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Interconnection of altitude of stationary GPS observation points and soil moisture with formation of winter wheat grain yield

机译:GPS固定观测点高度与土壤水分与冬小麦籽粒形成的关系

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Field trials were carried out at the Research and Study farm “Vecauce” of the Latvian University of Agriculture during the years 2006–07 to investigate factors influencing the formation of the winter wheat grain yield. Researches have been carried out in stationary observation points. Results show tight negative correlation between the altitude of observation points and soil moisture. The correlation is significant P 0.05 in both trial years but coherence is tighter in the year with reduced precipitation, as observed in April–July 2006. Significant negative correlation was established between altitude and winter wheat grain yield. In year 2006, when lack of precipitation was observed, this coherence is with increased probability P 0.01. Soil moisture at the depth of 40?45 cm was below optimum – 25% – in both trial years and also in both stationary observation levels with average altitude 95 and 102 m above sea level. It was also significantly lower in the highest points of the terrain. Significantly higher grain yield of winter wheat was obtained in field points with an average altitude 95 m above sea level. This coherence is also more explicit in the year with less precipitation, as in 2006. Analysis of correlation established that soil moisture at the depth of 40?45 cm has significant positive impact on the winter wheat grain yield and on the flag leaf area.
机译:拉脱维亚农业大学的研究农场“ Vecauce”在2006-07年进行了田间试验,以调查影响冬小麦籽粒形成的因素。已经在固定观测点进行了研究。结果表明,观测点的高度与土壤湿度之间呈紧密的负相关。在两个试验年中,相关性均显着P <0.05,但如2006年4月至7月观察到的那样,降水减少的年份中的相干性更紧密。海拔高度与冬小麦籽粒产量之间建立显着的负相关性。在2006年,当观测到缺乏降水时,这种相干性的概率增加了P <0.01。在这两个试验年以及两个静止的观测水平(平均海拔分别为95和102 m)中,深度在40?45 cm处的土壤湿度均低于最佳值(25%)。在地形的最高点,它也明显较低。在平均海拔高于海平面95 m的田间地点,冬小麦的单产显着提高。与2006年一样,这一连贯性在降水量较少的年份也更加明显。相关分析表明,40–45 cm深度的土壤水分对冬小麦籽粒产量和旗叶面积具有明显的积极影响。

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