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The Relationship Between Soil Temperature and Sugar Ends in Potato

机译:马铃薯土壤温度与糖分的关系

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Sugar ends is a serious defect in processed potatoes. Among the more important factors associated with the development of sugar ends are soil temperature and soil moisture, particularly during early tuber bulking. This 2-year study was designed to examine the effects of soil temperature on the development of sugar ends. Soil temperature was recorded in different zones (0–10 cm and 10–20 cm depths) of potato rows oriented in north–south and east–west directions. At harvest, tubers from four sections in each field were hand excavated from each quadrant of the hill. The rows were divided vertically through the center and horizontally at the 10-cm depth. Tubers from each quadrant were weighed and then evaluated for fry color after 3 months of storage. Temperature profiles within the different regions of the row showed considerable variation throughout the season. Row orientation had a slight effect on soil temperature, but soil depth appeared to be more important. The deeper portion of the row (below 10 cm) was generally cooler throughout the day. East and north facing portions of rows also tended to be cooler than the opposite side that was exposed to more solar radiation. The highest yields and highest incidence of tubers with sugar ends tended to be found in areas below 10 cm in depth. These results contradict the notion that soil temperature is the primary factor leading to development of sugar ends. Therefore, individual tuber growth rate and temperature exposure of the entire plant may be more important in causing the development of sugar ends than was previously thought.
机译:糖末是加工马铃薯中的严重缺陷。与糖分形成有关的更重要的因素是土壤温度和土壤湿度,特别是在块茎膨大初期。这项为期2年的研究旨在检查土壤温度对糖基发育的影响。记录了沿南北和东西方向的马铃薯行不同区域(0-10厘米和10-20厘米深度)的土壤温度。收获时,从丘陵的每个象限中手工挖出每个田地四个部分的块茎。这些行在中心垂直分割,在10厘米深度水平分割。称重每个象限的块茎,然后在储存3个月后评估鱼苗颜色。该行不同区域内的温度曲线在整个季节中显示出相当大的变化。行方向对土壤温度有轻微影响,但土壤深度似乎更为重要。该行的较深部分(低于10厘米)通常整天较凉。行的朝东和朝北的部分也往往比暴露于更多太阳辐射的相对一侧凉爽。端部有糖的块茎的最高产量和最高发病率往往出现在深度低于10厘米的区域。这些结果与以下观点相矛盾:土壤温度是导致糖分末端发育的主要因素。因此,整个块茎的个体块茎生长速率和温度暴露可能比以前认为的更重要,从而导致糖末端的发育。

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