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Growing media constituents determine the microbial nitrogen conversions in organic growing media for horticulture

机译:生长的培养基成分决定了园艺中有机生长培养基中的微生物氮转化率

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摘要

Vegetables and fruits are an important part of a healthy food diet, however, the eco-sustainability of the production of these can still be significantly improved. European farmers and consumers spend an estimated Euro15.5 billion per year on inorganic fertilizers and the production of N-fertilizers results in a high carbon footprint. We investigated if fertilizer type and medium constituents determine microbial nitrogen conversions in organic growing media and can be used as a next step towards a more sustainable horticulture. We demonstrated that growing media constituents showed differences in urea hydrolysis, ammonia and nitrite oxidation and in carbon dioxide respiration rate. Interestingly, mixing of the growing media constituents resulted in a stimulation of the function of the microorganisms. The use of organic fertilizer resulted in an increase in amoA gene copy number by factor 100 compared to inorganic fertilizers. Our results support our hypothesis that the activity of the functional microbial community with respect to nitrogen turnover in an organic growing medium can be improved by selecting and mixing the appropriate growing media components with each other. These findings contribute to the understanding of the functional microbial community in growing media and its potential role towards a more responsible horticulture.
机译:蔬菜和水果是健康食品饮食的重要组成部分,但仍可以显着提高其生产的生态可持续性。据估计,欧洲农民和消费者每年在无机肥料上的花费为155亿欧元,而氮肥的生产导致碳足迹较高。我们调查了肥料类型和培养基成分是否决定了有机生长培养基中的微生物氮转化,并可以用作迈向更具可持续性的园艺下一步。我们证明,增长的培养基成分在尿素水解,氨和亚硝酸盐氧化以及二氧化碳呼吸速率方面显示出差异。有趣的是,生长培养基成分的混合导致了微生物功能的刺激。与无机肥料相比,有机肥料的使用导致amoA基因拷贝数增加了100倍。我们的结果支持我们的假设,即通过选择并混合适当的生长培养基成分,可以改善功能性微生物群落相对于有机生长培养基中氮转化的活性。这些发现有助于人们理解不断增长的培养基中的功能性微生物群落及其对更负责任的园艺的潜在作用。

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