Label-Free Proteomics Reveals the Molecular Mechanism of Subculture Induced Strain Degeneration and Discovery of Indicative Index for Degeneration in Pleurotus ostreatus
Weiwei Zhu, Jinbo Hu, Jingliang Chi, Yang Li, Bing Yang, Wenli Hu, Fei Chen, Chong Xu, Linshan Chai, Yongming Bao
Journal:MOLECULES
IF:3.27
DOI:10.3390/molecules25214920
PMID:33114310
Published:2020-10-24
research field:蛋白质组学真菌学遗传学
Abstract
Pleurotus ostreatusis one of the widely cultivated edible fungi across the world. Mycelial subculture is an indispensable part in the process of cultivation and production for all kinds of edible fungi. However, successive subcultures usually lead to strain degeneration. The degenerated strains usually have a decrease in stress resistance, yield, and an alteration in fruiting time, which will subsequently result in tremendous economic loss. Through proteomic analysis, we identified the differentially expressed proteins (DEPs) in the mycelium ofPleurotus ostreatusfrom different subcultured generations. We found that the DNA damage repair system, especially the double-strand breaks (DSBs), repairs via homologous recombination, was impaired in the subcultured mycelium, and gradual accumulation of the DSBs would lead to the strain degeneration after successive subculture. The TUNEL assay further confirmed our finding about the DNA breaks in the subcultured mycelium. Interestingly, the enzyme activity of laccase, carboxylic ester hydrolase, α-galactosidase, and catalase directly related to passage number could be used as the characteristic index for strain degeneration determination. Our results not only reveal for the first time at the molecular level that genomic instability is the cause of degeneration, but also provide an applicable approach for monitoring strain degeneration in process of edible fungi cultivation and production.Keywords:pleurotus ostreatus;proteomics;subculture;strain degeneration;DNA damage repair;homologous recombination
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