赤泥对土壤微生物群落的影响:Biolog EcoPlate 方法在土壤微生物学研究中的应用及综合评价。

Influence of red mud on soil microbial communities: Application and comprehensive evaluation of the Biolog EcoPlate approach as a tool in soil microbiological studies.

机构信息

Budapest University of Technology and Economics, Faculty of Chemical Technology and Biotechnology, Department of Applied Biotechnology and Food Science, 1111 Budapest, Műegyetem Rkp. 3, Hungary.

Budapest University of Technology and Economics, Faculty of Chemical Technology and Biotechnology, Department of Applied Biotechnology and Food Science, 1111 Budapest, Műegyetem Rkp. 3, Hungary.

出版信息

Sci Total Environ. 2017 Oct 1;595:903-911. doi: 10.1016/j.scitotenv.2017.03.266. Epub 2017 Apr 19.

Abstract

Red mud can be applied as soil ameliorant to acidic, sandy and micronutrient deficient soils. There are still knowledge gaps regarding the effects of red mud on the soil microbial community. The Biolog EcoPlate technique is a promising tool for community level physiological profiling. This study presents a detailed evaluation of Biolog EcoPlate data from two case studies. In experiment "A" red mud from Ajka (Hungary) was mixed into acidic sandy soil in soil microcosms at 5-50 w/w%. In experiement "B" red mud soil mixture was mixed into low quality subsoil in a field experiment at 5-50 w/w%. According to average well color development, substrate average well color development and substrate richness 5-20% red mud increased the microbial activity of the acidic sandy soil over the short term, but the effect did not last for 10months. Shannon diversity index showed that red mud at up to 20% did not change microbial diversity over the short term, but the diversity decreased by the 10th month. 30-50% red mud had deteriorating effect on the soil microflora. 5-20% red mud soil mixture in the low quality subsoil had a long lasting enhancing effect on the microbial community based on all Biolog EcoPlate parameters. However, 50% red mud soil mixture caused a decrease in diversity and substrate richness. With the Biolog EcoPlate we were able to monitor the changes of the microbial community in red mud affected soils and to assess the amount of red mud and red mud soil mixture applicable for soil treatment in these cases.

摘要

红泥可以作为土壤改良剂应用于酸性、沙质和微量元素缺乏的土壤。关于红泥对土壤微生物群落的影响,仍存在知识空白。Biolog EcoPlate 技术是一种用于群落水平生理分析的很有前途的工具。本研究通过两个案例研究详细评估了 Biolog EcoPlate 数据。在实验“A”中,将来自阿伊卡(匈牙利)的红泥以 5-50 w/w%的比例混入酸性沙质土壤的土壤微宇宙中。在实验“B”中,将红泥-土壤混合物以 5-50 w/w%的比例混入田间试验中的低质量底土中。根据平均好氧颜色发展、基质平均好氧颜色发展和基质丰富度,5-20%的红泥在短期内增加了酸性沙质土壤的微生物活性,但这种效果没有持续 10 个月。香农多样性指数表明,短期内红泥含量高达 20%不会改变微生物多样性,但第 10 个月多样性下降。30-50%的红泥对土壤微生物群有恶化作用。在低质量底土中,5-20%的红泥-土壤混合物对微生物群落具有持久的增强作用,所有 Biolog EcoPlate 参数均如此。然而,50%的红泥-土壤混合物导致多样性和基质丰富度降低。通过 Biolog EcoPlate,我们能够监测受红泥影响土壤中微生物群落的变化,并评估在这些情况下适用的红泥和红泥-土壤混合物的量。

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