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首页> 外文期刊>Journal of Environmental Management >Functionally dissimilar soil organisms improve growth and Pb/Zn uptake by Stachys inflata grown in a calcareous soil highly polluted with mining activities
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Functionally dissimilar soil organisms improve growth and Pb/Zn uptake by Stachys inflata grown in a calcareous soil highly polluted with mining activities

机译:功能不同的土壤生物可改善生长在受采矿活动严重污染的钙质土壤中的水苏树的生长和对铅/锌的吸收

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摘要

Micro- and macro-organisms are key components of sustainable soil-plant systems; and are involved in plant growth stimulation and accumulation of heavy metals in the plant, with great contribution to phytoremediation of heavy metal-contaminated soils. However, the combined effect of arbuscular mycorrhizal fungi (AMF), plant growth-promoting rhizobacteria (PGPR) and earthworms on plant growth and metal uptake is not yet clear. The main objective of this study was to examine the combined influences of these soil organisms on the growth and metal uptake by a native plant species (Stachys inflata), and subsequently on potential phytoremediation in a soil highly polluted with Pb/Zn mining activities. Metal tolerant AMF, PGPR and earthworms were used either alone or in combination in a factorial pot experiment under greenhouse conditions for 4 months. Inoculation of AMF, PGPR and earthworm led to an increase of soil Pb/Zn availability with the greatest Zn availability (about 2 times) with triple inoculation of all the organisms and the highest Pb availability (about 3 times) with coinoculation of PGPR and earthworms. Triple inoculation of soil organisms increased the total plant biomass 3 times, total Pb uptake 6 times and total Zn uptake 5 times as compared with the uninoculated plants. The growth-stimulating effect of combined soil organisms was much greater than that of individual or dually-inoculated organisms. These results showed that it is possible to use the combination of metal-tolerant soil organisms as a potential bioaugmentation tool to accelerate metal phytoremediation rate in calcareous soils polluted by Pb/Zn mining activity under arid conditions. This could occur as a consequence of the synergistic effects of AMF, PGPR and earthworms on metal availability in the soil, S. inflata growth, metal tolerance and uptake. However, it would practically require more than hundreds of cropping cycles (360 for Pb and 250 for Zn) to achieve metal maximum permissible limits under the conditions of this pot experiment.
机译:微生物和微生物是可持续的土壤植物系统的关键组成部分;并参与植物生长的刺激和植物中重金属的积累,对重金属污染土壤的植物修复有很大贡献。但是,丛枝菌根真菌(AMF),促进植物生长的根际细菌(PGPR)和earth对植物生长和金属吸收的综合作用尚不清楚。这项研究的主要目的是研究这些土壤生物对本地植物物种(Stachys inflata)的生长和金属吸收以及随后对被铅/锌开采活动高度污染的土壤中潜在植物修复的综合影响。耐金属AMF,PGPR和alone在温室条件下的阶乘试验中单独使用或组合使用了4个月。接种AMF,PGPR和worm会导致土壤Pb / Zn利用率增加,其中锌的利用率最高(约2倍),而所有生物均三重接种,而PGPR和earth的共接种则铅含量最高(约3倍) 。与未接种植物相比,三次接种土壤生物使植物总生物量增加了3倍,总Pb吸收了6倍,总Zn吸收了5倍。结合的土壤生物的生长刺激作用远大于单独或双重接种的生物。这些结果表明,在干旱条件下,可以将耐金属土壤生物体的组合用作潜在的生物强化工具,以加快被铅/锌开采活动污染的石灰质土壤中金属的植物修复速率。这可能是由于AMF,PGPR和worm对土壤中金属有效性,膨胀链球菌生长,金属耐受性和吸收的协同作用的结果。但是,在该盆栽试验的条件下,实际上需要超过数百次的种植周期(铅为360个,锌为250个)。

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