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Growth and Development of Purple Nutsedge Based on Days or Thermal Units

机译:基于天数或热量单位的紫色果仁的生长发育

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This work was carried out with the objective of elaborating mathematical models to predict growth and development of purple nutsedge (Cyperus rotundus) based on days or accumulated thermal units (growing degree days). Thus, two independent trials were developed, the first with a decreasing photoperiod (March to July) and the second with an increasing photoperiod (August to November). In each trial, ten assessments of plant growth and development were performed, quantifying total dry matter and the species phenology. After that, phenology was fit to first degree equations, considering individual trials or their grouping. In the same way, the total dry matter was fit to logistic-type models. In all regressions four temporal scales possibilities were assessed for the x axis: accumulated days or growing degree days (GDD) with base temperatures (Tb) of 10, 12 and 15 oC. For both photoperiod conditions, growth and development of purple nutsedge were adequately fit to prediction mathematical models based on accumulated thermal units, highlighting Tb = 12 oC. Considering GDD calculated with Tb = 12 oC, purple nutsedge phenology may be predicted by y = 0.113x, while species growth may be predicted by y = 37.678/(1+(x/509.353)-7.047).
机译:开展这项工作的目的是建立数学模型,以基于天数或累积热量单位(生长度天数)预测紫色purple(edge形)的生长和发育。因此,开发了两个独立的试验,第一个试验的光周期降低(3月至7月),第二个试验的光周期升高(8月至11月)。在每个试验中,对植物生长和发育进行了十次评估,量化了总干物质和物种物候。此后,物候学适合一级方程式,并考虑了单个试验或分组。以同样的方式,总干物质适合逻辑模型。在所有回归中,针对x轴评估了四个时间尺度可能性:累积温度或生长度日(GDD),基础温度(Tb)为10、12和15 oC。在这两个光周期条件下,紫色坚果的生长和发育都非常适合基于累积热量单位的预测数学模型,突出显示Tb = 12 oC。考虑到用Tb = 12 oC计算的GDD,可以通过y = 0.113x预测紫色的树篱物候,而可以通过y = 37.678 /(1+(x / 509.353)-7.047)预测物种的生长。

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