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首页> 外文期刊>Pesticide Biochemistry and Physiology >Impact of proquinazid on appressorial development of the barley powdery mildew fungus Blumeria graminis f.sp hordei.
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Impact of proquinazid on appressorial development of the barley powdery mildew fungus Blumeria graminis f.sp hordei.

机译:喹诺酮对大麦白粉病真菌 Blumeria graminis f.sp hordei 的附生发育的影响。

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摘要

The effect of a novel mildew-specific quinazolinone fungicide, proquinazid, on the barley powdery mildew fungus, Blumeria graminis f.sp. hordei, has been studied using scanning electron microscopy and quantitative RT-PCR. Proquinazid has previously been shown to perturb conidial morphogenesis, similar to quinoxyfen, a currently widely used mildewicide. In this study, we confirm an effect of proquinazid on appressorial differentiation. By comparison to quinoxyfen, however, proquinazid affects this highly coordinated process differently, with more deformed appressorial germ tubes observed, often growing away from the leaf surface. Comparison of the expression of genes involved in the transduction of signals directing conidial development has also suggested differences in the affects of proquinazid and quinoxyfen. In particular, the expression of the Ras-type GTPase activating gene, previously implicated in quinoxyfen resistance, is distinctly affected by proquinazid treatment at time points critical to normal conidial morphogenesis. Together, these data indicate differences in the mechanisms by which proquinazid perturbs appressorial differentiation in comparison with quinoxyfen.
机译:新型霉菌特异性喹唑啉酮杀菌剂普萘喹嗪对大麦白粉病真菌 Blumeria graminis f.sp。的影响。已使用扫描电子显微镜和定量RT-PCR研究了 hordei 。以前已显示丙喹嗪会扰动分生孢子的形态发生,类似于目前广泛使用的除霉剂奎诺芬。在这项研究中,我们确认了喹喹嗪对食欲分化的作用。但是,与喹喔啉相比,丙喹嗪对这种高度协调的过程有不同的影响,观察到的变形的附生胚芽管通常远离叶片表面生长。比较参与分生孢子发育的信号转导中涉及的基因表达的比较,也表明了丙喹嗪和奎尼芬的作用差异。尤其是,以前与奎尼芬芬耐药有关的Ras型GTPase激活基因的表达在正常分生孢子形态发生关键的时间点受到喹喹啉处理的明显影响。总之,这些数据表明,与喹喔啉相比,喹乙醇能扰乱食欲分化的机理有所不同。

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