Influence of fungicide on soybean seed quality from delayed harvest and environment

IF 0.8 Q3 AGRONOMY Crop, Forage and Turfgrass Management Pub Date : 2024-09-14 DOI:10.1002/cft2.70002
Donnie K. Miller, Priscilla Campos, Josh T. Copes, Melanie Netterville, Sebe Brown, Paul P. Price, David O. Moseley, Thanos Genetimis, Peters Egbedi, Muhammad Rasel Parvej
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Abstract

Field studies in 2019–2020 evaluated the influence of fungicide application on seed quality from delayed harvest (approx. 20, 30, and 44 days after optimum harvest timing, i.e., 13% seed moisture). Treatments included nofungicide, pydiflumetofen plus difenoconazole (13.7 fl oz/acre Miravis Top, Syngenta), or mefentrifluconazole plus pyraclostrobin plus fluxapyroxad (8 fl oz/acre Revytek, BASF). Effect of environment was investigated in both field (natural rainfall events) and environmentally controlled growth chambers (79°F or 90°F with 30% or 100% relative humidity and exposed for 48 or 96 h) for potential impacts on soybean [Glycine max (L.) Merr.] seed quality. Seed quality was based on a rating scale of 1 to 10 with 1 being seeds in good condition and 10 being seeds in poor condition, based on USDA reference images. Fungicide application had no effect on seed quality from delayed harvest or a saturated environment (100% relative humidity). Delaying harvest beyond approximately 20 days past optimum timing can result in reduced seed quality regardless of fungicide application (1.0 to 2.0 vs 4.0 to 8.1 rating). In addition, seedpod exposure averaged across temperature and relative humidity environments for as little as 96 h after optimum harvest timing can result in deteriorating seed quality issues (3.2 vs 1.4 rating) regardless of fungicide application. Results indicate that soybean harvest delayed 20 days after optimum timing and subjected to seasonal rainfall events or seedpods exposed to completely saturated conditions for 96 h associated with a tropical weather event will result in soybean seed quality deterioration regardless of fungicide application.

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杀菌剂对延迟收获和环境造成的大豆种子质量的影响
2019-2020 年的田间研究评估了施用杀菌剂对延迟收获(最佳收获期后约 20、30 和 44 天,即种子水分 13%)种子质量的影响。处理包括杀菌剂、吡氟醚菌酯加苯醚甲环唑(13.7 液量盎司/英亩 Miravis Top,先正达公司)或甲氰氟唑加吡唑醚菌酯加氟嘧磺隆(8 液量盎司/英亩 Revytek,巴斯夫公司)。在田间(自然降雨事件)和环境控制生长室(79°F 或 90°F,相对湿度为 30% 或 100%,暴露 48 或 96 小时)中研究了环境对大豆[Glycine max (L.) Merr.]种子质量的潜在影响。根据美国农业部的参考图片,种子质量的评分标准为 1 到 10 分,1 分代表种子状况良好,10 分代表种子状况不佳。施用杀真菌剂对延迟收获或饱和环境(相对湿度 100%)下的种子质量没有影响。无论是否施用杀真菌剂,将收获时间推迟到最佳时间之后约 20 天都会导致种子质量下降(1.0 至 2.0 对 4.0 至 8.1 分)。此外,在最佳收获期后的 96 小时内,平均温度和相对湿度环境下的种球暴露会导致种子质量下降(3.2 对 1.4 分),无论是否施用杀真菌剂。结果表明,大豆收获期比最佳收获期推迟 20 天,并受到季节性降雨事件的影响,或种球暴露在与热带气候事件相关的完全饱和的环境中 96 小时,都会导致大豆种子质量下降,无论是否施用杀真菌剂。
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来源期刊
Crop, Forage and Turfgrass Management
Crop, Forage and Turfgrass Management Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.30
自引率
16.70%
发文量
49
期刊介绍: Crop, Forage & Turfgrass Management is a peer-reviewed, international, electronic journal covering all aspects of applied crop, forage and grazinglands, and turfgrass management. The journal serves the professions related to the management of crops, forages and grazinglands, and turfgrass by publishing research, briefs, reviews, perspectives, and diagnostic and management guides that are beneficial to researchers, practitioners, educators, and industry representatives.
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