首页> 外文期刊>Frontiers in Chemistry >Fungal Histidine Phosphotransferase Plays a Crucial Role in Photomorphogenesis and Pathogenesis in Magnaporthe oryzae
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Fungal Histidine Phosphotransferase Plays a Crucial Role in Photomorphogenesis and Pathogenesis in Magnaporthe oryzae

机译:真菌组氨酸磷酸转移酶在稻瘟病菌的光形态和发病机理中起着至关重要的作用

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Two-component signal transduction (TCST) pathways play crucial roles in many cellular functions such as stress responses, biofilm formation and sporulation. The histidine phosphotransferase (HPt), which is an intermediate phosphotransfer protein in a two-component system, transfers a phosphate group to a phosphorylatable aspartate residue in the target protein(s), and up-regulates stress-activated MAP kinase cascades. Most fungal genomes carry a single copy of the gene coding for HPt, which are potential antifungal targets. However, unlike the histidine kinases (HK) or the downstream response regulators (RR) in two-component system, the HPts have not been well studied in phytopathogenic fungi. In this study, we investigated the role of HPt in the model rice-blast fungal pathogen Magnaporthe oryzae. We found that in M. oryzae an additional isoform of the HPT gene YPD1 was expressed specifically in response to light. Further, the expression of light-regulated genes such as those encoding envoy and blue-light-harvesting protein, and PAS domain containing HKs was significantly reduced upon down-regulation of YPD1 in M. oryzae. Importantly, down-regulation of YPD1 led to a significant decrease in the ability to penetrate the host cuticle and in light-dependent conidiation in M. oryzae. Thus, our results indicate that Ypd1 plays an important role in asexual development and host invasion, and suggest that YPD1 isoforms likely have distinct roles to play in the rice-blast pathogen M. oryzae.
机译:两成分信号转导(TCST)通路在许多细胞功能(例如应激反应,生物膜形成和孢子形成)中起关键作用。组氨酸磷酸转移酶(HPt)是两组分系统中的一种中间磷酸转移蛋白,可将磷酸基团转移至目标蛋白中的可磷酸化天冬氨酸残基,并上调应激激活的MAP激酶级联反应。大多数真菌基因组均带有编码HPt的基因的单个拷贝,HPt是潜在的抗真菌靶标。但是,与二组分系统中的组氨酸激酶(HK)或下游响应调节剂(RR)不同,在植物病原性真菌中尚未对HPts进行很好的研究。在这项研究中,我们调查了HPt在稻瘟病菌模型稻瘟病菌中的作用。我们发现,在米曲霉中,HPT基因YPD1的另一种同工型是对光的特异性表达。此外,光调节基因,例如编码使节和蓝光捕获蛋白的基因,以及含有PAS结构域的HKs的表达,由于在稻瘟病菌中YPD1的下调而显着降低。重要的是,YPD1的下调导致米曲霉穿透宿主角质层的能力和光依赖的分生能力显着降低。因此,我们的结果表明Ypd1在无性发育和宿主入侵中起重要作用,并表明YPD1亚型可能在稻瘟病菌米曲霉中起着不同的作用。

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