Institute for Anatomy and Cell Biology, Ludwig Maximilian University of Munich, Schillerstr. 42, 80336 Munich, Germany.
Eur J Cell Biol. 2013 Feb;92(2):45-53. doi: 10.1016/j.ejcb.2012.10.003. Epub 2012 Nov 27.
Dictyostelium discoideum offers unique advantages for studying fundamental cellular processes, host-pathogen interactions as well as the molecular causes of human diseases. The organism can be easily grown in large amounts and is amenable to diverse biochemical, cell biological and genetic approaches. Throughout their life cycle Dictyostelium cells are motile, and thus are perfectly suited to study random and directed cell motility with the underlying changes in signal transduction and the actin cytoskeleton. Dictyostelium is also increasingly used for the investigation of human disease genes and the crosstalk between host and pathogen. As a professional phagocyte it can be infected with several human bacterial pathogens and used to study the infection process. The availability of a large number of knock-out mutants renders Dictyostelium particularly useful for the elucidation and investigation of host cell factors. A powerful armory of molecular genetic techniques that have been continuously expanded over the years and a well curated genome sequence, which is accessible via the online database dictyBase, considerably strengthened Dictyostelium's experimental attractiveness and its value as model organism.
盘基网柄菌为研究基本细胞过程、宿主-病原体相互作用以及人类疾病的分子病因提供了独特的优势。该生物可以很容易地大量培养,并且适用于多种生化、细胞生物学和遗传学方法。在整个生命周期中,盘基网柄菌细胞是能动的,因此非常适合研究随机和定向的细胞运动,以及信号转导和肌动蛋白细胞骨架的潜在变化。盘基网柄菌也越来越多地被用于研究人类疾病基因以及宿主和病原体之间的串扰。作为一种专业的吞噬细胞,它可以感染几种人类细菌病原体,并用于研究感染过程。大量的敲除突变体的可用性使得盘基网柄菌特别有助于阐明和研究宿主细胞因子。多年来不断扩展的大量分子遗传学技术和精心整理的基因组序列,可通过在线数据库 dictyBase 访问,极大地增强了盘基网柄菌的实验吸引力及其作为模式生物的价值。