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The pleiotropic functions of intracellular hydrophobins in aerial hyphae and fungal spores

PLoS Genet. 2021-11; 
Feng Cai, Zheng Zhao, Renwei Gao, Peijie Chen, Mingyue Ding, Siqi Jiang, Zhifei Fu, Pingyong Xu, Komal Chenthamara, Qirong Shen, Günseli Bayram Akcapinar, Irina S Druzhinina
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Proteins, Expression, Isolation and Analysis The target proteins were visualized following the protocol supplied with Clarity Western ECL (Bio-Rad, USA) or with the ONE-HOUR Western Standard Kit (Genscript, China). Get A Quote

摘要

Higher fungi can rapidly produce large numbers of spores suitable for aerial dispersal. The efficiency of the dispersal and spore resilience to abiotic stresses correlate with their hydrophobicity provided by the unique amphiphilic and superior surface-active proteins-hydrophobins (HFBs)-that self-assemble at hydrophobic/hydrophilic interfaces and thus modulate surface properties. Using the HFB-enriched mold Trichoderma (Hypocreales, Ascomycota) and the HFB-free yeast Pichia pastoris (Saccharomycetales, Ascomycota), we revealed that the rapid release of HFBs by aerial hyphae shortly prior to conidiation is associated with their intracellular accumulation in vacuoles and/or lipid-enriched organelles. The occasio... More

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