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通过多种土壤微生物参数测试铜污染土壤在铜扰动后的抗性和恢复力。

Resistance and resilience of Cu-polluted soil after Cu perturbation, tested by a wide range of soil microbial parameters.

作者信息

Deng Huan, Li Xiao-Fang, Cheng Wang-Da, Zhu Yong-Guan

机构信息

Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China.

出版信息

FEMS Microbiol Ecol. 2009 Nov;70(2):137-48. doi: 10.1111/j.1574-6941.2009.00741.x. Epub 2009 Jul 7.

Abstract

Copper (Cu)-polluted and unpolluted soils were used to study the effect of initial pollution on soil biological resistance and resilience by measuring the responses to perturbation using different parameters. Microbial biomass carbon, substrate-induced respiration and copy numbers of 16S rRNA gene were grouped as general parameters, while potential ammonia oxidation rate and copy numbers of amoA gene were grouped as specific functions. In addition, to illustrate how initial pollution affects soil biological resistance and resilience following secondary perturbation, the microbial community structure, together with free Cu(2+) activities ([Cu(2+)]) in soil pore water and soil pH were also measured after secondary perturbation. Results showed that general parameters were more stable than specific ones. High [Cu(2+)] and low pH in soil pore water induced by Cu addition may lead to apparently low resistance and resilience, whereas the formation of a tolerant community after Cu pollution, secondary perturbation and Cu aging may contribute to resistance and resilience. Analysis of the phospholipid fatty acids profile showed that microbial community structure shifted along with the [Cu(2+)] gradient. The microbial community structure of the control soil was both resistant and resilient to 400 mg kg(-1) Cu perturbation, whereas other treatments were neither resistant nor resilient.

摘要

通过使用不同参数测量对扰动的响应,利用铜(Cu)污染和未污染的土壤来研究初始污染对土壤生物抗性和恢复力的影响。微生物生物量碳、底物诱导呼吸和16S rRNA基因拷贝数被归为一般参数,而潜在氨氧化速率和amoA基因拷贝数被归为特定功能。此外,为了说明初始污染如何影响二次扰动后的土壤生物抗性和恢复力,在二次扰动后还测量了微生物群落结构,以及土壤孔隙水中的游离Cu(2+)活性([Cu(2+)])和土壤pH值。结果表明,一般参数比特定参数更稳定。添加铜导致土壤孔隙水中高[Cu(2+)]和低pH值可能导致明显较低的抗性和恢复力,而铜污染、二次扰动和铜老化后形成的耐受群落可能有助于抗性和恢复力。磷脂脂肪酸谱分析表明,微生物群落结构随[Cu(2+)]梯度而变化。对照土壤的微生物群落结构对400 mg kg(-1)铜扰动具有抗性和恢复力,而其他处理既无抗性也无恢复力。

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