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Effects of Soil Moisture and Nickel Contamination on Microbial Respiration Rates in Heavy Metal-Polluted Soils

机译:土壤水分和镍污染对重金属污染土壤微生物呼吸速率的影响

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摘要

Soil microorganisms may be both sensitive and resilient to various disturbances. The effects of a single stressor on soil microorganisms have been well studied, but only limited research has been carried out to test the effects of simultaneous action of diverse stressors. Soil samples were collected from a long-term polluted zinc and lead site and an unpolluted site. Modeling studies assumed spiking soils with five different concentrations of nickel (400, 800, 1.600, 3.200, and 6.400 mg Ni•kg~(-1) dry weight soil) and their incubation under different humidity conditions (10%, 75%, and 120% of water holding capacity). We wanted to test if additional environmental disturbances have a different effect on microorganisms from polluted and unpolluted soils. The study showed that after 30 and 120 days of incubation, increasing Ni pollution inhibited microbial respiration rate (R), both in unpolluted and long-term metal polluted soils, irrespective of soil moisture. After 30 days of the experiment, microbial communities in both soils demonstrated a similar response to the additional toxicant. However, after 120 days of exposure to Ni, microbial communities from the unpolluted soil showed much higher inhibition of R than microbes from the polluted soils (p<0.001). The results might suggest that Ni co-tolerance mechanisms occurred in long-term metal polluted microbial communities.
机译:土壤微生物对各种干扰可能既敏感又有弹性。单一应激源对土壤微生物的影响已得到很好的研究,但仅进行了有限的研究来测试多种应激源同时作用的影响。从长期污染的锌和铅位点以及未污染的位点收集土壤样品。模型研究假定掺有五种不同浓度镍的土壤(400、800、1.600、3.200和6.400 mg Ni•kg〜(-1)干重土壤),并在不同湿度条件下(10%,75%和持水量的120%)。我们想测试是否其他环境干扰对污染和未污染土壤中的微生物有不同的影响。研究表明,在孵育30天和120天后,无论土壤湿度如何,Ni污染的增加都会抑制未污染和长期金属污染土壤的微生物呼吸速率(R)。实验30天后,两种土壤中的微生物群落对其他毒物的反应相似。然而,在暴露于镍的120天后,未污染土壤中的微生物群落对R的抑制作用比受污染土壤中的微生物高(p <0.001)。这些结果可能表明,镍长期耐受机制发生在长期金属污染的微生物群落中。

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