Department of Plant Biochemistry, Center of Plant Molecular Biology (ZMBP), Eberhard-Karls-University of Tübingen, Tübingen, Germany.
Chair of Phytopathology, TUM School of Life Sciences, Technische Universität München, Freising-Weihenstephan, Germany.
Nat Commun. 2023 Jun 19;14(1):3621. doi: 10.1038/s41467-023-39208-8.
The Arabidopsis thaliana Receptor-Like Protein RLP30 contributes to immunity against the fungal pathogen Sclerotinia sclerotiorum. Here we identify the RLP30-ligand as a small cysteine-rich protein (SCP) that occurs in many fungi and oomycetes and is also recognized by the Nicotiana benthamiana RLP RE02. However, RLP30 and RE02 share little sequence similarity and respond to different parts of the native/folded protein. Moreover, some Brassicaceae other than Arabidopsis also respond to a linear SCP peptide instead of the folded protein, suggesting that SCP is an eminent immune target that led to the convergent evolution of distinct immune receptors in plants. Surprisingly, RLP30 shows a second ligand specificity for a SCP-nonhomologous protein secreted by bacterial Pseudomonads. RLP30 expression in N. tabacum results in quantitatively lower susceptibility to bacterial, fungal and oomycete pathogens, thus demonstrating that detection of immunogenic patterns by Arabidopsis RLP30 is involved in defense against pathogens from three microbial kingdoms.
拟南芥类受体样蛋白 RLP30 有助于对真菌病原体核盘菌的免疫。在这里,我们确定了 RLP30 的配体是一种小的富含半胱氨酸的蛋白质 (SCP),它存在于许多真菌和卵菌中,也被烟草原生质体 RLP RE02 识别。然而,RLP30 和 RE02 序列相似性很小,并且对天然/折叠蛋白的不同部分作出反应。此外,除了拟南芥之外的一些十字花科植物也对线性 SCP 肽而非折叠蛋白作出反应,这表明 SCP 是一个突出的免疫靶标,导致植物中不同免疫受体的趋同进化。令人惊讶的是,RLP30 对细菌假单胞菌分泌的一种 SCP 非同源蛋白表现出第二种配体特异性。在烟草原生质体中表达 RLP30 会导致对细菌、真菌和卵菌病原体的易感性定量降低,从而表明拟南芥 RLP30 对免疫原性模式的检测参与了对来自三个微生物王国的病原体的防御。