首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Status of Soil Microbiome as Affected by the Application of Phosphorus Biofertilizer: Fertilizer Enriched with Beneficial Bacterial Strains
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The Status of Soil Microbiome as Affected by the Application of Phosphorus Biofertilizer: Fertilizer Enriched with Beneficial Bacterial Strains

机译:磷生物枢轴应用的土壤微生物组的地位:富含有益细菌菌株的肥料

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摘要

Regarding the unfavourable changes in agroecosystems resulting from the excessive application of mineral fertilizers, biopreparations containing live microorganisms are gaining increasing attention. We assumed that the application of phosphorus mineral fertilizer enriched with strains of beneficial microorganisms contribute to favourable changes in enzymatic activity and in the genetic and functional diversity of microbial populations inhabiting degraded soils. Therefore, in field experiments conditions, the effects of phosphorus fertilizer enriched with bacterial strains on the status of soil microbiome in two chemically degraded soil types (Brunic Arenosol—BA and Abruptic Luvisol—AL) were investigated. The field experiments included treatments with an optimal dose of phosphorus fertilizer (without microorganisms—FC), optimal dose of phosphorus fertilizer enriched with microorganisms including Paenibacillus polymyxa strain CHT114AB, Bacillus amyloliquefaciens strain AF75BB and Bacillus sp. strain CZP4/4 (FA100) and a dose of phosphorus fertilizer reduced by 40% and enriched with the above-mentioned bacteria (FA60). The analyzes performed included: the determination of the activity of the soil enzymes (protease, urease, acid phosphomonoesterase, β-glucosidase), the assessment of the functional diversity of microorganisms with the application of BIOLOGTM plates and the characterization of the genetic diversity of bacteria, archaea and fungi with multiplex terminal restriction fragment length polymorphism and next generation sequencing. The obtained results indicated that the application of phosphorus fertilizer enriched with microorganisms improved enzymatic activity, and the genetic and functional diversity of the soil microbial communities, however these effects were dependent on the soil type.
机译:关于矿物肥的过度应用导致农业重建的不利变化,含有活微生物的生物制剂正在增加越来越关注。我们认为,富含有益微生物菌株的磷矿物肥料的应用有助于酶活性的有利变化,并在居住地降解土壤的微生物群体的遗传和功能多样性。因此,研究了富含细菌菌株对两种化学降解土壤(Brunic Arenosol-Ba和突发Luvisol-Al)中土壤微生物组织的磷肥肥料对细菌菌株的影响。该田间实验包括具有最佳剂量的磷肥(没有微生物-CC)的治疗,最佳剂量的磷肥富含微生物,包括Paenibacillus polymyxa菌株CHT114ab,氨基杆菌菌株AF75BB和Bacillus Sp。菌株CZP4 / 4(FA100)和磷肥剂量降低40%并富集上述细菌(FA60)。所表现的分析包括:测定土壤酶的活性(蛋白酶,释物,磷酸氨酯酶,β-葡糖苷酶),评估微生物的功能多样性与Biologtm板的应用以及细菌遗传多样性的表征,古代和真菌具有多重终端限制片段长度多态性和下一代测序。所得结果表明,富含微生物的磷肥的应用改善了酶活性,以及​​土壤微生物群落的遗传和功能多样性,但这些影响取决于土壤类型。

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