Plant-microbe interactions, Department of Biology, Utrecht University, Padualaan 8, 3508 CH Utrecht, The Netherlands.
Mol Plant Microbe Interact. 2012 May;25(5):697-708. doi: 10.1094/MPMI-10-11-0269.
The genome of the downy mildew pathogen Hyaloperonospora arabidopsidis encodes necrosis and ethylene-inducing peptide 1 (Nep1)-like proteins (NLP). Although NLP are widely distributed in eukaryotic and prokaryotic plant pathogens, it was surprising to find these proteins in the obligate biotrophic oomycete H. arabidopsidis. Therefore, we analyzed the H. arabidopsidis NLP (HaNLP) family and identified 12 HaNLP genes and 15 pseudogenes. Most of the 27 genes form an H. arabidopsidis-specific cluster when compared with other oomycete NLP genes, suggesting this class of effectors has recently expanded in H. arabidopsidis. HaNLP transcripts were mainly detected during early infection stages. Agrobacterium tumefaciens-mediated transient expression and infiltration of recombinant NLP into tobacco and Arabidopsis leaves revealed that all HaNLP tested are noncytotoxic proteins. Even HaNLP3, which is most similar to necrosis-inducing NLP proteins of other oomycetes and which contains all amino acids that are critical for necrosis-inducing activity, did not induce necrosis. Chimeras constructed between HaNLP3 and the necrosis-inducing PsojNIP protein demonstrated that most of the HaNLP3 protein is functionally equivalent to PsojNIP, except for an exposed domain that prevents necrosis induction. The early expression and species-specific expansion of the HaNLP genes is suggestive of an alternative function of noncytolytic NLP proteins during biotrophic infection of plants.
Arabidopsis 菌核病病原菌 Hyaloperonospora arabidopsidis 的基因组编码坏死和乙烯诱导肽 1(Nep1)样蛋白(NLP)。虽然 NLP 广泛分布于真核和原核植物病原体中,但在专性生物营养型卵菌 H. arabidopsidis 中发现这些蛋白令人惊讶。因此,我们分析了 H. arabidopsidis NLP(HaNLP)家族,并鉴定了 12 个 HaNLP 基因和 15 个假基因。与其他卵菌 NLP 基因相比,这 27 个基因中的大多数在 H. arabidopsidis 中形成了一个特定的簇,表明这一类效应子在 H. arabidopsidis 中最近扩张。HaNLP 转录本主要在早期感染阶段检测到。农杆菌介导的瞬时表达和重组 NLP 渗入烟草和拟南芥叶片表明,所有测试的 HaNLP 都是非细胞毒性蛋白。甚至 HaNLP3,它与其他卵菌的坏死诱导 NLP 蛋白最相似,并且包含所有对坏死诱导活性至关重要的氨基酸,也没有诱导坏死。HaNLP3 与坏死诱导 PsojNIP 蛋白之间构建的嵌合体表明,HaNLP3 蛋白的大部分具有与 PsojNIP 相当的功能,除了一个暴露的结构域阻止了坏死的诱导。HaNLP 基因的早期表达和种间扩张表明,在植物的生物营养感染过程中,非细胞溶解 NLP 蛋白具有替代功能。