一目标,建立了一个中观实验,包括三个变体:i)有或没有应用Penicilliwn chrysogenum-10-转化的MDOR(MDOR_Pc)和Chondrosterwn pwpureum转化的MDOR(MDOR_Cp)修正; ii)接种和不接种F. mosseae; iii)30天和60天的土壤处理时间。这种联合处理的结果是,在整个实验过程中都观察到土壤不稳定的有机碳和氮组分的变化。在实验结束时,还记录到细菌,放线菌和革兰氏和革兰氏+细菌的磷脂脂肪酸(PLFA)含量增加。 MDOR修正案的增加增加了真菌和AM真菌的群落。通过添加MDOR和接种F. mosseae改善营养物质周转和空间条件,AM真菌的根和土壤定殖也得到了增强。微生物群落的组成和功能似乎是一个重要的生态属性,表明该金属污染土壤的表面功能已完全恢复,因此表明将MDOR和AM真菌联合处理作为复垦措施的适用性。

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