Influence of Seeding Rate, Planter Downforce and Cultivar on Crop Emergence and Yield in Singulated and Hill-Dropped Cotton

IF 0.7 Q4 AGRICULTURAL ENGINEERING
S. Virk, W. Porter, J. Snider, J. Whitaker, G. Rains, Changying Li
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Abstract

Cotton (Gossypium hirsutum L.) growers are motivated to reduce seeding rates due to increased technology fees associated with improved transgenic cotton cultivars. Advances in planting machinery have improved precision of seed metering and seed placement in recent years. A two-year study was conducted to evaluate the effect of seeding rate, planter downforce, and cultivar on crop emergence and lint yield in cotton planted as singulated and hill-drop (two seed hill-1) configuration. Study treatments consisted of two seeding rates (71,660 and 107,490 seed ha-1), two to three planter downforces (0, 445 and 890 N in 2017; 0 and 890 N in 2018) and two cotton cultivars (representing a large-seeded and small-seeded cultivar, 9,259 - 10,582 and 11,244 - 14,330 seed kg-1, respectively) arranged in a strip-split plot design in both seeding configurations. Crop emergence and lint yield in the middle two rows (four-row plots) were measured to evaluate treatment effects among seeding configurations. Results showed that seeding rate and cultivar did not affect (p>0.05) crop emergence and lint yield in both singulated and hill-drop cotton. Crop emergence varied between the two years due to differences in field tillage conditions. Planter downforce affected crop emergence in singulated cotton but not in hill-drop cotton during both years. Field tillage conditions also influenced downforce effect on crop emergence. Selection of an optimal planter downforce had more significant effect (p<0.05) on singulated cotton than hill-dropped cotton. Results showed that large-seeded cultivars can be utilized to attain a high crop emergence early in the season which can help in minimizing production risks associated with poor stand establishment. High seed and technology fees incurred by growers can be effectively reduced by planting lower seeding rates - given an adequate stand establishment is attained using appropriate planter setup including downforce and cultivar selection.
播量、播种机下压力和品种对单棉和山棉出苗率和产量的影响
由于改良转基因棉花品种的技术费用增加,棉花(棉)种植者有动力降低播种率。近年来,种植机械的进步提高了排种和播种的精度。通过2年的试验,研究了单播和双籽山-1两种棉花种植方式下播量、播种机下压力和品种对棉花出苗率和皮棉产量的影响。研究处理包括两种播种率(71,660和107,490种子hm -1),两到三种播种机下压力(2017年为0,445和890 N;2个棉花品种(分别代表大种和小种品种,分别为9259 ~ 10582和11244 ~ 14330种子kg-1)在两种播种构型下采用条形分割设计。测定中间两行(四行)作物出苗率和皮棉产量,评价不同播种方式的处理效果。结果表明,播量和品种对单棉和山棉的出苗率和皮棉产量均无显著影响(p>0.05)。由于田间耕作条件的不同,两年间作物出苗期有所不同。在这两年中,播种机下压力对单株棉的出苗有影响,而对山地棉的出苗没有影响。田间耕作条件对作物出苗的下压力效应也有影响。选择最优的下压力对单株棉生长的影响显著(p<0.05)。结果表明,利用大种子品种可以在季节早期获得较高的作物出苗率,从而有助于降低与林分建设不良相关的生产风险。如果采用适当的播种机设置,包括下压力和品种选择,可以获得足够的林分,种植者可以通过种植较低的播种率有效地减少高昂的种子和技术费用。
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来源期刊
Journal of cotton science
Journal of cotton science AGRICULTURAL ENGINEERING-
CiteScore
0.90
自引率
20.00%
发文量
0
期刊介绍: The multidisciplinary, refereed journal contains articles that improve our understanding of cotton science. Publications may be compilations of original research, syntheses, reviews, or notes on original research or new techniques or equipment.
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