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Soybean Yield and Yield Component Response to Plant Density in Narrow Row Systems

机译:窄行系统中植物密度的大豆产量和产量响应

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摘要

Soybean (Glycine max) yield is responsive to changes in plant population and row spacing under dryland conditions. Soybean seeding rate recommendations in many states were developed prior to the release of herbicide tolerant varieties when soybean seed costs were lower. As a result, many recommendations are high, and soybean performance at low plant densities in narrow rows needs to be reevaluated. This study was conducted to evaluate soybean yield response to plant density in narrow row, drilled systems (7.5 and 15 in) and evaluate the effects of plant population on yield components. The study was conducted in six environments with optimum plant populations ranging from 80 000 to 140 000 plants acre [superscript]-1. The two yield components responsible for the yield optimization were pods plant [superscript]-1 and pods acre [superscript]-1. As plant population increased, pods plant [superscript]-1 decreased steadily; however, yield was not reduced either year of the study by the loss of pods plant [superscript]-1 because pods acre [superscript]-1 increased as plant population increased. The optimum seeding rates for each year of the study were below the 150 000 to 160 000 plants acre [superscript]-1 seeding rate normally recommended in the region. The decreased optimum plant populations in both years did not adversely affect yield and might be useful in reducing input costs in dryland soybean production.
机译:大豆(Glycine max)产量为响应旱地条件下,植物种群和行距的变化。大豆幼苗在许多国家利率的建议之前的耐除草剂品种时释放大豆种子成本较低,开发。其结果是,许多建议都很高,并且需要重新评估在窄行低种植密度大豆性能。进行该研究以评估在窄行大豆产量响应于植物密度,钻孔系统(7.5和15),并评价植物群体的产量构成的影响。该研究是在六个环境具有最佳植物种群,范围从80至000 140 000株英亩[标] -1进行。负责对产量优化二产成分是荚植物[标] -1和豆荚英亩标] -1。作为植物种群增加,荚植物[标] -1-稳步下降;然而,产量并没有研究任何一年荚工厂的损失减少[标] -1,因为荚英亩标] -1随着植物种群增加。每年研究的用于最佳播种率都低于150 000〜160 000株英亩[标] -1-播种量通常推荐在该区域。在这两年的下降最佳植物种群没有产生不利影响产量,可能会降低投入成本旱地大豆产量很有用。

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