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Fungal community profiles in agricultural soils of a long-term field trial under different tillage fertilization and crop rotation conditions analyzed by high-throughput ITS-amplicon sequencing

机译:通过高通量ITS-amplicon测序分析不同耕作施肥和轮作条件下长期田间试验的农业土壤中的真菌群落特征

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摘要

Fungal communities in agricultural soils are assumed to be affected by soil and crop management. Our intention was to investigate the impact of different tillage and fertilization practices on fungal communities in a long-term crop rotation field trial established in 1992 in Central Germany. Two winter wheat fields in replicated strip-tillage design, comprising conventional vs. conservation tillage, intensive vs. extensive fertilization and different pre-crops (maize vs. rapeseed) were analyzed by a metabarcoding approach applying Illumina paired-end sequencing of amplicons generated by two recently developed primer pairs targeting the two fungal Internal Transcribed Spacer regions (ITS1, ITS2). Analysis of 5.1 million high-quality sequence reads uncovered a diverse fungal community in the two fields, composed of 296 fungal genera including 3,398 Operational Taxonomic Units (OTUs) at the 97% sequence similarity threshold. Both primer pairs detected the same fungal phyla (Basidio-, Asco-, Zygo-, Glomero- and Chytridiomycota), but in different relative abundances. OTU richness was higher in the ITS1 dataset, while ITS2 data were more diverse and of higher evenness. Effects of farming practice on fungal community structures were revealed. Almost two-thirds of the fungal genera were represented in all different soil treatments, whereas the remaining genera clearly responded to farming practice. Principal Component Analysis revealed four distinct clusters according to tillage practice and pre-crop. Analysis of Variance (ANOVA) substantiated the results and proved significant influences of tillage and pre-crop, while fertilization had the smallest and non-significant effect. In-depth analysis of putative phytopathogenic and plant beneficial fungal groups indicated distinct responses; for example Fusarium was significantly enriched in the intensively fertilized conservation tillage variants with the pre-crop maize, while Phoma displayed significant association with conventional tillage and pre-crop rapeseed. Many putative plant beneficial fungi also reacted differentially to farming practice with the most distinct responders identified among the Glomeromycota (arbuscular mycorrhizal fungi, AMF).
机译:假定农业土壤中的真菌群落受到土壤和作物管理的影响。我们的目的是在1992年在德国中部进行的一项长期轮作田间试验中,研究不同耕作和施肥方式对真菌群落的影响。通过使用Illumina的双端测序技术对由Meta编码产生的扩增子进行的元条形码分析,分析了两个重复耕作的冬小麦田,包括常规耕作与保护性耕作,密集施肥与广泛施肥以及不同的前茬(玉米与油菜)。针对两个真菌内部转录间隔区(ITS1,ITS2)的两个最近开发的引物对。对510万个高质量序列读数的分析揭示了两个领域中的一个多样化的真菌群落,该群落由296个真菌属组成,包括3398个操作生物分类单位(OTU),序列相似性阈值为97%。两种引物对都检测到相同的真菌门(Basidio-,Asco-,Zygo-,Glomero-和Chytridiomycota),但相对丰度不同。 ITS1数据集中的OTU丰富度更高,而ITS2数据则更多样化且均匀度更高。揭示了耕作方式对真菌群落结构的影响。在所有不同的土壤处理方法中,几乎都有三分之二的真菌属,而其余的属显然对耕作方式有反应。主成分分析显示,根据耕作实践和前茬作物,有四个不同的类群。方差分析(ANOVA)证实了结果,并证明了耕作和前茬作物的影响显着,而施肥的影响最小且无显着性。对推定的植物致病真菌和植物有益真菌基团的深入分析显示出不同的反应。例如,镰刀菌在前茬玉米的密集施肥保护性耕种中显着富集,而Phoma与常规耕作和前茬油菜籽显着相关。许多推定的植物有益真菌对农作的反应也不同,在球菌(丛枝菌根真菌,AMF)中发现了最明显的响应者。

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