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Soil biota enhance agricultural sustainability by improving crop yield, nutrient uptake and reducing nitrogen leaching losses

机译:土壤生物区系通过提高作物产量,吸收养分并减少氮淋失而增强了农业的可持续性

摘要

Efficient resource use is a key factor for sustainable production and a necessity for meeting future global food demands. However, the factors that control resource use efficiency in agro-ecosystems are only partly understood.udWe investigated the influence of soil biota on nutrient leaching, nutrient-use efficiency and plant performance in outdoor, open-top lysimeters comprising a volume of 230 L. The lysimeters were filled with sterilized soil in two horizons and inoculated with a reduced soil-life inoculum (soil biota ≤11 μm, microbially dominated) and an enriched soil-life inoculum [soil organisms ≤2 mm, also containing arbuscular mycorrhizal fungi (AMF)]. A crop rotation was planted, and nutrient leaching losses, plant biomass and nutrient contents were assessed over a period of almost 2 years.udIn the first year of the experiment, enriched soil life increased crop yield (+22%), N uptake (+29%) and P uptake (+110%) of maize and strongly reduced leaching losses of N (−51%, corresponding to a reduction of 76 kg N ha−1). In the second year, wheat biomass (+17%) and P contents (+80%) were significantly increased by enriched soil life, but the differences were lower than in the first year.udEnriched soil life also increased P mobilization from soil (+112%) and significantly reduced relative P leaching losses (−25%), defined as g P leached per kg P plant uptake, as well as relative N leaching losses (−36%), defined as kg N leached per kg N plant uptake, demonstrating that nutrient-use efficiency was increased in the enriched soil-life treatment.udSynthesis and applications. Soil biota are a key factor determining resource efficiency in agriculture. The results suggest that applying farming practices, which favour a rich and abundant soil life (e.g. reduced tillage, organic farming, crop rotation), can reduce environmental impacts, enhance crop yield and result in a more sustainable agricultural system. However, this needs to be confirmed in field situations. Enhanced nutrient-use efficiency obtained through farming practices which exert positive effects on soil biota could result in reduced amounts of fertilisers needed for agricultural production and reduced nutrient losses to the environment, providing benefits of such practices beyond positive effects on biodiversity.
机译:有效利用资源是可持续生产的关键因素,也是满足未来全球粮食需求的必要条件。但是,对控制农业生态系统资源利用效率的因素只有部分了解。 ud我们研究了土壤生物区系对容积为230 L的室外开放式蒸渗仪的养分浸出,养分利用效率和植物性能的影响。 。溶菌仪在两个视野中充满了无菌土壤,并接种了减少的土壤生命接种物(土壤生物群≤11μm,以微生物为主)和丰富的土壤生命接种物(土壤生物体≤2mm,也包含丛枝菌根真菌( AMF)]。种植了农作物轮作,并在近2年的时间里评估了养分的淋失,植物生物量和养分含量。 ud在实验的第一年,丰富的土壤寿命增加了农作物的产量(+ 22%),氮素的吸收(玉米+ 29%)和磷的吸收(+ 110%),并显着减少了氮的淋失(-51%,相当于减少了76 kg N ha-1)。第二年,丰富的土壤生物量显着增加了小麦生物量(+ 17%)和磷含量(+ 80%),但差异低于第一年。 + 112%)并显着降低了相对P淋失损失(−25%),定义为每千克P植株吸收的g P淋失,以及相对N淋失损失(−36%),定义为每kg N植株淋溶的N N吸收,表明在丰富的土壤寿命处理中提高了养分的利用效率。 ud合成与应用。土壤生物区系是决定农业资源效率的关键因素。结果表明,采用有利于丰富土壤生活的耕作方式(例如减少耕种,有机耕作,轮作作物),可以减少环境影响,提高作物产量并实现更可持续的农业体系。但是,这需要在现场情况下确认。通过耕作方法对土壤生物区系产生积极影响而提高的养分利用效率,可以减少农业生产所需肥料的用量,并减少对环境的养分流失,从而使这种做法的益处超出了对生物多样性的积极影响。

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