Kobayashi Michie, Utsushi Hiroe, Fujisaki Koki, Takeda Takumi, Yamashita Tetsuro, Terauchi Ryohei
Iwate Biotechnology Research Center, Kitakami, Iwate, Japan.
Iwate University, Morioka, Iwate, Japan.
Mol Plant Pathol. 2022 Jun;23(6):845-854. doi: 10.1111/mpp.13197. Epub 2022 Mar 8.
The plant extracellular space, including the apoplast and plasma membrane, is the initial site of plant-pathogen interactions. Pathogens deliver numerous secreted proteins, called effectors, into this region to suppress plant immunity and establish infection. Downy mildew caused by the oomycete pathogen Sclerospora graminicola (Sg) is an economically important disease of Poaceae crops including foxtail millet (Setaria italica). We previously reported the genome sequence of Sg and showed that the jacalin-related lectin (JRL) gene family has significantly expanded in this lineage. However, the biological functions of JRL proteins remained unknown. Here, we show that JRL from Sg (SgJRL) functions as an apoplastic virulence effector. We identified eight SgJRLs by protein mass spectrometry analysis of extracellular fluid from Sg-inoculated foxtail millet leaves. SgJRLs consist of a jacalin-like lectin domain and an N-terminal putative secretion signal; SgJRL expression is induced by Sg infection. Heterologous expression of three SgJRLs with N-terminal secretion signal peptides in Nicotiana benthamiana enhanced the virulence of the pathogen Phytophthora palmivora inoculated onto the same leaves. Of the three SgJRLs, SG06536 fused with green fluorescent protein (GFP) localized to the apoplastic space in N. benthamiana leaves. INF1-mediated induction of defence-related genes was suppressed by co-expression of SG06536-GFP. These findings suggest that JRLs are novel apoplastic effectors that contribute to pathogenicity by suppressing plant defence responses.
植物细胞外空间,包括质外体和质膜,是植物与病原体相互作用的初始部位。病原体将大量分泌蛋白(称为效应子)输送到该区域,以抑制植物免疫并建立感染。由卵菌病原体禾生指梗霉(Sg)引起的霜霉病是包括谷子(狗尾草)在内的禾本科作物的一种经济上重要的病害。我们之前报道了Sg的基因组序列,并表明jacalin相关凝集素(JRL)基因家族在该谱系中显著扩增。然而,JRL蛋白的生物学功能仍然未知。在这里,我们表明来自Sg的JRL(SgJRL)作为一种质外体毒力效应子发挥作用。我们通过对接种Sg的谷子叶片细胞外液进行蛋白质质谱分析鉴定出8个SgJRL。SgJRL由一个jacalin样凝集素结构域和一个N端推定的分泌信号组成;SgJRL的表达受Sg感染诱导。在本氏烟草中异源表达三个带有N端分泌信号肽的SgJRL增强了接种在同一叶片上的棕榈疫霉病原体的毒力。在这三个SgJRL中,与绿色荧光蛋白(GFP)融合的SG06536定位于本氏烟草叶片的质外体空间。SG06536-GFP的共表达抑制了INF1介导的防御相关基因的诱导。这些发现表明JRL是新型的质外体效应子,通过抑制植物防御反应来促进致病性。