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首页> 外文期刊>Microbial Ecology: An International Journal >Organic Amendments in a Long-term Field Trial-Consequences for the Bulk Soil Bacterial Community as Revealed by Network Analysis
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Organic Amendments in a Long-term Field Trial-Consequences for the Bulk Soil Bacterial Community as Revealed by Network Analysis

机译:在网络分析揭示的散装土壤细菌群体的长期田间试验中的有机修改

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摘要

This study intended to elucidate the long-term effects of organic soil amendments on bacterial co-occurrence in bulk soil with and without addition of mineral fertiliser. Previous research mostly neglected the bacterial co-occurrence structure and focussed mainly on the parameters species diversity and abundance changes of species. Here we present a systematic comparison of two frequently used soil amendments, manure and straw, with regard to their impact on bacterial co-occurrence in a long-term field trial in Speyer, Germany. The approach involved 16S amplicon sequencing in combination with a bacterial network analysis, comparing the different fertiliser regimes. The results show an increase of bacterial diversity as well as an accumulation of bacteria of the order Bacillales in plots fertilised with manure compared to a control treatment. In the straw-amended plots neither an increase in diversity was found nor were indicative species detectable. Furthermore, network analysis revealed a clear impact of mineral fertiliser addition on bacterial co-occurrence structure. Most importantly, both organic amendments increased network complexity irrespective of mineral fertilisation regime. At the same time, the effects of manure and straw exhibited differences that might be explained by differences in their nutritional/chemical contents. It is concluded that bacterial interactions are a crucial parameter for the assessment of amendment effects regarding soil health and sustainability.
机译:该研究旨在阐明有机土壤修正对散装土壤中细菌共发生的长期影响,含有矿物肥料。以前的研究大多被忽视了细菌共生结构,主要侧重于参数物种多样性和物种的丰富变化。在这里,我们对两种常用的土壤修正案,粪肥和稻草进行了系统的比较,关于它们对德国Speyer的长期野外试验中的细菌共同发生。该方法涉及16S扩增子测序与细菌网络分析组合,比较不同的肥料制度。结果表明,与对照处理相比,细菌多样性的增加以及用粪肥施肥的秩序杆状菌的累积积累。在秸秆修正的地块中,发现多样性的增加也不是指示性物种可检测到的。此外,网络分析显示矿物肥料对细菌共生结构的显着影响。最重要的是,无论矿泉施肥制度如何,有机修正都增加了网络复杂性。与此同时,粪肥和秸秆的影响表现出差异可能在其营养/化学含量的差异解释。结论是,细菌相互作用是评估土壤健康和可持续性的修正效应的关键参数。

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