Department of Plant-Microbe Interactions, Department of Biology, Utrecht University, Utrecht, The Netherlands.
PLoS One. 2011 May 9;6(5):e19328. doi: 10.1371/journal.pone.0019328.
Biotrophic plant pathogens secrete effector proteins that are important for infection of the host. The aim of this study was to identify effectors of the downy mildew pathogen Hyaloperonospora arabidopsidis (Hpa) that are expressed during infection of its natural host Arabidopsis thaliana. Infection-related transcripts were identified from Expressed Sequence Tags (ESTs) derived from leaves of the susceptible Arabidopsis Ws eds1-1 mutant inoculated with the highly virulent Hpa isolate Waco9. Assembly of 6364 ESTs yielded 3729 unigenes, of which 2164 were Hpa-derived. From the translated Hpa unigenes, 198 predicted secreted proteins were identified. Of these, 75 were found to be Hpa-specific and six isolate Waco9-specific. Among 42 putative effectors identified there were three Elicitin-like proteins, 16 Cysteine-rich proteins and 18 host-translocated RXLR effectors. Sequencing of alleles in different Hpa isolates revealed that five RXLR genes show signatures of diversifying selection. Thus, EST analysis of Hpa-infected Arabidopsis is proving to be a powerful method for identifying pathogen effector candidates expressed during infection. Delivery of the Waco9-specific protein RXLR29 in planta revealed that this effector can suppress PAMP-triggered immunity and enhance disease susceptibility. We propose that differences in host colonization can be conditioned by isolate-specific effectors.
生物寄生性植物病原体分泌效应蛋白,这些蛋白对于感染宿主至关重要。本研究旨在鉴定拟南芥霜霉病病原体 Hyaloperonospora arabidopsidis(Hpa)的效应子,这些效应子在其天然宿主拟南芥的感染过程中表达。从接种高度毒力 Hpa 分离株 Waco9 的感病拟南芥 Ws eds1-1 突变体叶片衍生的表达序列标签(EST)中鉴定了与感染相关的转录本。组装 6364 个 EST 产生了 3729 个单体,其中 2164 个是 Hpa 衍生的。从翻译的 Hpa 单体中,鉴定出 198 个预测的分泌蛋白。其中,有 75 个是 Hpa 特异性的,6 个是 Waco9 特异性的。在鉴定的 42 个推定效应子中,有 3 个类激发素蛋白、16 个富含半胱氨酸的蛋白和 18 个宿主易位的 RXLR 效应子。在不同 Hpa 分离株中的等位基因测序表明,有 5 个 RXLR 基因表现出多样化选择的特征。因此,对 Hpa 感染拟南芥的 EST 分析被证明是一种鉴定感染过程中表达的病原体效应子候选物的有效方法。在体内递送 Waco9 特异性蛋白 RXLR29 表明,该效应子可以抑制 PAMP 触发的免疫并增强疾病易感性。我们提出,宿主定殖的差异可以由分离株特异性效应子决定。