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Effects of leaf wetness duration and temperature on infection of Prunus by Xanthomonas arboricola pv. pruni

机译:叶片湿润持续时间和温度对黄单胞菌感染李氏李的影响。普鲁尼

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摘要

Xanthomonas arboricola pv. pruni is the causal agent of bacterial spot disease of stone fruits and almond. The bacterium is distributed throughout the major stone-fruit-producing areas of the World and is considered a quarantine organism in the European Union according to the Council Directive 2000/29/EC, and by the European and Mediterranean Plant Protection Organization. The effect of leaf wetness duration and temperature on infection of Prunus by X. arboricola pv. pruni was determined in controlled environment experiments. Potted plants of the peach-almond hybrid GF-677 were inoculated with bacterial suspensions and exposed to combinations of six leaf wetness durations (from 0 to 24 h) and seven fixed temperatures (from 5 to 35°C) during the infection period. Then, plants were transferred to a biosafety greenhouse, removed from bags, and incubated at optimal conditions for disease development. Although leaf wetness was required for infection of Prunus by X. arboricola pv. pruni, temperature had a greater effect than leaf wetness duration on disease severity. The combined effect of wetness duration and temperature on disease severity was quantified using a modification of the Weibull equation proposed by Duthie. The reduced-form of Duthie’s model obtained by nonlinear regression analysis fitted well to data (R = 0.87 and R2adj = 0.85), and all parameters were significantly different from 0. The estimated optimal temperature for infection by X. arboricola pv. pruni was 28.9°C. Wetness periods longer than 10 h at temperatures close to 20°C, or 5 h at temperatures between 25 and 35°C were necessary to cause high disease severity. The predictive capacity of the model was evaluated using an additional set of data obtained from new wetness duration-temperature combinations. In 92% of the events the observed severity agreed with the predicted level of infection risk. The risk chart derived from the reduced form of Duthie’s model can be used to estimate the potential risk for infection of Prunus by X. arboricola pv. pruni based on observed or forecasted temperature and wetness duration.
机译:Xanthomonas arboricola PV。 pruni是核果和杏仁细菌斑病的病原体。该细菌分布在世界主要核果产区,根据欧盟理事会指令2000/29 / EC以及欧洲和地中海植物保护组织,该细菌被视为欧盟的检疫生物。叶片湿润持续时间和温度对李氏杆菌感染李氏李的影响。 pruni是在受控环境实验中确定的。在感染期间,将桃-杏仁杂种GF-677的盆栽植物接种细菌悬液,并暴露于六个叶片湿度持续时间(0至24小时)和七个固定温度(5至35°C)的组合。然后,将植物转移到生物安全温室中,从袋中取出,并在疾病发展的最佳条件下孵育。尽管叶子被湿润需要被X. arboricola pv感染。 pruni,温度对病情严重程度的影响大于叶片潮湿持续时间。湿度持续时间和温度对疾病严重程度的综合影响通过使用Duthie提出的Weibull方程的修改进行量化。通过非线性回归分析获得的Duthie模型的简化形式非常适合数据(R = 0.87,R 2 adj = 0.85),并且所有参数均显着不同于0。估计的最佳感染温度由X. arboricola pv。 pruni 是28.9°C。为使疾病严重程度高,需要在接近20°C的温度下超过10小时的湿润时间,或在25至35°C的温度下超过5小时的湿润时间。使用从新的湿润持续时间-温度组合获得的另一组数据来评估模型的预测能力。在92%的事件中,观察到的严重程度与预计的感染风险水平相符。从Duthie模型的简化形式得出的风险图表可用于估计 X 感染 Prunus 的潜在风险。 arboricola pv。 pruni 根据观测或预测的温度和湿度持续时间。

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