Parrello Damien, Mustin Christian, Brie David, Miron Sebastian, Billard Patrick
Université de Lorraine, CNRS, Laboratoire Interdisciplinaire des Environnements Continentaux (LIEC), UMR 7360, Vandoeuvre-lès-Nancy, France.
Université de Lorraine, CNRS, Centre de Recherche en Automatique de Nancy (CRAN) UMR 7039, Vandoeuvre-lès-Nancy, France.
PLoS One. 2015 Mar 30;10(3):e0122848. doi: 10.1371/journal.pone.0122848. eCollection 2015.
The wide collection of currently available fluorescent proteins (FPs) offers new possibilities for multicolor reporter gene-based studies of bacterial functions. However, the simultaneous use of multiple FPs is often limited by the bleed-through of their emission spectra. Here we introduce an original approach for detection and separation of multiple overlapping fluorescent signals from mixtures of bioreporters strains. The proposed method relies on the coupling of synchronous fluorescent spectroscopy (SFS) with blind spectral decomposition achieved by the Canonical Polyadic (CP) decomposition (also known as Candecomp/Parafac) of three-dimensional data arrays. Due to the substantial narrowing of FP emission spectra and sensitive detection of multiple FPs in a one-step scan, SFS reduced spectral overlap and improved the selectivity of the CP unmixing procedure. When tested on mixtures of labeled E. coli strains, the SFS/CP approach could easily extract the contribution of at least four overlapping FPs. Furthermore, it allowed to simultaneously monitor the expression of three iron responsive genes and pyoverdine production in P. aeruginosa. Implemented in a convenient microplate format, this multiplex fluorescent reporter method provides a useful tool to study complex processes with different variables in bacterial systems.
目前可用的荧光蛋白(FPs)种类繁多,为基于多色报告基因的细菌功能研究提供了新的可能性。然而,多种FPs的同时使用常常受到其发射光谱渗漏的限制。在此,我们介绍一种从生物报告菌株混合物中检测和分离多个重叠荧光信号的原创方法。所提出的方法依赖于同步荧光光谱法(SFS)与通过三维数据阵列的典范多向分解(CP分解,也称为Candecomp/Parafac)实现的盲光谱分解的结合。由于荧光蛋白发射光谱的显著变窄以及在一步扫描中对多种荧光蛋白的灵敏检测,同步荧光光谱法减少了光谱重叠,提高了CP解混程序的选择性。当在标记的大肠杆菌菌株混合物上进行测试时,SFS/CP方法能够轻松提取至少四种重叠荧光蛋白的贡献。此外,它还能够同时监测铜绿假单胞菌中三个铁响应基因的表达和绿脓菌素的产生。这种多重荧光报告方法以方便的微孔板形式实现,为研究细菌系统中具有不同变量的复杂过程提供了一种有用的工具。