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Plant nutrient uptake and soil nutrient dynamics under full and limited irrigation and rainfed maize production.

机译:在充分和有限的灌溉条件下和雨育玉米生产中,植物养分吸收和土壤养分动态。

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Limited knowledge and data exist in terms of how the soil water status affects plant nutrient uptake and the availability of soil residual nutrients in order to establish effective fertilizer management under limited irrigation to prevent undesirable environmental impacts. Maize (Zea mays L.) nutrient uptake and concentrations of soil nutrients (N, P, and K) were measured under full and limited irrigation regimes and rainfed conditions. Fully irrigated treatment (FIT), 75% FIT, 60% FIT, 50% FIT, and rainfed treatments were imposed. Seasonal (emergence to physiological maturity) rainfall was 426 mm (18% below normal) in 2009 and 563 mm (9% above normal) in 2010. Irrigation regimes impacted nutrient uptake, with 60% and 75% FIT resulting in efficient and comparative performance relative to FIT. Nitrogen, P, and K uptake increased with water supply. Total N uptake ranged from 154 kg ha-1 for rainfed to 253 kg ha-1 for FIT in 2009 and from 182 kg ha-1 for rainfed to 270 kg ha-1 for FIT in 2010. The FIT had the greatest P uptake (39 kg ha-1 in 2009 and 53 kg ha-1 in 2010). Total grain N uptake was 143, 203, 216, 205, and 215 kg ha-1 in 2009 and 151, 178, 188, 193, and 209 kg ha-1 in 2010 for rainfed, 50% FIT, 60% FIT, 75% FIT, and FIT, respectively. The residual soil N averaged 77.5 kg ha-1 in 2009 and 72.4 kg ha-1 in 2010 and increased with irrigation. Relationships among plant N, P, and K concentrations were developed for within-season nutrient diagnosis in practical applications.
机译:关于土壤水分状况如何影响植物养分吸收以及土壤残留养分的有效性,以在有限的灌溉条件下建立有效的肥料管理以防止不良的环境影响方面,知识和数据还很有限。在完全和有限的灌溉制度和雨育条件下,测量了玉米(Zea mays L.)的养分吸收和土壤养分(N,P和K)的浓度。实行完全灌溉处理(FIT),75%FIT,60%FIT,50%FIT和雨养处理。 2009年的季节性(出现生理成熟状态)降雨量为426毫米(比正常低18%),2010年为563毫米(比正常高9%)。灌溉方式影响养分吸收,FIT分别为60%和75%,从而产生了有效的可比性能相对于散客。氮,磷和钾的吸收量随供水量的增加而增加。 2009年的总氮吸收量从雨养的154 kg ha -1 到FIT的253 kg ha -1 和182 kg ha -1 FIT在2010年的雨水养分达到270 kg ha -1 。FIT的P吸收量最大(2009年为39 kg ha -1 和53 kg ha - 1 )。 2009年谷物的总氮吸收量为143、203、216、205和215 kg ha -1 ,以及151、178、188、193和209 kg ha -1 在2010年,雨燕,50%FIT,60%FIT,75%FIT和FIT分别为。 2009年和2010年平均残留土壤氮N平均为77.5 kg ha -1 ,并随灌溉而增加。植物氮,磷和钾浓度之间的关系被开发用于实际应用中的季节内营养物诊断。

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