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温度和湿度对古巴假霜霉产孢和侵染的影响

Effects of Temperature and Moisture on Sporulation and Infection by Pseudoperonospora cubensis.

作者信息

Sun Shiling, Lian Sen, Feng Shulian, Dong Xiangli, Wang Caixian, Li Baohua, Liang Wenxing

机构信息

Key Lab of Integrated Crop Pests Management of Shandong Province, Qingdao, Shandong 266109, P. R. China and College of Crop Protection and Agronomy, Qingdao Agricultural University, Qingdao 266109, P. R. China.

出版信息

Plant Dis. 2017 Apr;101(4):562-567. doi: 10.1094/PDIS-09-16-1232-RE. Epub 2017 Jan 19.

Abstract

Cucumber downy mildew, caused by Pseudoperonospora cubensis, is a worldwide disease that causes severe damage to cucumber production. The effects of temperature and moisture on sporulation and infection by P. cubensis were investigated by inoculating cucumber ('85F12') cotyledons with sporangia and examining the sporangia produced on the inoculated cotyledons under artificially controlled environments. The result showed that the temperature required for sporangium infection by P. cubensis and sporulation of the downy mildew lesions occurred at 5 to 30°C. The optimal temperature estimated by the fitted model was 18.8°C for sporangium infection and 16.2°C for downy mildew lesion sporulation. The pathogen formed plenty of sporangia when disease cotyledons were wetted or in the environment with relative humidity = 100%. The downy mildew lesions produced only a few sporangia when placed in the environment with relative humidity = 90%. The inoculated cotyledons, which incubated for 5 days at about 20°C in a dry greenhouse, began to form sporangia 4 h after being wetted when incubated in darkness. The quantity of sporangia produced on the downy mildew lesions increased with extension of incubating period (within 12 h), and the relationship between produced sporangia and the incubation period at 15, 20, and 25°C can be described by three exponential models. The observed minimum wetness durations (MWD) required for sporangia to complete the infection process and cause downy mildew were 12, 4, 2.5, 1, 1, and 6 h for 5, 10, 15, 20, 25, and 30°C, respectively. The effect of temperature and wetness duration on infection by sporangia of P. cubensis can be described by the modified Weibull model. The shortest MWD was 0.45 h, about 27 min, estimated by model. The experimental data and models will be helpful in the development of forecasting models and effective control systems for cucumber downy mildew.

摘要

由古巴假霜霉引起的黄瓜霜霉病是一种世界性病害,对黄瓜生产造成严重损害。通过用孢子囊接种黄瓜(‘85F12’)子叶,并在人工控制环境下检查接种子叶上产生的孢子囊,研究了温度和湿度对古巴假霜霉孢子形成和侵染的影响。结果表明,古巴假霜霉孢子囊侵染所需温度以及霜霉病病斑孢子形成发生在5至30°C。拟合模型估计的孢子囊侵染最佳温度为18.8°C,霜霉病病斑孢子形成最佳温度为16.2°C。当病叶被湿润或处于相对湿度=100%的环境中时,病原菌形成大量孢子囊。当置于相对湿度=90%的环境中时,霜霉病病斑仅产生少量孢子囊。在干燥温室中约20°C下培养5天的接种子叶,在黑暗中湿润后4小时开始形成孢子囊。霜霉病病斑上产生的孢子囊数量随培养时间延长(12小时内)而增加,在15、20和25°C下产生的孢子囊与培养时间之间的关系可用三个指数模型描述。孢子囊完成侵染过程并引发霜霉病所需的观察到的最短湿润持续时间(MWD)在5、10、15、20、25和30°C时分别为12、4、2.5、1、1和6小时。温度和湿润持续时间对古巴假霜霉孢子囊侵染的影响可用修正的威布尔模型描述。模型估计最短MWD为0.45小时,约27分钟。实验数据和模型将有助于黄瓜霜霉病预测模型和有效防治系统的开发。

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