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首页> 外文期刊>HortTechnology >Pear Responses to Split Fertigation and Band Placement of Nitrogen and Phosphorus.
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Pear Responses to Split Fertigation and Band Placement of Nitrogen and Phosphorus.

机译:梨对氮和磷的分裂施肥和条带化的响应。

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摘要

Single broadcast application of nitrogen (N) and phosphorus (P) on the soil surface results in low use efficiency of applied N and P in pear (Pyrus communis) production systems in Oregon and the Pacific northwestern United States. A field experiment was conducted from 2005 through 2006 to evaluate the effects of split fertigation and band placement as alternate N and P management practices in 'Anjou' pears growing on a Parkdale loam soil near Parkdale, OR. Measurement and analysis of tree nutrition, fruit yield, quality, and storability, as well as indigenous soil nutrient supply was the scope of the experiment. To evaluate fertilizer management practices on pear growth and productivity, the following four treatments were tested with a randomized complete block design replicated four times: 1) broadcast application of N and P on the soil surface in a 10-ft-wide, weed-free strip centered on the tree row, 2) band placement of N and P on both sides of tree rows in 1 x 1-ft ditches (width x depth), 3) 1 x 1-ft ditches were dug using the band placement equipment, the dug soil was completed returned to the ditch without any fertilizer, and the broadcast application of N and P on the soil surface was applied on a 10-ft-wide, weed-free strip centered on the tree row, and 4) fertigation of N and P split into five equal applications throughout the growing season. Nitrogen and P fertilizers were applied to treatments 1, 2, and 3 at 100 lb/acre N and 55 lb/acre P, while treatment 4 received only 80 lb/acre N and 44 lb/acre P. The 2-year average results show leaf N and P concentrations in the fall were increased by 10.0% and 10.6%, respectively, with split fertigation compared with broadcast application on the soil surface. Band placement increased leaf N by 7.1% relative to broadcast application on the soil surface with soil disturbance caused by band placement. Split fertigation and band placement slightly increased fruit yield, but increased marketable fruit (the total of excellent and very slightly scalded fruit) by 20.9% and 11.1% (absolute value) when compared with broadcast application of N and P and broadcast application of N and P with soil disturbance caused by band placement, respectively, and after 3 months of cold storage. No detrimental effects on fruit weight or reduction in soil amino sugar N were observed from lowering the N and P application rates by 20% with split fertigation. Overall, split fertigation and band placement of N and P can be used to replace single broadcast application on the soil surface on pear orchards to reduce fruit superficial scald during cold storage and improve the use efficiency of applied N and P in the mid-Columbia region of Oregon.
机译:在俄勒冈州和美国西北太平洋的梨(Pyrus communis)生产系统中,在土壤表面单施氮(N)和磷(P)会导致施用的氮和磷的利用率低下。从2005年到2006年进行了田间试验,以评估分施肥和耕作带交替施肥对俄勒冈州Parkdale附近的Parkdale壤土上种植的'Anjou'梨的影响。对树木营养,果实产量,品质和耐贮性以及本地土壤养分供应的测量和分析是该实验的范围。为评估肥料管理对梨生长和生产力的影响,对以下四种处理方法进行了测试,并进行了四次随机完整块设计,重复了四次:1)在10英尺宽,无杂草的土壤表面上播撒N和P以树木行为中心的条带; 2)将N和P分别以1 x 1英尺长的沟渠(宽度x深度)在树的两侧放置,3)使用波段放置设备挖出1 x 1英尺的沟渠,挖出的土壤完全不用任何肥料就返回沟渠,在土壤表面上播种N和P的施肥是在以树行为中心的10英尺宽的无杂草条上进行的,以及4)施肥在整个生长季节,N和P分成五个相等的应用程序。氮肥和磷肥分别以100磅/英亩的氮和55磅/英亩的磷施于处理1、2和3,而处理4仅施用80磅/英亩的氮和44磅/英亩的磷。2年平均结果结果表明,与分田施肥相比,秋季施肥在土壤表面的氮和磷含量分别增加了10.0%和10.6%。相对于在土壤表面播种,由于条带放置引起土壤扰动,条带放置使叶片氮增加7.1%。与N和P的广播施肥和N和P的广播施肥相比,分株施肥和条带施肥可略微提高果实产量,但可销售的果实(优质和极少量烫伤的果实总量)分别增加20.9%和11.1%(绝对值)。磷与土壤扰动分别由条带放置和冷藏3个月后引起。通过分施施肥将氮和磷的施用量降低20%,未发现对果实重量或土壤氨基酸N减少的有害影响。总体而言,N和P的分施肥和带状施肥可替代梨园土壤表面的单播施肥,以减少冷藏期间果实表面的结垢,并提高哥伦比亚中部地区施用的N和P的利用效率俄勒冈州。

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