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Mycorrhiza formation and nutrient concentration in leeks (Allium porrum) in relation to previous crop and cover crop management on high P soils

机译:高磷土壤上韭菜(韭菜)的菌根形成和养分浓度与以前的作物和覆盖作物管理有关

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摘要

An improved integration of mycorrhizas may increase the sustainability in plant production. Two strategies for increasing the soil inoculum potential of mycorrhizal fungi were investigated in field experiments with leeks: Pre-cropping with mycorrhizal main crops and pre-establishment of mycorrhizal cover crops. Experiments on soils with moderate to high P content (26–50 mg kg−1 bicarbonate-extractable P) showed that the previous crop influenced mycorrhiza formation, uptake of P, Zn, and Cu, and early growth of leek seedlings. A cover crop of black medic, established the previous autumn, increased the colonization of leek roots by mycorrhizal fungi. During early growth stages, this increase was 45–95% relative to no cover crop. However, cover cropping did not significantly increase nutrient concentration or growth. These variables were not influenced by the time of cover crop incorporation or tillage treatments. Differences in colonization, nutrient uptake and plant growth diminished during the growing period and at the final harvest date, the effects on plant production disappeared. High soil P level or high soil inoculum level was most likely responsible for the limited response of increased mycorrhiza formation on plant growth and nutrient concentrations.
机译:菌根融合度的提高可以提高植物生产的可持续性。在韭菜田间试验中,研究了两种增加菌根真菌土壤接种潜力的策略:用菌根主要作物进行预种植和预先种植菌根覆盖作物。在中等至高磷含量(26–50 mg kg-1 碳酸氢根可萃取的磷)的土壤上进行的实验表明,前茬作物会影响菌根的形成,磷,锌和铜的吸收以及韭菜幼苗的早期生长。 。上个秋天建立的黑军医遮盖作物增加了菌根真菌对韭菜根的定殖。在早期生长阶段,相对于无遮盖作物,这一增长为45–95%。但是,覆盖作物并没有显着增加养分浓度或生长。这些变量不受覆盖农作物掺入或耕种处理时间的影响。在生长期,定植,养分吸收和植物生长的差异减小,在最后收获日期,对植物产量的影响消失了。高土壤磷水平或高土壤接种物水平最可能是导致菌根形成增加对植物生长和养分浓度的有限响应的原因。

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