Yang Xinyu, Ding Fa, Zhang Lei, Sheng Yuting, Zheng Xiaobo, Wang Yuanchao
Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.
Department of Plant Pathology, Nanjing Agricultural University, Nanjing 210095, China.
Fungal Genet Biol. 2015 Sep;82:108-15. doi: 10.1016/j.fgb.2015.04.023. Epub 2015 Jul 6.
The sensing of extracellular signals and their transduction into an appropriate response are crucial for the survival and virulence of plant pathogens. Eukaryotic plant pathogens must overcome the obstacles posed by nuclear membranes to manipulate gene expression to adapt to the host challenge. A highly sophisticated mechanism is the use of importins to transport proteins into the nucleus. In this study, we identified a conserved importin α gene, PsIMPA1, in Phytophthora sojae that was differentially expressed during the life cycle of this soybean pathogen. PsIMPA1 expression was lowest in zoospores and cysts but relatively consistent during the other life cycle stages, except for a slight increase at 6h post infection. Silenced mutants Psimpa1 had a decreased growth rate, an aberrant mycelial morphology, and a severely impaired ability to form oospores and sporangia. In addition, the Psimpa1 mutants exhibited reduced pathogenicity compared to the wild type. 3,3-Diaminobenzidine (DAB) staining and in vitro hydrogen peroxide tolerance assays showed that the scavenging of reactive oxygen species by these mutants was significantly impaired. Taken together, these results indicate that PsIMPA1 regulates multiple processes during the life cycle of P. sojae.
感知细胞外信号并将其转化为适当的反应对于植物病原体的生存和毒力至关重要。真核植物病原体必须克服核膜带来的障碍,以操纵基因表达来应对宿主的挑战。一种高度复杂的机制是利用输入蛋白将蛋白质转运到细胞核中。在本研究中,我们在大豆疫霉中鉴定出一个保守的输入蛋白α基因PsIMPA1,该基因在这种大豆病原体的生命周期中差异表达。PsIMPA1在游动孢子和孢囊中表达最低,但在其他生命周期阶段相对一致,除了感染后6小时略有增加。沉默突变体Psimpa1的生长速率降低,菌丝形态异常,形成卵孢子和孢子囊的能力严重受损。此外,与野生型相比,Psimpa1突变体的致病性降低。3,3-二氨基联苯胺(DAB)染色和体外过氧化氢耐受性试验表明,这些突变体清除活性氧的能力显著受损。综上所述,这些结果表明PsIMPA1在大豆疫霉的生命周期中调节多个过程。