首页> 外文期刊>Water, Air, and Soil Pollution >Vermicomposts and/or Arbuscular Mycorrhizal Fungal Inoculation in Relation to Metal Availability and Biochemical Quality of a Soil Contaminated with Heavy Metals
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Vermicomposts and/or Arbuscular Mycorrhizal Fungal Inoculation in Relation to Metal Availability and Biochemical Quality of a Soil Contaminated with Heavy Metals

机译:mi虫和/或丛枝菌根真菌接种与重金属污染土壤的金属有效性和生化质量有关

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A greenhouse pot experiment was conducted to investigate how the addition of two vermicomposts (commercial or produced from damaged greenhouse tomatoes) and/or inoculation with arbuscular mycorrhizal (AM) fungi affected availability and extractability of P, K and trace metals and biochemical quality of a soil contaminated with heavy metals. The pots were planted with Trifolium repens L., which was harvested 40 days after germination. Shoot and root dry matter of T. repens increased by the addition of both vermicomposts. P, K, Fe, Mn, Cu and Zn uptake by T. repens increased after vermicompost addition, whereas Ni, Pb and Cd concentrations were below the detection limit of the method used. After harvest, AB-DTPA-extractable Fe, Cu, Zn, Cd and Pb decreased in the organically amended soil, whereas AB-DTPA P, K and Mn increased. The addition of both vermicomposts, particularly which made from damaged tomatoes, boosted dehydrogenase, β-glucosidase and urease activities in the postharvest soil, implying a higher microbial functional diversity and biochemical quality in this amended soil. Although phosphatase activities were greater in the postharvest soils with higher AB-DTPA-extractable metals, the other enzyme activities were negatively affected. The inoculation of the soils with AM fungi had weak effects on plant growth, as well as on the availability and extract-ability of metals and enzyme activities compared to non-inoculation.
机译:进行了温室盆栽实验,研究了添加两种ver粉(商业的或由损坏的温室番茄产生的)和/或接种丛枝菌根(AM)真菌如何影响磷,钾和痕量金属的有效性和可萃取性以及甲虫的生化质量。被重金属污染的土壤。盆中种植白三叶,在发芽后40天收获。通过添加两种com茎,可以增加白三叶的芽和根部干物质。添加ver粉后,白三叶草对磷,钾,铁,锰,铜和锌的吸收增加,而镍,铅和镉的浓度低于所用方法的检测极限。收获后,经过有机改良的土壤中可通过AB-DTPA提取的Fe,Cu,Zn,Cd和Pb减少,而AB-DTPA P,K和Mn则增加。两种ver麦,特别是由受损番茄制成的ver麦,在收获后的土壤中均增强了脱氢酶,β-葡萄糖苷酶和脲酶的活性,这意味着在这种改良后的土壤中微生物的功能多样性和生化质量更高。尽管在具有较高AB-DTPA可萃取金属的采后土壤中磷酸酶活性较高,但其他酶活性却受到不利影响。与非接种相比,用AM真菌对土壤进行接种对植物的生长以及金属和酶活性的有效性和提取能力均无影响。

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