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Influence of combined pollution of antimony and arsenic on culturable soil microbial populations and enzyme activities

机译:锑砷复合污染对可培养土壤微生物种群和酶活性的影响

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摘要

The effects of both combined and single pollution of antimony (Sb) and arsenic (As) in different concentrations on culturable soil microbial populations and enzyme activities were studied under laboratory conditions. Joint effects of both Sb and As were different from that of Sb or As alone. The inhibition rate of culturable soil microbial populations under Sb and As pollution followed the order: bacterial > fungi > actinomycetes. There existed antagonistic inhibiting effect on urease and acid phophatase and synergistic inhibiting effect on protease under the combined pollution of Sb (III) and As (III). Only urease appeared to be the most sensitive indicator under Sb (V) and As (V) pollution, and there existed antagonistic inhibiting effect on acid phophatase and synergistic inhibiting effect on urease and protease under Sb (V) and As (V) combined pollution at most time. In this study, we also confirmed that the trivalent states of Sb and As were more toxic to all the microbes tested and more inhibitory on microbial enzyme activities then their pentavalent counterparts. The results also suggest that not only the application rate of the two metalloids but also the chemical form of metalloids should be considered while assessing the effect of metalloid on culturable microbial populations and enzyme activities. Urease and acid phosphatase can be used as potential biomarkers to evaluate the intensity of Sb (III) and As (III) stress.
机译:在实验室条件下,研究了不同浓度的锑(Sb)和砷(As)的联合污染和单一污染对可培养土壤微生物种群和酶活性的影响。 Sb和As的共同作用不同于Sb或As的共同作用。 Sb和As污染下可培养土壤微生物种群的抑制率依次为:细菌>真菌>放线菌。在Sb(III)和As(III)联合污染下,对脲酶和酸性磷酸酶具有拮抗作用,对蛋白酶具有协同抑制作用。在Sb(V)和As(V)污染下,只有脲酶似乎是最敏感的指示剂,在Sb(V)和As(V)联合污染下,对酸性磷酸酶具有拮抗作用,对尿素酶和蛋白酶具有协同抑制作用。最多时间。在这项研究中,我们还证实了Sb和As的三价态对所有测试的微生物更具毒性,并且与五价态对应物相比,对微生物酶活性的抑制作用更大。结果还表明,在评估准金属对可培养微生物种群和酶活性的影响时,不仅应考虑两种准金属的施用率,而且应考虑准金属的化学形式。脲酶和酸性磷酸酶可用作潜在的生物标志物,以评估Sb(III)和As(III)胁迫的强度。

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