Microbiology and Kluyver Centre for Genomics of Industrial Fermentation, Utrecht University, Utrecht, The Netherlands.
Appl Environ Microbiol. 2013 Oct;79(20):6345-50. doi: 10.1128/AEM.02291-13. Epub 2013 Aug 9.
Label-free nonlinear spectral imaging microscopy (NLSM) records two-photon-excited fluorescence emission spectra of endogenous fluorophores within the specimen. Here, NLSM is introduced as a novel, minimally invasive method to analyze the metabolic state of fungal hyphae by monitoring the autofluorescence of NAD(P)H and flavin adenine dinucleotide (FAD). Moreover, the presence of melanin was analyzed by NLSM. NAD(P)H, FAD, and melanin were used as biomarkers for freshness of mushrooms of Agaricus bisporus (white button mushroom) that had been stored at 4°C for 0 to 17 days. During this period, the mushrooms did not show changes in morphology or color detectable by eye. In contrast, FAD/NAD(P)H and melanin/NAD(P)H ratios increased over time. For instance, these ratios increased from 0.92 to 2.02 and from 0.76 to 1.53, respectively, at the surface of mushroom caps that had been harvested by cutting the stem. These ratios were lower under the skin than at the surface of fresh mushrooms (0.78 versus 0.92 and 0.41 versus 0.76, respectively), indicative of higher metabolism and lower pigment formation within the fruiting body. Signals were different not only between tissues of the mushroom but also between neighboring hyphae. These data show that NLSM can be used to determine the freshness of mushrooms and to monitor the postharvest browning process at an early stage. Moreover, these data demonstrate the potential of NLSM to address a broad range of fundamental and applied microbiological processes.
无标记非线性光谱成像显微镜(NLSM)记录标本内内源性荧光团的双光子激发荧光发射光谱。在这里,NLSM 被引入为一种新的、微创方法,通过监测 NAD(P)H 和黄素腺嘌呤二核苷酸(FAD)的自发荧光来分析真菌菌丝的代谢状态。此外,还通过 NLSM 分析了黑色素的存在。NAD(P)H、FAD 和黑色素被用作 Agaricus bisporus(白蘑菇)蘑菇新鲜度的生物标志物,这些蘑菇在 4°C 下储存 0 至 17 天。在此期间,蘑菇的形态或颜色没有肉眼可见的变化。相比之下,FAD/NAD(P)H 和黑色素/NAD(P)H 比值随时间增加。例如,在从茎上切割收获的蘑菇帽表面,这些比值从 0.92 增加到 2.02,从 0.76 增加到 1.53。在蘑菇皮下,这些比值低于新鲜蘑菇(分别为 0.78 比 0.92 和 0.41 比 0.76),表明在子实体内部新陈代谢更高,色素形成更低。信号不仅在蘑菇组织之间不同,而且在相邻菌丝之间也不同。这些数据表明,NLSM 可用于确定蘑菇的新鲜度,并在早期监测收获后的褐变过程。此外,这些数据表明 NLSM 具有解决广泛的基础和应用微生物学过程的潜力。