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FISH methods in phycology: phototrophic biofilm and phytoplankton applications.

机译:FISH心理学方法:光养生物膜和浮游植物的应用。

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摘要

Many photosynthetic microorganisms, living attached to immersed substrates or free in the water column, lack distinct morphological details, are small in size and often unculturable. Thus, whole-cell fluorescence in situ hybridization (FISH) with rRNA-targeted oligonucleotide probes has become a valuable and widely used technique to identify bacteria and protists within their natural communities. FISH methods not only allow direct, cultivation independent determination of community composition, but provide spatio-temporal quantification of microorganisms in the environment. Coupling of FISH techniques to Confocal Laser Scanning Microscopy (CLSM) has become essential for the assessment of diversity and structural integrity in three-dimensional complex biofilm samples. Combining FISH with microautoradiography (FISH-MAR) and microsensors also opens new perspectives in microbial ecology by providing new tools for revealing physiological properties of organisms with single-cell resolution. This paper briefly summarizes the application of FISH methods to phototrophic biofilm and phytoplankton research. The potential of DNA microarray technology in phycological research is highlighted, especially for the fast and accurate identification of HAB (Harmful Algal Bloom) species in marine phytoplankton. Some CLSM and FISH data from phototrophic biofilms from an Italian wastewater treatment plant are shown.
机译:许多光合作用微生物生活在浸没的基质上,或游离在水柱中,缺乏明显的形态学细节,体积小且通常不可培养。因此,以rRNA为靶点的寡核苷酸探针进行全细胞荧光原位杂交(FISH)已成为一种有价值且广泛使用的技术,可用于识别其自然群落中的细菌和原生生物。 FISH方法不仅可以直接,独立于培养确定群落组成,而且还可以对环境中的微生物进行时空定量分析。 FISH技术与共聚焦激光扫描显微镜(CLSM)的耦合对于评估三维复杂生物膜样品的多样性和结构完整性已变得至关重要。通过将FISH与微放射自显影(FISH-MAR)和微传感器相结合,还提供了新的工具来揭示具有单细胞分辨率的生物的生理特性,从而为微生物生态学开辟了新的前景。本文简要总结了FISH方法在光养生物膜和浮游植物研究中的应用。着重强调了DNA微阵列技术在植物学研究中的潜力,尤其是对于快速,准确地识别海洋浮游植物中HAB(有害藻华)物种的潜力。显示了来自意大利废水处理厂的光养生物膜的一些CLSM和FISH数据。

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