Microbial Interactions in Plant Ecosystems, Center for Plant Molecular Biology, University of Tübingen, 72076, Tübingen, Germany.
Department of Biology, Quantitative Proteomics Group, Interfaculty Institute of Cell Biology, University of Tübingen, 72076, Tübingen, Germany.
New Phytol. 2023 Sep;239(6):2320-2334. doi: 10.1111/nph.18995. Epub 2023 May 24.
Biotic and abiotic interactions shape natural microbial communities. The mechanisms behind microbe-microbe interactions, particularly those protein based, are not well understood. We hypothesize that released proteins with antimicrobial activity are a powerful and highly specific toolset to shape and defend plant niches. We have studied Albugo candida, an obligate plant parasite from the protist Oomycota phylum, for its potential to modulate the growth of bacteria through release of antimicrobial proteins into the apoplast. Amplicon sequencing and network analysis of Albugo-infected and uninfected wild Arabidopsis thaliana samples revealed an abundance of negative correlations between Albugo and other phyllosphere microbes. Analysis of the apoplastic proteome of Albugo-colonized leaves combined with machine learning predictors enabled the selection of antimicrobial candidates for heterologous expression and study of their inhibitory function. We found for three candidate proteins selective antimicrobial activity against Gram-positive bacteria isolated from A. thaliana and demonstrate that these inhibited bacteria are precisely important for the stability of the community structure. We could ascribe the antibacterial activity of the candidates to intrinsically disordered regions and positively correlate it with their net charge. This is the first report of protist proteins with antimicrobial activity under apoplastic conditions that therefore are potential biocontrol tools for targeted manipulation of the microbiome.
生物和非生物相互作用塑造了自然微生物群落。微生物相互作用的机制,特别是基于蛋白质的相互作用,还没有得到很好的理解。我们假设具有抗菌活性的释放蛋白是一种强大而高度特异的工具,可以塑造和保护植物小生境。我们研究了来自原生动物卵菌门的专性植物寄生虫——油菜霜霉病菌,以研究其通过将抗菌蛋白释放到质外体中来调节细菌生长的潜力。感染和未感染野生拟南芥的油菜霜霉病样本的扩增子测序和网络分析显示,油菜霜霉病和其他叶际微生物之间存在大量的负相关关系。对油菜霜霉病感染叶片的质外体蛋白质组进行分析,并结合机器学习预测因子,选择抗菌候选物进行异源表达,并研究其抑制功能。我们发现了三种候选蛋白对从拟南芥中分离的革兰氏阳性菌具有选择性抗菌活性,并证明这些抑制细菌正是群落结构稳定所必需的。我们可以将候选物的抗菌活性归因于无规则卷曲区域,并将其与净电荷呈正相关。这是首例报道在质外体条件下具有抗菌活性的原生动物蛋白,因此它们是靶向微生物组操纵的潜在生物防治工具。