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Profitability and efficacy of soybean seed treatment in Michigan

机译:密歇根州大豆种子处理的盈利能力和疗效

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Soybean (Giycine max Merr.) is a globally important oilseed crop. Use of seed treatments to avert yield loss by managing seedling pathogens, early-season insects, and nematodes has become more common. Seed treatments may effectively protect plant stand and plant health in the presence of pathogens and pests, but the profitability of prophylactic seed treatment use across diverse environments remains in question, particularly when pests and pathogen populations are low or absent. Seed treatments, including a non-treated control (NTC), fungicide (F), fungicide-insecticide (FI), and fungicide-insecticide-biological nematode protectant (FIN), were evaluated on four soybean varieties at seven field sites in 2013, 2014, and 2015. In 2013, yield data was collected, and in subsequent years additional parameters were measured. FIN significantly improved plant stand at two sites in 2014 and three sites in 2015. Scant soybean aphid (Aphis glycines Matsumura) numbers were found at four sites across 2014 and 2015. Soybean aphid populations in FI plots were lower relative to the NTC at two of the four sites. Soybean cyst nematode (Heterodera glycines Ichinohe) (SCN) was present in one field in 2015, but FIN treatment did not significantly reduce SCN reproduction or population relative to the NTC. Yield across soybean varieties was significantly improved by FIN at the Allegan county sites in 2013 and 2015. Across sites in 2013, no seed treatment significantly improved net returns relative to the NTC. Across sites in 2014 and 2015, FIN significantly reduced net returns relative to the NTC. The probability that a seed treatment would result in economically neutral or positive outcomes was estimated by using Maximum Likelihood Estimation. Results from these planting dates and seeding rates indicate that seed treatments may not benefit all soybean growers. Seed treatment benefits may be affected by soybean variety, soil, environmental conditions, planting population, and planting date. Early planting dates and reduced seeding rates may see an increase in seed treatment profitability.
机译:大豆(Giycine Max Merr。)是全球重要的油籽作物。通过管理幼苗病原体,早期昆虫和线虫来使用种子处理来避免屈服损失变得更加常见。种子治疗可以有效保护植物立场和植物健康在病原体和害虫存在下,但是在不同环境中使用预防性种子处理的盈利能力仍然存在问题,特别是当害虫和病原体种群低或不存在时。种子处理,包括未处理过的对照(NTC),杀真菌剂(F),杀菌剂 - 杀虫剂(FI)和杀菌剂 - 杀虫剂 - 生物线虫耐药剂(FIN)在2013年的四个田间位点评估了四种豆类品种, 2014年和2015年。2013年,收集产量数据,在随后的几年中,测量了额外的参数。 Fin显着改善了2014年的两个地点的植物立场,2015年的三个地点。在2014年和2015年的四个地点发现了Scant Soybean蚜虫(APHIS Glycines Matsumura)数量在2015年和2015年的四个地点发现。相对于两者的NTC,Soybean蚜虫群体较低四个网站。大豆囊肿线虫(Heterodera甘氨酸Ichinohe)(viderodera甘氨酸Ichinohe)(SCN)在2015年的一个领域存在,但鳍状治疗没有显着降低SCN繁殖或相对于NTC的群体。在2013年和2015年的阿拉根县网站上鳍在大豆品种的产量显着改善。2013年的遗址,无种子处理没有明显改善NTC的净回报。在2014年和2015年的网站上,FIN相对于NTC显着降低了净返回。通过使用最大似然估计,估计种子处理导致经济中性或阳性结果的可能性。这些种植日期和播种率的结果表明种子处理可能不会使所有大豆种植者受益。种子处理益处可能受大豆品种,土壤,环境条件,种植种群和种植日期的影响。早期种植日期和降低的播种率可能会看到种子处理盈利能力的增加。

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