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首页> 外文期刊>Archives of Agronomy and Soil Science >Novel rock mineral fertiliser application with microbial consortium inoculant enhances growth, yield and grain protein content of wheat (Triticum aestivum L.) in sandy soil
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Novel rock mineral fertiliser application with microbial consortium inoculant enhances growth, yield and grain protein content of wheat (Triticum aestivum L.) in sandy soil

机译:施用微生物联合菌剂施用新型岩肥可提高沙质土壤小麦(Triticum aestivum L.)的生长、产量和籽粒蛋白质含量

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摘要

Grain yield and protein concentration are critical traits determining wheat economic value and are dependent on nitrogen (N) supply and crop N status. However, application of N fertilisers is costly and has a large environmental footprint. We assessed the effect of slow-release rock mineral fertiliser (RMF) with or without microbial consortium inoculant (MI) on growth, grain yield and protein content of winter wheat grown in a low-fertility soil. The experiment was set up with three factors RMF rates (0, 10 and 20 mg N kg(-1) soil), MI (with and without) and two wheat genotypes replicated four times and harvested twice (anthesis and maturity). The addition of MI increased root biomass at anthesis, but there was no effect at maturity. The shoot and grain nutrient content and protein yield were highest in plants treated with 20 mg N kg(-1) soil. The plants treated with MI resulted in lower grain protein concentration than without MI. Arbuscular mycorrhizal (AM) colonisation was higher in treatment with than without MI. The application of RMF at 20 mg N kg(-1) soil produced higher plant growth, nutrient content, grain and protein yield compared to control in nutrient-poor sandy soil.
机译:籽粒产量和蛋白质浓度是决定小麦经济价值的关键性状,取决于氮素供应和作物氮素状况。然而,施用氮肥成本高昂,对环境的影响也很大。本研究评估了含或不含微生物联合接种剂(MI)的缓释岩肥(RMF)对低肥力土壤中冬小麦生长、产量和蛋白质含量的影响。试验设置了3个因子[RMF速率(0、10和20 mg N kg(-1)土壤)、MI(有和无)和两种小麦基因型],重复4次,收获2次(开花和成熟)。MI的添加增加了开花时根系生物量,但在成熟时没有影响。20 mg N kg(-1)土壤处理植株的地上部、籽粒养分含量和蛋白质产量最高。与未处理MI相比,用MI处理的植物导致籽粒蛋白浓度更低。与对照组相比,在20 mg N kg(-1)土壤中施用RMF可提高植物生长、养分含量、籽粒和蛋白质产量。

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