Fleissner André, Simonin Anna R, Glass N Louise
Department of Plant and Microbial Biology, The University of California, Berkeley, CA, USA.
Methods Mol Biol. 2008;475:21-38. doi: 10.1007/978-1-59745-250-2_2.
Hyphal fusion occurs at different stages in the vegetative and sexual life cycle of filamentous fungi. Similar to cell fusion in other organisms, the process of hyphal fusion requires cell recognition, adhesion, and membrane merger. Analysis of the hyphal fusion process in the model organism Neurospora crassa using fluorescence and live cell imaging as well as cell and molecular biological techniques has begun to reveal its complex cellular regulation. Several genes required for hyphal fusion have been identified in recent years. While some of these genes are conserved in other eukaryotic species, other genes encode fungal-specific proteins. Analysis of fusion mutants in N. crassa has revealed that genes previously identified as having nonfusion-related functions in other systems have novel hyphal fusion functions in N. crassa. Understanding the molecular basis of cell fusion in filamentous fungi provides a paradigm for cell communication and fusion in eukaryotic organisms. Furthermore, the physiological and developmental roles of hyphal fusion are not understood in these organisms; identifying these mechanisms will provide insight into environmental adaptation.
菌丝融合发生在丝状真菌的营养和有性生活周期的不同阶段。与其他生物体中的细胞融合类似,菌丝融合过程需要细胞识别、黏附以及膜融合。利用荧光和活细胞成像以及细胞和分子生物学技术对模式生物粗糙脉孢菌中的菌丝融合过程进行分析,已开始揭示其复杂的细胞调控机制。近年来,已鉴定出几个菌丝融合所需的基因。虽然其中一些基因在其他真核物种中是保守的,但其他基因编码真菌特异性蛋白。对粗糙脉孢菌中融合突变体的分析表明,以前在其他系统中被鉴定为具有非融合相关功能的基因在粗糙脉孢菌中具有新的菌丝融合功能。了解丝状真菌中细胞融合的分子基础为真核生物中的细胞通讯和融合提供了一个范例。此外,这些生物体中菌丝融合的生理和发育作用尚不清楚;确定这些机制将有助于深入了解环境适应性。