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Response of soil micro-ecology to different levels of cadmium in alkaline soil

机译:土壤微生态对碱性土壤中不同水平镉的响应

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Although the effect of heavy metal on soil microbial diversity was widely studied, the interaction among micro ecological environment in heavy metal contaminated soil was less known. In this study, we systematically investigated the influence of cadmium (Cd) on soil micro-ecological environment (pH, nutrient content, soil enzyme activities, microbial biomass, bacterial and fungal diversities). Results showed that pH values slightly decreased with the Cd level increase, whereas the nutrient content including of Olsen-P (OSP), Alkeline-N (ALN), Olsen-K (OSK) and organic matter (OM) did not show significant difference in different treatments. In contrast to physicochemical properties, the biochemical qualities were easily influenced by Cd pollutant, resulting in soil microbial numbers and enzyme activities significantly decreased. High-throughput sequencing showed that microbial community composition was significantly affected by heavy metal. For bacteria, Actinobacteria abundance significantly decreased in Cd treated soil, corresponding to Proteobacteria and Firmicutes increased. For fungi, the most dominant phyla member (Ascomycota) was significantly decreased whereas Zygomycota significantly increased with Cd addition. These results further revealed the integral interrelation of micro ecology environmental players under the stress of different Cd levels.
机译:尽管对重金属对土壤微生物多样性的影响进行了广泛的研究,但对重金属污染土壤中的微生态环境之间的相互作用却鲜为人知。在这项研究中,我们系统地研究了镉(Cd)对土壤微生态环境(pH,营养成分,土壤酶活性,微生物生物量,细菌和真菌多样性)的影响。结果表明,随着Cd含量的增加,pH值略有下降,而Olsen-P(OSP),Alkeline-N(ALN),Olsen-K(OSK)和有机质(OM)的养分含量没有显着差异。在不同的治疗方法。与理化性质相反,Cd污染物容易影响生化质量,导致土壤微生物数量和酶活性显着下降。高通量测序表明,微生物群落组成受重金属的影响很大。对于细菌,经镉处理的土壤中放线菌的丰度显着降低,与变形杆菌和硬菌增加相对应。对于真菌,添加镉后,最主要的门系成员(子囊菌)明显减少,而合子菌则显着增加。这些结果进一步揭示了不同镉水平胁迫下微生态环境参与者的整体相互关系。

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