Laboratory of Phytopathology, Wageningen University and Research, Wageningen, Netherlands.
Bioinformatics Group, Wageningen University and Research, Wageningen, Netherlands.
Mol Plant Pathol. 2021 May;22(5):551-563. doi: 10.1111/mpp.13043. Epub 2021 Mar 3.
Pathogens deploy a wide range of pathogenicity factors, including a plethora of proteases, to modify host tissue or manipulate host defences. Metalloproteases (MPs) have been implicated in virulence in several animal and plant pathogens. Here we investigated the repertoire of MPs in 46 stramenopile species including 37 oomycetes, 5 diatoms, and 4 brown algae. Screening their complete proteomes using hidden Markov models (HMMs) trained for MP detection resulted in over 4,000 MPs, with most species having between 65 and 100 putative MPs. Classification in clans and families according to the MEROPS database showed a highly diverse MP repertoire in each species. Analyses of domain composition, orthologous groups, distribution, and abundance within the stramenopile lineage revealed a few oomycete-specific MPs and MPs potentially related to lifestyle. In-depth analyses of MPs in the plant pathogen Phytophthora infestans revealed 91 MPs, divided over 21 protein families, including 25 MPs with a predicted signal peptide or signal anchor. Expression profiling showed different patterns of MP gene expression during pre-infection and infection stages. When expressed in leaves of Nicotiana benthamiana, 12 MPs changed the sizes of lesions caused by inoculation with P. infestans; with 9 MPs the lesions were larger, suggesting a positive effect on the virulence of P. infestans, while 3 MPs had a negative effect, resulting in smaller lesions. To the best of our knowledge, this is the first systematic inventory of MPs in oomycetes and the first study pinpointing MPs as potential pathogenicity factors in Phytophthora.
病原体利用多种致病性因子(包括大量蛋白酶)来改变宿主组织或操纵宿主防御。金属蛋白酶(MPs)已被证实与多种动物和植物病原体的毒力有关。在这里,我们研究了 46 种不等鞭毛类物种中的 MPs 谱,包括 37 种卵菌、5 种硅藻和 4 种褐藻。使用针对 MP 检测而训练的隐马尔可夫模型(HMM)筛选它们完整的蛋白质组,结果发现超过 4000 个 MPs,大多数物种有 65 到 100 个推定的 MPs。根据 MEROPS 数据库进行的家族和家族分类表明,每个物种的 MPs 谱都非常多样化。对域组成、直系同源群、分布和丰度进行分析,揭示了一些卵菌特异性的 MPs 和可能与生活方式有关的 MPs。对植物病原体疫霉属的 MPs 进行深入分析,发现了 91 个 MPs,分为 21 个蛋白家族,包括 25 个具有预测信号肽或信号锚的 MPs。表达谱分析显示,在侵染前和侵染阶段,MP 基因的表达模式不同。在本氏烟叶片中表达时,12 个 MPs 改变了接种疫霉属后引起的病斑大小;其中 9 个 MPs 导致病斑更大,表明对疫霉属的毒力有积极影响,而 3 个 MPs 则产生负面影响,导致病斑更小。据我们所知,这是首次对卵菌中的 MPs 进行系统盘点,也是首次将 MPs 确定为疫霉属的潜在致病性因子。