Department of Micro, Nano, and Bioprocess Engineering, Faculty of Chemistry, Wroclaw University of Science and Technology, 4/6 Norwida Street, 50-373 Wroclaw, Poland.
Division of Plant Pathology and Mycology, Department of Plant Protection, Wroclaw University of Environmental and Life Sciences, 24A Grunwald Square, 50-363 Wroclaw, Poland.
Molecules. 2024 May 8;29(10):2212. doi: 10.3390/molecules29102212.
The research on new compounds against plant pathogens is still socially and economically important. It results from the increasing resistance of pests to plant protection products and the need to maintain high yields of crops, particularly oilseed crops used to manufacture edible and industrial oils and biofuels. We tested thirty-five semi-synthetic hydrazide-hydrazones with aromatic fragments of natural origin against phytopathogenic laccase-producing fungi such as , , and . Among the investigated molecules previously identified as potent laccase inhibitors were also strong antifungal agents against the fungal species tested. The highest antifungal activity showed derivatives of 4-hydroxybenzoic acid and salicylic aldehydes with 3--butyl, phenyl, or isopropyl substituents. appeared to be the most susceptible to the tested compounds, with the lowest IC values between 0.5 and 1.8 µg/mL. We applied two variants of phytotoxicity tests for representative crop seeds and selected hydrazide-hydrazones. Most tested molecules show no or low phytotoxic effect for flax and sunflower seeds. Moreover, a positive impact on seed germination infected with fungi was observed. With the potential for application, the cytotoxicity of the hydrazide-hydrazones of choice toward MCF-10A and BALB/3T3 cell lines was lower than that of the azoxystrobin fungicide tested.
针对植物病原体的新化合物的研究仍然具有重要的社会和经济意义。这是由于害虫对植物保护产品的抗性不断增加,以及维持作物,特别是用于制造食用油和工业油以及生物燃料的油籽作物高产量的需要。我们测试了 35 种带有天然芳香族片段的半合成酰肼腙类化合物对产漆酶的植物病原体真菌,如 、 和 。在所研究的分子中,有一些先前被鉴定为强效漆酶抑制剂的物质也是对测试真菌物种具有很强的抗真菌作用的物质。具有 3--丁基、苯基或异丙基取代基的 4-羟基苯甲酸和水杨醛衍生物表现出最高的抗真菌活性。 似乎对测试化合物最敏感,其 IC 值在 0.5 至 1.8 µg/mL 之间。我们应用了两种代表性作物种子的植物毒性测试变体,并选择了酰肼腙类化合物。大多数测试的分子对亚麻和向日葵种子没有或只有低的植物毒性作用。此外,还观察到对受真菌感染的种子发芽有积极影响。在所选择的酰肼腙类化合物中,具有应用潜力的化合物对 MCF-10A 和 BALB/3T3 细胞系的细胞毒性低于测试的肟菌酯杀菌剂。