真菌无创活体细胞全图成像的适用性。

IF 1.7 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS
Susanne Fritsche , Felix Fronek , Robert L. Mach , Matthias G. Steiger
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引用次数: 0

摘要

无需荧光标记或染色就能获取细胞结构的三维(3D)信息,这使全图成像技术成为细胞生物学的强大工具。它通过测量折射率(RI)提供有价值的见解,折射率是描述穿过活细胞的光的相位延迟的光学参数。在这里,我们展示了与工业相关的子囊真菌的全光照成像,并研究了它们的发育和形态发生。其中包括黑曲霉的分生孢子萌发、亚细胞动力学以及菌丝生长过程中的细胞质流动。此外,还利用全图显微镜捕捉了 Aureobasidium pullulans 细胞的生长和出芽。结合荧光成像,可在三维 RI 重建图像中锁定并分析脂滴、液泡、线粒体网络和细胞核。虽然脂滴和液泡可以归入特定的 RI 模式,但线粒体和细胞核并不明显。我们发现,RI 测量灵敏度较低的原因是真菌细胞壁对显微镜的照明光起到了额外的屏障作用。在对表达 GFP 标记组蛋白 H2A 的黑僵菌菌丝和原生质体进行细胞壁消化后,可以通过非侵入式 RI 测量确定细胞核的位置。此外,我们还利用耦合荧光显微镜在单细胞水平上观察了未受干扰的菌丝段中细胞核的迁移和生长过程中的复制。由于细胞大小的限制,在酿酒酵母和毛霉中进行详细的微形态研究具有挑战性。总之,全息图为实时探索动态细胞过程开辟了新的途径,并能从新的角度对真菌进行可视化研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applicability of non-invasive and live-cell holotomographic imaging on fungi

The ability to acquire three-dimensional (3D) information of cellular structures without the need for fluorescent tags or staining makes holotomographic imaging a powerful tool in cellular biology. It provides valuable insights by measuring the refractive index (RI), an optical parameter describing the phase delay of light that passes through the living cell.

Here, we demonstrate holotomographic imaging on industrial relevant ascomycete fungi and study their development and morphogenesis. This includes conidial germination, subcellular dynamics, and cytoplasmic flow during hyphal growth in Aspergillus niger. In addition, growth and budding of Aureobasidium pullulans cells are captured using holotomographic microscopy. Coupled to fluorescence imaging, lipid droplets, vacuoles, the mitochondrial network, and nuclei are targeted and analyzed in the 3D RI reconstructed images. While lipid droplets and vacuoles can be assigned to a specific RI pattern, mitochondria and nuclei were not pronounced. We show, that the lower sensitivity of RI measurements derives from the fungal cell wall that acts as an additional barrier for the illumination light of the microscope. After cell wall digest of hyphae and protoplast formation of A. niger expressing GFP-tagged histone H2A, location of nuclei could be determined by non-invasive RI measurements. Furthermore, we used coupled fluorescence microscopy to observe migration of nuclei in unperturbed hyphal segments and duplication during growth on a single-cell level. Detailed micromorphological studies in Saccharomyces cerevisiae and Trichoderma reesei are challenging due to cell size restrictions.

Overall, holotomography opens up new avenues for exploring dynamic cellular processes in real time and enables the visualization of fungi from a new perspective.

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来源期刊
Journal of microbiological methods
Journal of microbiological methods 生物-生化研究方法
CiteScore
4.30
自引率
4.50%
发文量
151
审稿时长
29 days
期刊介绍: The Journal of Microbiological Methods publishes scholarly and original articles, notes and review articles. These articles must include novel and/or state-of-the-art methods, or significant improvements to existing methods. Novel and innovative applications of current methods that are validated and useful will also be published. JMM strives for scholarship, innovation and excellence. This demands scientific rigour, the best available methods and technologies, correctly replicated experiments/tests, the inclusion of proper controls, calibrations, and the correct statistical analysis. The presentation of the data must support the interpretation of the method/approach. All aspects of microbiology are covered, except virology. These include agricultural microbiology, applied and environmental microbiology, bioassays, bioinformatics, biotechnology, biochemical microbiology, clinical microbiology, diagnostics, food monitoring and quality control microbiology, microbial genetics and genomics, geomicrobiology, microbiome methods regardless of habitat, high through-put sequencing methods and analysis, microbial pathogenesis and host responses, metabolomics, metagenomics, metaproteomics, microbial ecology and diversity, microbial physiology, microbial ultra-structure, microscopic and imaging methods, molecular microbiology, mycology, novel mathematical microbiology and modelling, parasitology, plant-microbe interactions, protein markers/profiles, proteomics, pyrosequencing, public health microbiology, radioisotopes applied to microbiology, robotics applied to microbiological methods,rumen microbiology, microbiological methods for space missions and extreme environments, sampling methods and samplers, soil and sediment microbiology, transcriptomics, veterinary microbiology, sero-diagnostics and typing/identification.
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