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新型四唑肟类杀菌剂啶氧菌酯对植物病原卵菌的生物活性和系统转移。

Biological activity and systemic translocation of the new tetrazolyloxime fungicide picarbutrazox against plant-pathogenic oomycetes.

机构信息

State Key Laboratory of Crop Stress Resistance and High-Efficiency Production, College of Plant Protection, Northwest A&F University, Yangling, China.

Department of Plant Pathology, College of Plant Protection, China Agricultural University, Beijing, China.

出版信息

Pest Manag Sci. 2024 Dec;80(12):6511-6518. doi: 10.1002/ps.8388. Epub 2024 Aug 23.

Abstract

BACKGROUND

Picarbutrazox is a new tetrazolyloxime fungicide discovered in 2014 by Nippon Soda. It is mostly used to protect against Phytophthora spp. and Pythium spp. However, little is known of its inhibition spectrum, protective and curative activity, and systemic translocation in plants.

RESULTS

While picarbutrazox did not show obvious antifungal activity, it exhibited significant activity against oomycetes, including Phytophthora spp., Pythium spp. and Phytopythium spp.. The effective concentration for 50% growth inhibition (EC) values of picarbutrazox against 16 oomycetes ranged from 3.1 × 10 and 7.27 × 10 μg mL. Furthermore, picarbutrazox could markedly inhibited the mycelial development, sporangia production, zoospore release, and cyst germination of Phytophthora capsici, with EC values of 1.34 × 10, 1.11 × 10, 4.85 × 10, and 5.88 × 10 μg mL, respectively. Additionally, under greenhouse conditions, the protective and curative activities of picarbutrazox at 200 mg L (100%, 41.03%) against the P. capsici infection in peppers were higher than those of the reference fungicide dimethomorph at 200 mg L (77.52%, 36.15%). High-performance liquid chromatography analysis confirmed that picarbutrazox showed excellent systemic translocation in pepper plants.

CONCLUSION

The results showed that picarbutrazox markedly inhibited the important plant oomycete pathogens including Phytophthora spp., Pythium spp. and Phytopythium spp.. It also displayed excellent protective, curative and systemic translocation activity. Picarbutrazox thus has significant potential for preventing and controlling diseases caused by oomycetes. © 2024 Society of Chemical Industry.

摘要

背景

比卡唑是由日本曹达公司于 2014 年发现的一种新型四唑肟类杀菌剂。它主要用于防治卵菌纲和腐霉属。然而,人们对其抑制谱、保护和治疗活性以及在植物中的系统转移知之甚少。

结果

虽然比卡唑本身没有明显的抗真菌活性,但它对卵菌纲,包括疫霉属、腐霉属和腐霉属表现出显著的活性。比卡唑对 16 种卵菌纲的 50%生长抑制有效浓度(EC)值范围为 3.1×10 和 7.27×10μgmL。此外,比卡唑能显著抑制辣椒疫霉菌的菌丝生长、孢子囊产生、游动孢子释放和胞囊萌发,EC 值分别为 1.34×10、1.11×10、4.85×10和 5.88×10μgmL。此外,在温室条件下,比卡唑在 200mgL(100%,41.03%)对辣椒疫霉病的防治效果优于对照药剂烯酰吗啉在 200mgL(77.52%,36.15%)。高效液相色谱分析证实,比卡唑在辣椒植株中具有良好的系统转移能力。

结论

结果表明,比卡唑能显著抑制重要的植物卵菌病原体,包括疫霉属、腐霉属和腐霉属。它还表现出良好的保护、治疗和系统转移活性。因此,比卡唑在防治卵菌引起的病害方面具有很大的潜力。 © 2024 化学工业协会。

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