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首页> 外文期刊>Agronomy Journal >Phosphorus Fertilization of Late-Planted Winter Wheat into No-Till Fallow
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Phosphorus Fertilization of Late-Planted Winter Wheat into No-Till Fallow

机译:晚耕小麦免施磷肥

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摘要

Winter wheat (Triticum aestivum L.) is planted in low precipitation areas of north-central Oregon and east-central Washington after 14 mo of tilled fallow. No-till fallow (NTF) is an alternative to the tillage-based method. The disadvantage of NTF is the loss of seed-zone moisture and inability to plant early. Delayed plant growth and reduced grain yield (GY) associated with late planting in NTF may be offset by P fertilization. We conducted a field experiment at three locations for 3 yr to evaluate effects of 0, 5, and 15 kg ha(-1) of P fertilizer on plant P concentration (PPC), dry matter accumulation (DMA), P uptake (PU), spikes per unit area (SPU), 1000 kernel weight (KW), kernels per spike (KPS), and GY. Soft white winter wheat was planted into NTF during the third week of October. Phosphorus fertilizer was placed below and beside the seed while planting. Application of 5 and 15 kg ha(-1) P increased PPC and/or DMA and enhanced overall PU by 0.6 and 1.7 kg P ha(-1), respectively. Corresponding increases in SPU were equal to 35 and 55 spikes m(-2). Phosphorus application had no effect on KW or KPS. The 5 kg ha(-1) P treatment increased overall GY by 4.4%. The 15 kg ha(-1) P treatment increased overall GY by 7.6%. Significant GY responses to P application, across sites, ranged from 2.2 to 14.5%. Improvement in P nutrition and increases in SPU and GY were observed at sites where initial soil test P (STP) levels were <12 mg kg(-1).
机译:耕作休耕14个月后,在俄勒冈州中北部和华盛顿州中东部的低降水地区种植冬小麦(Triticum aestivum L.)。免耕休闲法(NTF)是基于耕作方法的替代方法。 NTF的缺点是种子区水分流失,无法早期种植。磷肥可以抵消与NTF后期播种有关的植株生长延迟和籽粒产量(GY)降低。我们在三个地点进行了为期3年的田间试验,以评估0、5和15 kg ha(-1)的磷肥对植物磷浓度(PPC),干物质积累(DMA)和磷吸收(PU)的影响,每单位面积的穗数(SPU),1000粒重(KW),每穗的粒数(KPS)和GY。在10月的第三周,将柔软的白色冬小麦种植到NTF中。种植时将磷肥放置在种子的下方和旁边。 5和15 kg ha(-1)P的施用分别提高了PPC和/或DMA,并使整体PU分别提高了0.6和1.7 kg P ha(-1)。 SPU的相应增加分别等于35和55个峰值m(-2)。施磷对KW或KPS没有影响。 5 kg ha(-1)P处理使总GY增加4.4%。 15 kg ha(-1)P处理可将总体GY值提高7.6%。跨站点的P施用对GY的显着响应范围为2.2%至14.5%。在初始土壤测试P(STP)水平<12 mg kg(-1)的地点观察到P营养的改善以及SPU和GY的增加。

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