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Design, Synthesis, and Evaluation of the Antifungal Activity of Novel Pyrazole-Thiazole Carboxamides as Succinate Dehydrogenase Inhibitors

机译:新型吡唑 - 噻唑羧酰胺作为琥珀酸脱氢酶抑制剂的抗真菌活性的设计,合成和评价

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摘要

Succinate dehydrogenase (SDH) is regarded as a promising target for fungicide discovery. To continue our ongoing studies on the discovery of novel SDH inhibitors as fungicides, novel pyrazole-thiazole carboxamides were designed, synthesized, and evaluated for their antifungal activity. The results indicated that compounds 9ac, 9bf, and 9cb showed excellent in vitro activities against Rhizoctonia cerealis with EC50 values from 1.1 to 4.9 mg/L, superior to that of the commercial fungicide thifluzamide (EC50 = 23.1 mg/L). Compound 9cd (EC50 = 0.8 mg/L) was far more active than thifluzamide (EC50 = 4.9 mg/L) against Sclerotinia sclerotiorum. Compound 9ac exhibited promising in vivo activity against Rhizoctonia solani (90% at 10 mg/L), which was better than that of thifluzamide (80% at 10 mg/L). The field experiment showed that compound 9ac had 74.4% efficacy against Rhizoctonia solani on the 15th day after two consecutive sprayings at an application rate of 4.80 g a.i./667 m(2), which was close to that of thifluzamide (83.3%). Furthermore, molecular docking explained the possible binding mode of compound 9ac in the RcSDH active site. Our studies indicated that the pyrazole-thiazole carboxamide hybrid is a new scaffold of SDH inhibitors.
机译:琥珀酸脱氢酶(SDH)被视为杀菌剂发现有希望的目标。要继续在新的SDH抑制剂的发现为杀菌剂我们正在进行的研究,新的吡唑,噻唑羧设计,合成,并评价其抗真菌活性。结果表明,化合物9AC,9bf和9CB表现出优异的体外活性对立枯丝核与EC 50个值禾谷1.1至4.9毫克/升,优于市售的杀真菌剂的thifluzamide(EC 50 = 23.1毫克/升)的。化合物9CD(EC 50 = 0.8毫克/升)明显高于溴氟唑菌(EC 50 = 4.9毫克/升)对核盘菌更为活跃。化合物表现出9AC对抗水稻纹枯病菌体内活性(90%以10mg / L),这比溴氟唑菌的更好(80%在10毫克/升)有前途的。现场试验表明,化合物9AC曾在的4.80克a.i./667米的施用率(2),这是接近的溴氟唑菌(83.3%)74.4%对在第15天纹枯病两个连续喷洒后的效果。此外,分子对接在RcSDH活性位点说明化合物9AC的可能的结合模式。我们的研究表明,吡噻唑甲酰胺混合动力是SDH抑制剂的新支架。

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