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首页> 外文期刊>Phytopathology >Association Between Weather Variables, Airborne Inoculum Concentration, and Raspberry Fruit Rot Caused by Botrytis cinerea
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Association Between Weather Variables, Airborne Inoculum Concentration, and Raspberry Fruit Rot Caused by Botrytis cinerea

机译:天气变量与Botrytis Cinerea引起的天气变量,空中接种物浓度和覆盆子果实腐烂

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摘要

Botrytis fruit rot (BFR), one of the most important diseases of raspberry (Rubus spp.), is controlled primarily with fungicides. Despite the use of fungicides, crop losses due to BFR are high in most years. The aim of this study was to investigate the association between airborne inoculum, weather variables, and BFR in order to improve the management of the disease as well as harvest and storage decisions. Crop losses, measured as the percentage of diseased berries during the harvest period, were monitored in unsprayed field plots at four sites in three successive years, together with meteorological data and the number of conidia in the air. Based on windowpane analysis, there was no evidence of correlation between crop losses and temperature, vapor pressure deficit, wind, solar radiation, or probability of infection. There were significant correlations between crop losses and airborne inoculum and between crop losses and humidity-related variables, and the best window length was identified as 7 days. Using 7-day average airborne inoculum concentration combined with 7-day average relative humidity for periods ending 6 to 8 days before bloom, it was possible to accurately predict crop losses (R-2 of 0.86 to 0.89). These models could be used to assist with managing BFR, timing harvests, and optimizing storage duration in raspberry crops.
机译:Botrytis Fruit Rot(BFR)是覆盆子最重要的疾病之一(Rubus SPP。),主要用杀菌剂控制。尽管使用杀真菌剂,但大多数岁月都会造成BFR引起的作物损失。本研究的目的是调查空中接种物,天气变量和BFR之间的关联,以改善疾病的管理以及收获和存储决策。作为收获期间患病期间的患病浆果百分比测量的作物损失在连续三个阶段在四个地点监测了在连续的四个地点,以及气象数据和空气中的分类数量。基于窗玻璃分析,没有作物损失和温度,蒸气压力,风,太阳辐射或感染概率之间存在相关性的证据。作物损失和空气中的接种物之间以及作物损失与湿度相关变量之间存在显着相关性,并且最佳窗口长度被鉴定为7天。使用7天的平均空气传播接种浓度与盛开前6至8天结合的7天平均相对湿度,可以准确地预测作物损失(R-2为0.86至0.89)。这些模型可用于帮助管理BFR,时序收获和优化覆盆子作物中的储存持续时间。

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  • 来源
    《Phytopathology》 |2018年第1期|共13页
  • 作者单位

    Agr &

    Agri Food Canada 430 Gouin Blvd St Jean PQ J3B 3E6 Canada;

    Univ Montreal Dept Math &

    Stat Ctr Ville Stn Andre Aisenstadt Bldg POB 6128 Montreal PQ H3C 3J7 Canada;

    Syngenta Crop Protect LLC 410 South Swing Rd Greensboro NC 27409 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物病理学;
  • 关键词

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