Functional diversity of soil microorganisms in the conditions of an ecological farming system

IF 0.9 Q4 ECOLOGY
D. Fazekašová, J. Fazekaš
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引用次数: 2

Abstract

Abstract In the current study, we investigate the relationships among the soil functional diversity, physicochemical properties and heavy metals presence in an ecological farming system. The soil samples were collected from permanent research sites, from A soil horizons, at a depth from 0.05 m to 0.15 m, in June 2018. In fresh soil samples, we evaluated the metabolic profiles of their microbial communities, using Biolog® Eco Plates. The research showed that the soil physical properties got adjusted after a long-term application of an ecological farming system and that the measured values were stabilised, reaching the levels comparable with the average values for the relevant soil type. It is necessary to devote a continual attention to soil reaction, because soil is naturally acidified through acid atmospheric fallout as well as through calcium uptake-off by plants. The values of the selected heavy metals in the monitored period did not exceed the limit values specified in the Act No. 220/2004 Coll. Based on the results of Shannon’s diversity, we can conclude that the diversity in the investigated sites was low, from moderate to medium. The differences (3.26–3.36) among all 11 study localities were very small and not significant. There were determined the correlations between the soil functional diversity, soil physicochemical properties, and heavy metal contents. The average well colour development (AWCD) positively correlated with soil reaction and with Mg content and significantly negatively correlated with contents of Hg, Zn and Cu; equitability significantly positively correlated with soil reaction, Mg, AWCD and Shannon’s diversity. Spearman’s correlation coefficients confirmed the positive correlation between Shannon’s diversity and soil reaction, AWCD and Mg. In our study, no correlation was found between the functional diversity of microorganisms and the soil physical properties.
生态耕作条件下土壤微生物的功能多样性
摘要本研究旨在探讨生态耕作系统土壤功能多样性、理化性质与重金属含量之间的关系。土壤样本于2018年6月从A土层的永久研究地点收集,深度为0.05 m至0.15 m。在新鲜土壤样品中,我们使用Biolog®生态板评估其微生物群落的代谢谱。研究表明,长期应用生态耕作系统后,土壤物理性质得到了调整,测量值趋于稳定,达到了与相关土壤类型平均值相当的水平。有必要持续关注土壤的反应,因为土壤是通过酸性大气沉降物和植物的钙上升而自然酸化的。在监测期间,所选重金属的值没有超过第220/2004 Coll号法案规定的限值。Shannon’s多样性结果表明,调查样地的多样性处于中等到中等的低水平。11个研究地点间的差异(3.26 ~ 3.36)很小,差异不显著。土壤功能多样性、土壤理化性质与重金属含量之间存在一定的相关性。平均井色发育(AWCD)与土壤反应、Mg含量呈正相关,与Hg、Zn、Cu含量呈显著负相关;公平度与土壤反力、Mg、AWCD和Shannon多样性呈显著正相关。Spearman相关系数证实Shannon多样性与土壤反应、AWCD和Mg呈正相关。在我们的研究中,微生物的功能多样性与土壤物理性质之间没有相关性。
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来源期刊
Folia Oecologica
Folia Oecologica Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
2.50
自引率
15.40%
发文量
12
审稿时长
38 weeks
期刊介绍: Folia oecologica is a continuation of the journal Folia dendrologica published in the years 1974 - 1997. Folia oecologica is an international scientific journal. It has published original scientific works in the field of ecology oriented toward forest ecosystems, natural and urbanized environments, plants and animals.
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