Ogawa Munekazu, Nishimura Akihiro, Araki Satoshi, Abe Yuzuka, Kuwahara Nanami, Fukumori Yohei, Suzuki Kazumi, Mitani Shigeru
Biosciences Business Headquarters, Ishihara Sangyo Kaisha, Ltd.
Central Research Institute, Ishihara Sangyo Kaisha, Ltd.
J Pestic Sci. 2024 Aug 20;49(3):195-202. doi: 10.1584/jpestics.D24-005.
Pyriofenone demonstrates outstanding efficacy in controlling powdery mildew. We investigated the impact of pyriofenone on the infection processes and cytological features of f. sp. on wheat leaves. The preventive application of pyriofenone before inoculation did not inhibit conidial germination but effectively suppressed both appressorial and haustorial formation. Notably, haustorial formation was effectively inhibited, resulting in the complete suppression of successive lesion development and sporulation. Curative application of pyriofenone after inoculation also inhibited lesion expansion and sporulation. Furthermore, it had considerable impact on the morphogenesis of powdery mildew fungus. We observed multi-formed secondary appressoria, shrunken or bifurcated hyphae, abnormal conidiophores, and clubbed conidia-like structures. Subsequently, we employed a histochemical approach to analyze the localization of essential components for the polar growth of fungal hyphae. Pyriofenone induced mislocalization of the actin cytoskeleton, β-glucan and cytoplasmic vesicles, although it did not affect tubulin orientation.
唑吡芬酮在防治白粉病方面表现出卓越的功效。我们研究了唑吡芬酮对小麦叶上白粉菌感染过程及细胞学特征的影响。接种前预防性施用唑吡芬酮并不抑制分生孢子萌发,但能有效抑制附着胞和吸器的形成。值得注意的是,吸器形成受到有效抑制,导致后续病斑扩展和产孢完全受到抑制。接种后施用唑吡芬酮进行治疗也能抑制病斑扩展和产孢。此外,它对白粉病菌的形态发生有相当大的影响。我们观察到了多形态的次生附着胞、萎缩或分叉的菌丝、异常的分生孢子梗以及棒状分生孢子样结构。随后,我们采用组织化学方法分析真菌菌丝极性生长必需成分的定位。唑吡芬酮诱导肌动蛋白细胞骨架、β-葡聚糖和细胞质囊泡的定位错误,尽管它不影响微管蛋白的取向。