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Strategies to Provide Fertilizer for Both Production and Consumer Phases of Petunia

机译:为矮牵牛的生产和消费阶段提供肥料的策略

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The objective of this study was to compare strategies using water-soluble fertilizers (WSF) and controlled-release fertilizers (CRF) to provide adequate nutrition during both production and consumer phases of petunia (Petunia x hybrida). Strategies included a CRF with a second prill coating (DCT) that delayed initial nutrient release, compared with a conventional single-coated CRF (OSM) and WSF. Rooted cuttings of petunia were grown for 42 days in trade 1-gal (2.84-L) containers (the "production phase'') withWSF only, a lowrate of combinedWSF and substrate-incorporated OSM, or low and high label rates of WSF and top-dressed (TD) OSM (WSF + OSM TD), WSF and substrate-incorporated DCT (WSF + DCT), OSM, or a commercial blend of substrate-incorporated OSM and DCT (OSM + DCT). By the end of production phase after 42 days, all fertilizer strategies tested produced horticulturally acceptable plants in terms of chlorophyll index and number of flowers. In a subsequent "consumer phase,'' plants were maintained in containers or were transplanted into a landscape and irrigated with clear water for 98 days. Plant performance [number of flowers, SPAD chlorophyll index, dry weight, and tissue nitrogen (N) level] was greater during the consumer phase in treatments with high rates of CRF compared with WSF only or lower rates of CRF. On the basis of nutrient release in a sand substratewithout plants at 10, 21, or 32 degrees C, the DCT had delayed nutrient release compared with single-coated CRF. The release rates of all CRF products and the duration of the delay in release from DCT were temperature dependent. A partial budget found that the lowest cost treatment was WSF only at $ 0.02/container. Comparing at high application rates, using WSF + DCT ($ 0.085/container) was more expensive than incorporated OSM ($ 0.05/container) and had a similar cost to WSF + OSM TD ($ 0.084/container). The greatly improved consumer performance for plants with residual fertilizer compared with WSF provides an opportunity to add value and profitability if a slightly higher sales price could be obtained. Several fertilizer strategies are available depending on material and labor cost and availability and preferred crop management style.
机译:这项研究的目的是比较在矮牵牛(Petunia x hybrida)的生产和消费阶段使用水溶性肥料(WSF)和控释肥料(CRF)提供充足营养的策略。与传统的单层CRF(OSM)和WSF相比,策略包括采用带有第二种药丸涂层(DCT)的CRF来延迟初始养分释放。矮牵牛的插条在仅含WSF的1-gal(2.84-L)贸易容器中生长42天(“生产阶段”),WSF和底物结合的OSM的组合率低,或者WSF和顶级(TD)OSM(WSF + OSM TD),WSF和结合了基材的DCT(WSF + DCT),OSM或结合了基质的OSM和DCT(OSM + DCT)的商业混合物。 42天后的阶段,所有测试的肥料策略都生产出园艺上可接受的叶绿素指数和花朵数量,在随后的“消费阶段”,将植物保持在容器中或移植到景观中,并用清水灌溉98天。与仅使用WSF或较低CRF的处理相比,使用CRF较高的处理在消费阶段的植物性能[花数,SPAD叶绿素指数,干重和组织氮(N)水平]更高。基于在10、21或32摄氏度下没有植物的砂质基质中养分释放的情况,与单包膜CRF相比,DCT的养分释放延迟。所有CRF产品的释放速率和DCT释放延迟的持续时间均与温度有关。部分预算发现,成本最低的是WSF处理,仅为每容器0.02美元。在高应用率下进行比较,使用WSF + DCT(0.085美元/容器)比合并的OSM(0.05美元/容器)更昂贵,并且成本与WSF + OSM TD(0.084美元/容器)相似。与WSF相比,具有残留肥料的植物的消费者性能大大提高,如果可以获得更高的销售价格,则可以增加价值和利润。根据材料和人工成本以及可获得性和首选的作物管理方式,可以采用几种肥料策略。

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