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空间结构化酵母群落:利用组学工具理解结构形成与调控

Spatially structured yeast communities: Understanding structure formation and regulation with omics tools.

作者信息

Palková Zdena, Váchová Libuše

机构信息

Department of Genetics and Microbiology, Faculty of Science, Charles University, BIOCEV, 12800 Prague, Czech Republic.

Institute of Microbiology of the Czech Academy of Sciences, BIOCEV, 14220 Prague, Czech Republic.

出版信息

Comput Struct Biotechnol J. 2021 Oct 9;19:5613-5621. doi: 10.1016/j.csbj.2021.10.012. eCollection 2021.

Abstract

Single-celled yeasts form spatially structured populations - colonies and biofilms, either alone (single-species biofilms) or in cooperation with other microorganisms (mixed-species biofilms). Within populations, yeast cells develop in a coordinated manner, interact with each other and differentiate into specialized cell subpopulations that can better adapt to changing conditions (e.g. by reprogramming metabolism during nutrient deficiency) or protect the overall population from external influences (e.g. via extracellular matrix). Various omics tools together with specialized techniques for separating differentiated cells and in situ microscopy have revealed important processes and cell interactions in these structures, which are summarized here. Nevertheless, current knowledge is still only a small part of the mosaic of complexity and diversity of the multicellular structures that yeasts form in different environments. Future challenges include the use of integrated multi-omics approaches and a greater emphasis on the analysis of differentiated cell subpopulations with specific functions.

摘要

单细胞酵母会形成空间结构群体——菌落和生物膜,既可以单独形成(单物种生物膜),也可以与其他微生物合作形成(混合物种生物膜)。在群体内部,酵母细胞以协调的方式生长,相互作用,并分化为专门的细胞亚群,这些亚群能够更好地适应不断变化的条件(例如在营养缺乏时通过重新编程新陈代谢),或者保护整个群体免受外部影响(例如通过细胞外基质)。各种组学工具以及用于分离分化细胞的专门技术和原位显微镜技术揭示了这些结构中的重要过程和细胞相互作用,本文对此进行了总结。然而,目前的知识仍然只是酵母在不同环境中形成的多细胞结构的复杂性和多样性拼图中的一小部分。未来的挑战包括使用综合多组学方法,并更加注重对具有特定功能的分化细胞亚群进行分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c06/8529026/1237f1f3263d/gr1.jpg

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