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首页> 外文期刊>Archives of Agronomy and Soil Science >The effect of nitrogen-modified lignite granules on mycorrhization and root and shoot growth of Secale cereale (winter rye) in a nutrient-deficient, sandy soil
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The effect of nitrogen-modified lignite granules on mycorrhization and root and shoot growth of Secale cereale (winter rye) in a nutrient-deficient, sandy soil

机译:氮改性褐煤颗粒对营养缺乏的沙质土壤中冬黑麦的菌根化和根系和地上部生长的影响

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ABSTRACT Organic soil amendments such as modified lignite and biostimulants like arbuscular mycorrhizal fungi (AMF) may have the potential to improve soil biological conditions of agricultural soils. The aim of the study was to test if nitrogen-modified lignite granules (NH) are beneficial for mycorrhization, root and shoot development compared to common mineral nitrogen (Nmin) in a nitrogen and phosphorus limited soil.A greenhouse experiment with Secale cereale L. was carried out using non-sterilized and sterilized sand substrate treated with NH, AMF or Nmin and AMF+NH and AMF+Nmin and was compared to an untreated substrate (control).7.5 t ha−1 NH and 120 kg Nmin ha−1 led to a similar increase of AMF colonization compared to the control; however, Nmin had a more positive influence on biomass development.Significantly highest mycorrhizal colonization intensity was found for AMF+NH. The co-application of AMF+NH revealed that shoot and root development and shoot nutrient concentrations were significantly higher or were among the significantly highest values, when compared to the other treatments. AMF+NH may be a suitable soil amendment for nutrient-limited soils and may be more sustainable than Nmin due to a combined increase of nitrogen, AMF and carbon/humic acids in the soil that comes with the NH.
机译:摘要 有机土壤改良剂,如改性褐煤和丛枝菌根真菌(AMF)等生物刺激剂,可能具有改善农业土壤土壤生物条件的潜力。该研究的目的是测试在氮磷有限的土壤中,与普通矿物氮 (Nmin) 相比,氮改性褐煤颗粒 (NH) 是否有利于菌根形成、根和芽发育。使用未经灭菌和灭菌的沙基质进行温室实验,该基质用NH,AMF或Nmin和AMF + NH和AMF + Nmin处理,并与未处理的基质(对照)进行比较.与对照组相比,7.5 t ha-1 NH和120 kg Nmin ha-1导致AMF定植增加;然而,Nmin对生物质开发的影响更为积极。AMF+NH的菌根定植强度显著最高。AMF+NH的共同施用表明,与其他处理相比,地上部和根系发育以及地上部养分浓度显著高于或处于显著最高值之列。AMF+NH 可能是养分有限土壤的合适土壤改良剂,并且由于 NH 附带的土壤中氮、AMF 和碳/腐植酸的综合增加,可能比 Nmin 更具可持续性。

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