西红柿对果实疫病的保护以及栽培品种对病原体(Phytophthora infestans)的适应性

I. Cacaj, Nazmi Hasanaj
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引用次数: 0

摘要

这项为期两年的研究旨在评估化学制剂的功效以及番茄栽培品种(Amati 和 Bella)对导致果实枯萎病的 Phytophthora infestans 病原体的抗性。对包括 Metalaxyl、Azoxystrobin、Mancozeb 和 Copper 在内的七种杀菌剂组合进行了测试,并使用麦金尼指数进行了难易程度评估。2021 年和 2022 年的结果一致表明,唑啉草酯和甲霜灵的组合在保护两种栽培品种免受疫霉侵染方面表现出最高的效率,感染率分别低至 5.30% 和 4.43%。除了杀真菌剂的效果外,栽培品种抗性分析表明,与阿玛蒂相比,贝拉对病原体的抗性更强,贝拉的感染率从 4.43% 到 6.30%,而阿玛蒂的感染率从 5.30% 到 7.03%。贝拉抗病性的增强得益于其较小的植株。这项研究强调了精心使用系统杀菌剂以防止病原体产生抗药性的重要性。此外,研究还建议根据气候条件调整喷洒频率,以优化枯萎病管理策略。这项研究为有效的枯萎病管理策略提供了宝贵的见解,突出了特定的杀菌剂组合,并强调了番茄栽培品种的抗性特征。这些发现有助于开发保护番茄免受疫霉菌侵袭的可持续方法,最终有助于培育更有韧性和抗病性的番茄作物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Protection of Tomatoes against the Fruit Blight and the Sustainability of Cultivars to the Pathogen (Phytophthora infestans)
This two-year research aimed to evaluate the efficacy of chemical preparations and the resistance of tomato cultivars (Amati and Bella) against the Phytophthora infestans pathogen causing fruit blight. Fungicides, including Metalaxyl, Azoxystrobin, Mancozeb, and Copper, were tested in seven combinations, and dis - ease assessments were conducted using the McKinney Index. Results from 2021 and 2022 consistently demonstrated that the combination of Azoxystrobin and Metalaxyl exhibited the highest efficiency in pro - tecting both cultivars against Phytophthora infestans , with infection rates as low as 5.30% and 4.43%, respectively. In addition to fungicide effectiveness, cultivar resistance analysis revealed that Bella consis - tently displayed higher sustainability to the pathogen compared to Amati, with infection rates ranging from 4.43% to 6.30% for Bella, compared to 5.30% to 7.03% for Amati. This enhanced resistance in Bella was attributed to its smaller vegetative mass. The study underscores the importance of meticulous systemic fungicide use to prevent the development of pathogen resistance. Furthermore, the research recommends adjusting the frequency of sprayings based on climatic conditions to optimize blight management strate - gies. This research provides valuable insights into effective blight management strategies, highlighting specific fungicide combinations, and emphasizing the resistance characteristics of tomato cultivars. These findings contribute to the development of sustainable practices for protecting tomatoes against Phytophthora infestans , ultimately aiding in the cultivation of more resilient and disease-resistant tomato crops.
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