首页> 外文期刊>American Journal of Potato Research >Furrow vs Hill Planting of Sprinkler-Irrigated Russet Burbank Potatoes on Coarse-Textured Soils
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Furrow vs Hill Planting of Sprinkler-Irrigated Russet Burbank Potatoes on Coarse-Textured Soils

机译:在粗糙土壤上喷洒红土伯班克马铃薯的沟沟与丘陵种植

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Surface water runoff from the hill, where potatoes are planted, to the furrow may exacerbate potato drought sensitivity. Planting into furrows and constructing midrow ridges may improve water use efficiency and relieve water stress on potato by directing water toward, not away from, the plants. A 3-year field study was conducted to compare yields and tuber size distributions of furrow- and hill-planted potato (Solatium tuberosum L., 'Russet Burbank') on coarse-textured, well-drained soils under sprinkler irrigation. A split-plot experimental design with main plots of row orientation (N-S vs E-W) and subplots of planting method (hill and furrow) combined with two planting depths was used at two central North Dakota sites. Except for planting method and limiting the post-emergence cultivation in the furrow treatments, all cultural practices (fertilizer, irrigation, etc.) were identical and corresponded with conventional practices for hill planted potato. Row orientation did not affect yield for any tuber size category. Averaged over 3 years, furrow-planted potato produced 24% larger tubers (188 vs 151 g), 31% smaller yield for tubers <113 g (4.99 vs 7.21 Mg ha~(-1)), 28% smaller yield for tubers 113 to 170 g (8.14 vs 11.3 Mg ha~(-1)), 8% larger yields for tubers 170 to 283 g (18.0 vs 16.6 Mg ha~(-1)), 103% larger yields for tubers 283 to 454 g (10.9 vs 5.36 Mg ha~(-1)), 341% larger yields for tubers >454 g (2.65 vs 0.60 Mg ha~(-1)), and 10% larger total yields (46.2 vs 41.9 Mg ha~(-1)) compared with hill-planted potato. There were no differences in tuber specific gravity. Preliminary soil water measurements indicated an inter-row water-harvesting effect for furrow planting compared with hill planting. The furrow-planting method may offer significant potential for ameliorating the drought sensitivity of potato.
机译:从种植马铃薯的山丘到沟壑的地表水径流可能加剧马铃薯的干旱敏感性。通过将水引向而不是远离植物,可以在垄沟中种植和建造中垄,可以提高水分利用效率并减轻马铃薯的水分胁迫。进行了为期3年的田间研究,比较了喷灌条件下质地粗糙,排水良好的犁沟和丘陵种植马铃薯(马铃薯Sorotium tuberosum L。,“ Russet Burbank”)的产量和块茎大小分布。在北达科他州中部的两个中心地点,采用分行试验设计,将行方向的主图(N-S与E-W)和种植方法的子图(坡地和犁沟)与两个种植深度相结合。除了种植方法和限制犁沟处理后出苗后的种植外,所有耕作方式(肥料,灌溉等)均相同,并且与山地种植马铃薯的常规做法相对应。行方向不影响任何块茎大小类别的产量。 3年平均水平,犁沟种植的马铃薯产生的块茎大24%(188 vs 151 g),<113 g的块茎小产量31%(4.99 vs 7.21 Mg ha〜(-1)),块茎的产量小28%113到170 g(8.14 vs 11.3 Mg ha〜(-1)),块茎170至283 g(18.0 vs 16.6 Mg ha〜(-1)),较大产量的8%块茎283至454 g(单产)103% 10.9 vs 5.36 Mg ha〜(-1)),大于454 g的块茎单产提高341%(2.65 vs 0.60 Mg ha〜(-1)),总产量提高10%(46.2 vs 41.9 Mg ha〜(-1) ))与山坡种植的马铃薯相比。块茎比重没有差异。初步的土壤水分测量表明,与丘陵种植相比,犁row种植的行间集水效应。垄沟种植法可能为改善马铃薯的干旱敏感性提供重要潜力。

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