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Conservation tillage and organic farming induce minor variations in Pseudomonas abundance, their antimicrobial function and soil disease resistance

机译:保护耕作和有机耕种诱导假单胞菌丰度,抗微生物功能和土壤疾病抗性的次要变化

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摘要

Conservation tillage and organic farming are strategies used worldwide to preserve the stability and fertility of soils While positive effects on soil structure have been extensively reported, the effects on specific root- and soil-associated microorganisms are less known. The aim of this study was to investigate how conservation tillage and organic farming influence the frequency and activity of plant-beneficial pseudomonads. Amplicon sequencing using the 16S rRNA gene revealed that Pseudomonas is among the most abundant bacterial taxa in the root microbiome of field-grown wheat, independent of agronomical practices. However, pseudomonads carrying genes required for the biosynthesis of specific antimicrobial compounds were enriched m samples from conventionally farmed plots without tillage. In contrast, disease resistance tests indicated that soil from conventional no tillage plots is less resistant to the soilborne pathogen Pythium ultimum compared to soil from organic reduced tillage plots, which exhibited the highest resistance of all compared cropping systems. Reporter strain-based gene expression assays did not reveal any differences in Pseudomonas antimicrobial gene expression between soils from different cropping systems. Our results suggest that plant-beneficial pseudomonads can be favoured by certain soil cropping systems, but soil resistance against plant diseases is likely determined by a multitude of biotic factors in addition to Pseudomonas.
机译:保护耕作和有机农业是全球使用的策略,以保护土壤的稳定性和生育能力,同时已经广泛报道了对土壤结构的积极影响,对特定根和土壤相关微生物的影响较少。本研究的目的是调查保护耕作和有机耕种如何影响植物有益的假单胞菌的频率和活性。使用16S rRNA基因的扩增子测序显示,假单胞菌是野外生长小麦根微生物群中最丰富的细菌分类基因,与农艺实践无关。然而,携带特异性抗菌化合物生物合成所需的基因的假单胞菌被富含养殖地块的M样品富集。相比之下,抗病性试验表明,与来自有机减少的耕作图的土壤相比,来自常规致耕地的土壤对土壤的土壤耐脂肪降低,这表现出所有比较的种植系统的最高抗性。记者基于菌株的基因表达测定没有揭示来自不同种植系统的土壤之间的假单胞菌抗菌基因表达的任何差异。我们的研究结果表明,植物有益的假单胞菌可以受到某些土壤种植系统的青睐,但除了假单胞菌外,植物疾病的土壤抗性可能由多种生物因子决定。

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