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首页> 外文期刊>Journal of Bioremediation & Biodegradation >Remediation of Cadmium Toxicity on Alfalfa (Medicago sativa L.) Using Biochar as a Bioadsorbent, Rhizobium meliloti and Arbuscular Mycorrhizal Fungi as Biofertilizers
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Remediation of Cadmium Toxicity on Alfalfa (Medicago sativa L.) Using Biochar as a Bioadsorbent, Rhizobium meliloti and Arbuscular Mycorrhizal Fungi as Biofertilizers

机译:以生物炭为生物吸附剂,苜蓿根瘤菌和丛枝菌根真菌为生物肥料修复紫花苜蓿对镉的毒性

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摘要

Contamination of agricultural soil is becoming an increasingly serious problem because of long-term exposure to pollutants in irrigation water, sludge, fertilizers, and pesticides. Cadmium (Cd) is one of the most dangerous and potentially toxic metals. Pollution by Cd is especially significant as contaminated soils are used for agriculture; this metal is easily absorbed from soils into crops, inhibiting plant growth and nutrient uptake. So, the present study aimed to elucidate the effect of accumulation Cd over the permissible limits on growth of higher plants, e.g., alfalfa and soil microorganisms, e.g., rhizobium bacteria and arbuscular mycorrhiza fungi. In this study we also attempted to find an optimum solution for the problem of soil pollution with Cd through the application of biochar (BC) as bioadsorbent, rhizobia, (Rh) and arbuscular mycorrhizal fungi (AMF) as biofertilizers. CdCl2 was applied in a pot experiment in presence and absence of BC, AMF and Rh. Cd negatively affected alfalfa growth and yield, content of essential minerals such as N, P, K, Ca and Mg in leaves and roots, activity of nodules nitrogenase and rhizosphere dehydrogenase. AMF colonization % and the total microbial count decreased under Cd stress. Application of BC, AMF and Rh individually or in combination improved alfalfa growth, leaf and root content of essential minerals, fungal population and the microbial count. On the other side, these treatments reduced Cd uptake and translocation from roots to seeds. Solo application of BC contributed in Cd immobilization through the metal adsorption and increasing soil alkalinity. Application of BC together with AMF and Rh significantly promoted alfalfa growth and yield, the leaf and root content of mineral ions, the fungal populations and the microbial count compared to control and Cd stressed plants.
机译:由于长期暴露于灌溉水,污泥,化肥和农药中的污染物,农业土壤的污染正变得日益严重。镉(Cd)是最危险和潜在有毒的金属之一。由于污染的土壤用于农业,镉的污染尤为严重。这种金属很容易从土壤吸收到农作物中,抑制植物的生长和养分吸收。因此,本研究旨在阐明镉累积对高等植物(例如苜蓿)和土壤微生物(如根瘤菌和丛枝菌根真菌)生长的影响。在这项研究中,我们还尝试通过生物炭(BC)作为生物吸附剂,根瘤菌(Rh)和丛枝菌根真菌(AMF)作为生物肥料的应用找到一种解决镉污染土壤的最佳方法。在存在和不存在BC,AMF和Rh的情况下,在盆栽实验中使用CdCl2。镉对苜蓿的生长和产量,叶和根中氮,磷,钾,钙和镁等必需矿物质的含量,根瘤固氮酶和根际脱氢酶的活性均具有负面影响。在Cd胁迫下,AMF的定殖率和总微生物数量均下降。单独施用或同时施用BC,AMF和Rh可改善苜蓿的生长,必需矿物质的叶和根含量,真菌种群和微生物数量。另一方面,这些处理减少了镉吸收和从根到种子的转运。 BC的单独施用通过金属吸附和增加土壤碱度来促进Cd的固定化。与对照和镉胁迫的植物相比,BC与AMF和Rh一起施用可显着促进苜蓿的生长和产量,矿物质离子的叶和根含量,真菌种群和微生物数量。

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