EFFICIENCY OF FUNGICIDES IN THE SUPPRESSION OF Pseudoperonospora cubensis

M. Vojinovic, J. Živić, I. Stančić, S. Golubović, S. Perić
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Abstract

Pseudoperonospora cubensis is one of the most important cucumber diseases. Its continued appearance in most parts of Europe, Asia and the United States and its persistence represent a significant threat to the production of cucumbers around the world. Although the disease has been successfully suppressed for many years, severe epidemics have been reported since 2004, especially in the United States (Ivanović, M. et al. 2001). Whether this is the result of a change in the pathogen population or changes in the environment, it is currently unknown. The control of the Pseudoperonospora cubensis relies on the application of fungicide and the resistance of the host itself to the pathogen. Nonetheless, the resistance of Ps. Cubensis is recorded worldwide, and host resistance is no longer sufficient to control the disease as it once was possible. Additional costs on fungicides, along with the potential loss of yield and up to 100% caused by the Pseudoperonospora cubensis, endanger the long-term sustainability of cucumber production (Đurovka, 2001). Knowledge of Ps. cubensis, its epidemiology, the process of infection and genetics of the population is currently lacking, which is why it is necessary to encourage future efforts for the development of resistant sorts as well as fungicides in order to successfully combat Pseudoperonospora cubensis (Ivanović, et al. 2007). Researching this pathogen can help us understand it, and develop effective measures for diagnosing and suppressing Ps. cubensis. In addition to preventive measures in the protection of cucumbers against plant diseases, the efficiency of fungicides, which suppress Pseudoperonospora cubensis, is a limiting factor in cucumber production. Pesticides with the following active substances were used in the study: propineb, metalaxyl + mancozeb, metiram, dimethomorph + mancozeb, azoxystrobin, amethotradine + dimethomorph, azoxystrobin, fluazinam (Vojinović 2014, Vojinović 2015.). The efficiency of the tested fungicides was calculated according to Abbot's formula, and it is 92-97% (Table 1.).
杀菌剂抑菌效果的研究
黄瓜伪operonospora cubensis是黄瓜的主要病害之一。它持续出现在欧洲、亚洲和美国的大部分地区,它的持续存在对世界各地的黄瓜生产构成了重大威胁。虽然这种疾病已被成功地抑制了多年,但自2004年以来,特别是在美国,报告了严重的流行病(ivanoviki, M. et al. 2001)。这是病原体种群变化的结果还是环境变化的结果,目前尚不清楚。古巴假假盘孢菌的防治主要依靠杀菌剂的施用和寄主自身对病原菌的抗性。尽管如此,古巴弓形虫的抗药性在世界范围内都有记录,宿主的抗药性不再像以前那样足以控制这种疾病。杀菌剂的额外成本,加上黄瓜假假面孢菌造成的潜在产量损失(最高可达100%),危及黄瓜生产的长期可持续性(Đurovka, 2001)。目前,人们对古巴假柄孢子虫及其流行病学、感染过程和种群遗传学的了解还很缺乏,这就是为什么有必要鼓励未来努力开发耐药品种和杀菌剂,以成功地对抗古巴假柄孢子虫(ivanoviki, et al. 2007)。研究该病原菌有助于了解该病,制定有效的诊断和防治措施。除预防黄瓜病害的措施外,杀菌剂抑制黄瓜假假面孢子菌的效率是黄瓜生产的限制因素。研究中使用了含有以下活性物质的农药:丙泊尼、甲氨菊酯+代谢物、美替兰、嘧霉啉+代谢物、嘧霉啉、氨苄tradine +啶霉啉、嘧霉啉、氟嗪南(vojinoviki 2014, vojinoviki 2015.)。所试杀菌剂的效率根据Abbot公式计算,为92-97%(表1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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