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首页> 外文期刊>Field Crops Research >Mineral fertilizer response and nutrient use efficiencies of East African highland banana (Musa spp., AAA-EAHB, cv. Kisansa)
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Mineral fertilizer response and nutrient use efficiencies of East African highland banana (Musa spp., AAA-EAHB, cv. Kisansa)

机译:东非高地香蕉的矿物肥料响应和养分利用效率(Musa spp。,AAA-EAHB,cv。Kisansa)

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Poor yields of East African highland bananas (Musa spp., AAA-EAHB) on smallholder farms have often been attributed to problems of poor soil fertility. We measured the effects of mineral fertilizers on crop performance at two sites over two to three crop cycles; Kawanda in central Uganda and Ntungamo in southwest Uganda. Fertilizers were applied at rates of 0N-50P-600K, 150N-50P-600K, 400N-0P-600K, 400N-50P-0K, 400N-50P-250K and 400N-50P-600Kkghap# yrp#. In addition 60Mg-6Zn-0.5Mo-1Bkghap# yrp# was applied to all treatments, with the exception of the control plots which received no fertilizer. Fresh bunch mass and yield increased with successive cycles. Yield increases above the control ranged from 3.1 to 6.2kg bunchp# (average bunch weight for all treatments 11.5kgbunchp#) and 2.2-11.2Mghap# yrp# (average yield for all treatments 15.8Mghap# yrp#) at Kawanda, compared with 12.4-16.0kgbunchp# (average bunch weight for all treatments 14.7kgbunchp#) and 7.0-29.5Mghap# yrp# (average yield for all treatments 17.9Mghap# yrp#) at Ntungamo. The limiting nutrients at both sites were in the order K>P>N. Potassium, N and P foliar nutrient mass fractions were below previously established Diagnosis and Recommendation Integrated System (DRIS) norms, with the smallest K mass fractions observed in the best yielding plots at Ntungamo. Total nutrient uptakes (K>N>P) were higher at Ntungamo as compared with Kawanda, probably due to better soil moisture availability and root exploration of the soil. Average N, P and K conversion efficiencies for two crop cycles at both sites amounted to 49.2kg finger DMkgp# N, 587kg finger DMkgp# P and 10.8kg finger DMkgp# K. Calibration results of the model QUEFTS using data from Ntungamo were reasonable (R po =0.57, RMSE=648kghap#). Using the measured soil chemical properties and yield data from an experiment at Mbarara in southwest Uganda, the calibrated QUEFTS model predicted yields well (R po =0.68, RMSE=562kghap#). We conclude that banana yields can be increased by use of mineral fertilizers, but fertilizer recovery efficiencies need to improve substantially before promoting wide-scale adoption.
机译:小农户东非高地香蕉(Musa spp。,AAA-EAHB)的单产低下通常归因于土壤肥力差的问题。我们测量了两到三个作物周期中两个地点的矿物肥料对作物生长的影响。乌干达中部的Kawanda和乌干达西南的Ntungamo。以0N-50P-600K,150N-50P-600K,400N-0P-600K,400N-50P-0K,400N-50P-250K和400N-50P-600Kkghap#yrp#的比率施用肥料。另外,除对照地块未施肥外,将60Mg-6Zn-0.5Mo-1Bkghap#yrp#应用于所有处理。鲜束质量和产量随着连续循环而增加。 Kawanda的增产幅度超出控制范围,从3.1到6.2kg束p#(所有处理的平均束重11.5kgbunchp#)和2.2-11.2Mghap#yrp#(所有处理的平均束重15.8Mghap#yrp#),相比之下是12.4 Ntungamo -16.0kgbunchp#(所有处理的平均束重14.7kgbunchp#)和7.0-29.5Mghap#yrp#(所有处理的平均产量17.9Mghap#yrp#)。两个部位的极限养分含量为K> P> N。钾,氮和磷的叶面营养物质质量分数低于先前建立的诊断和推荐综合系统(DRIS)规范,在Ntungamo的最佳产量田地中观测到的钾质量分数最小。 Ntungamo的总养分吸收量(K> N> P)比Kawanda更高,这可能是由于更好的土壤水分可利用性和土壤的根部勘测。两个地点两个作物周期的平均N,P和K转化效率分别为49.2kg手指DMkgp#N,587kg手指DMkgp#P和10.8kg手指DMkgp#K.使用Ntungamo数据对QUEFTS模型进行校准的结果是合理的( R po = 0.57,RMSE = 648kghap#)。使用测得的土壤化学性质和乌干达西南部Mbarara的一项实验的产量数据,校正后的QUEFTS模型可以很好地预测产量(R po = 0.68,RMSE = 562kghap#)。我们得出的结论是,使用矿物肥料可以提高香蕉的单产,但是在促进大规模采用之前,肥料的回收效率需要大大提高。

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