Peredo Elena L, Simmons Sheri L
Marine Biological Laboratory, Josephine Bay Paul Center, Woods Hole, MA, United States.
Front Microbiol. 2018 Jan 9;8:2669. doi: 10.3389/fmicb.2017.02669. eCollection 2017.
Molecular methods for microbial community characterization have uncovered environmental and plant-associated factors shaping phyllosphere communities. Variables undetectable using bulk methods can play an important role in shaping plant-microbe interactions. Microscale analysis of bacterial dynamics in the phyllosphere requires imaging techniques specially adapted to the high autoflouresence and 3-D structure of the leaf surface. We present an easily-transferable method (Leaf-FISH) to generate high-resolution tridimensional images of leaf surfaces that allows simultaneous visualization of multiple bacterial taxa in a structurally informed context, using taxon-specific fluorescently labeled oligonucleotide probes. Using a combination of leaf pretreatments coupled with spectral imaging confocal microscopy, we demonstrate the successful imaging bacterial taxa at the genus level on cuticular and subcuticular leaf areas. Our results confirm that different bacterial species, including closely related isolates, colonize distinct microhabitats in the leaf. We demonstrate that highly related species have distinct colonization patterns that could not be predicted by shared physiological traits, such as carbon source requirements or phytohormone production. High-resolution characterization of microbial colonization patterns is critical for an accurate understanding of microbe-microbe and microbe-plant interactions, and for the development of foliar bacteria as plant-protective agents.
用于微生物群落特征分析的分子方法揭示了塑造叶际群落的环境和与植物相关的因素。使用传统方法无法检测到的变量在塑造植物-微生物相互作用中可能起着重要作用。对叶际细菌动态进行微观分析需要专门适用于叶片表面高自发荧光和三维结构的成像技术。我们提出了一种易于转移的方法(叶荧光原位杂交法)来生成叶片表面的高分辨率三维图像,该方法使用分类群特异性荧光标记寡核苷酸探针,能够在结构信息丰富的背景下同时可视化多种细菌分类群。通过结合叶片预处理和光谱成像共聚焦显微镜,我们展示了在表皮和皮下叶区域成功对属水平的细菌分类群进行成像。我们的结果证实,不同的细菌物种,包括密切相关的分离株,在叶片中定殖于不同的微生境。我们证明,高度相关的物种具有独特的定殖模式,这些模式无法通过共同的生理特征(如碳源需求或植物激素产生)来预测。微生物定殖模式的高分辨率表征对于准确理解微生物-微生物和微生物-植物相互作用以及开发作为植物保护剂的叶际细菌至关重要。