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Interactive effects of compost and pre-planting soil moisture on plant biomass, nutrition and formation of mycorrhizas: a context dependent response

机译:植物生物质植物生物量,营养和形成菌根植物生物量的互动影响:一种依赖性响应

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We aimed to investigate the combined impacts of compost addition and pre-planting soil moisture conditions, on plant-available nutrients, and subsequent impacts on the biomass, nutrition and formation of AM by two important crop species. A glasshouse study was undertaken in which wheat and tomato plants were grown in compost amended or un-amended soil that was subjected to different moisture regimes prior to planting. The availability of P was strongly influenced by compost addition, but not pre-planting moisture conditions. In contrast, mineral N pools were affected by compost addition and pre-planting soil moisture conditions in complex ways. These changes in nutrient availability affected plant biomass, nutrient uptake and formation of AM. In general, plant performance was better where pre-planting soil moisture conditions were wet or dry, and worse where they involved a wet/dry cycle, and mycorrhizal colonisation was lower where compost was added to the soil. That pre-planting moisture conditions affect the biomass of subsequent crops is an important finding, the potential implications of which are considered here.
机译:我们旨在探讨钙肥加入和预种植土壤湿度条件对植物可用营养素的综合影响,以及随后对生物量,营养和形成的两种重要作物物种的影响。采取了玻璃室研究,其中小麦和番茄植物在堆肥中生长或未修改的土壤,在种植前进行不同的水分制度。 P的可用性受堆肥添加的强烈影响,但不会预先种植水分条件。相比之下,矿物质池受堆肥添加和预种植的土壤水分条件以复杂的方式影响。这些变化影响植物生物质,营养吸收和am的形成。通常,植物性能更好,在种植的土壤水分条件下湿润或干燥,并且在涉及湿/干循环的情况下更差,菌根染色的菌根加入到土壤中。植物预湿度条件影响后续作物的生物质是一个重要的发现,这里考虑的潜在影响。

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