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Contributions from carbon and nitrogen in roots to closing the yield gap between conventional and organic cropping systems

机译:碳和氮在根系中的贡献在闭合常规和有机种植系统之间的产量差距

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This study investigates the effect of different crop rotation systems on carbon (C) and nitrogen (N) in root biomass as well as on soil organic carbon (SOC). Soils under spring barley and spring barley/pea mixture were sampled both in organic and conventional crop rotations. The amounts of root biomass and SOC in fine (250-253m), medium (425-250m) and coarse (&425m) soil particulate organic matter (POM) were determined. Grain dry matter (DM) and the amount of N in harvested grain were also quantified. Organic systems with varying use of manure and catch crops had lower spring barley grain DM yield compared to those in conventional systems, whereas barley/pea showed no differences. The largest benefits were observed for grain N yields and grain DM yields for spring barley, where grain N yield was positively correlated with root N. The inclusion of catch crops in organic rotations resulted in higher root N and SOC (g C/m(2)) in fine POM in soils under barley/pea. Our results suggest that manure application and inclusion of catch crops improve crop N supply and reduce the yield gap between conventional and organic rotations. The observed positive correlation between root N and grain N imply that management practices aimed at increasing grain N could also increase root N and thus enhance N supply for subsequent crops.
机译:本研究研究了不同作物旋转系统对根生物质中碳(C)和氮(N)的影响以及土壤有机碳(SoC)。在有机和常规的作物旋转中取样春麦和春麦和豌豆混合物下的土壤。测定了细(250-253M),培养基(425-250M)和粗(& GT; 425M)土壤颗粒有机物质(POM)中的根生物量和SOC的量。还量化了谷物干物质(DM)和收获晶粒中的N的量。与传统系统中的那些相比,具有不同使用粪肥和捕获作物的有机系统具有较低的春季大麦谷物DM产量,而麦芽/豌豆没有差异。对于颗粒N产量和颗粒DM产量观察到最大的益处,春麦的颗粒DM产率,其中谷粒N产率与根部N产生正相关。在有机旋转中包含捕获作物导致较高的根N和SOC(G C / M(2 ))在大麦/豌豆下的土壤中的优质pom​​。我们的研究结果表明,粪便应用和捕获作物的含量改善了作物N供应,并降低了常规和有机旋转之间的产量差距。根N和谷物N之间观察到的正相关意味着旨在增加谷物N的管理实践也可以增加根N,从而提高随后作物的N供应。

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