Research and Innovation Centre, Fondazione Edmund Mach (FEM), San Michele all' Adige (TN), Italy.
J Appl Microbiol. 2017 Dec;123(6):1547-1560. doi: 10.1111/jam.13606. Epub 2017 Nov 3.
The aim of this work was to investigate the effects of biodynamic management with and without the addition of green manure, in comparison with organic management, on the microbiota in vineyards soil.
High throughput sequencing was used to compare the taxonomic structure of the soil bacterial and fungal communities from vineyards managed with different methods (organic, biodynamic or biodynamic with green manure). Our results showed that microbial communities associated with biodynamic and organic farming systems were very similar, while green manure was the greatest source of soil microbial biodiversity and significantly changed microbial richness and community composition compared with other soils. Green manure also significantly enriched bacterial taxa involved in the soil nitrogen cycle (e.g. Microvirga sp., Pontibacter sp. and Nitrospira sp.).
Our results showed that the diversity and composition of the microbial communities associated with biodynamic and organic farming systems were similar, indicating that the use of biodynamic preparations 500 and 501 did not cause any significant detectable changes to the soil microbial community in the short term, while the effects of green manure were significant in soil microbiota.
The microbiological richness and structure of soil are used as a sensitive indicator of soil quality. The extension of organic/biodynamic farming, associated with green manure application, could contribute to increase the abundance of functional groups of biological and agronomical relevance and maintaining microbial biodiversity in vineyard soils.
本研究旨在调查生物动力管理(添加或不添加绿肥)与有机管理对葡萄园土壤微生物群的影响。
本研究采用高通量测序技术比较了不同管理方式(有机、生物动力或生物动力加绿肥)葡萄园土壤中细菌和真菌群落的分类结构。结果表明,与有机农业系统相关的微生物群落非常相似,而绿肥是土壤微生物生物多样性的最大来源,与其他土壤相比,绿肥显著改变了微生物丰富度和群落组成。绿肥还显著富集了参与土壤氮循环的细菌分类群(例如,Microvirga sp.、Pontibacter sp. 和 Nitrospira sp.)。
本研究结果表明,与生物动力和有机农业系统相关的微生物群落的多样性和组成相似,表明在短期内,生物动力制剂 500 和 501 的使用不会对土壤微生物群落造成任何明显的可检测变化,而绿肥对土壤微生物群的影响是显著的。
土壤微生物丰富度和结构可用作土壤质量的敏感指标。有机/生物动力农业的推广,结合绿肥的应用,可以增加生物和农学相关功能群的丰度,并维持葡萄园土壤中的微生物多样性。