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A Comparative Transcriptome Analysis Reveals Physiological Maturation Properties of Mycelia in Pleurotus tuoliensis

机译:比较转录组分析显示菌丝菌菌菌菌菌菌菌菌的生理成熟特性

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Pleurotus tuoliensis is a precious edible fungus with extremely high nutritive and medicinal value. The cultivation period of P. tuoliensis is longer than those of other Pleurotus species, which is mainly due to a longer mycelium physiological maturation period (30–60 days). Currently, the molecular processes underlying physiological maturation of the mycelium remain unclear. We performed a comparative transcriptomic analysis of immature and mature mycelia using RNA-seq. De novo transcriptome assembly resulted in identification of 17,030 unigenes. 451 differentially expressed genes—including those encoding nucleoside diphosphate kinase (NDPK), glycoside hydrolase family proteins, exopolygalacturonase, and versatile peroxidases—were identified. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses revealed that nucleotide synthesis and energy metabolism are highly active during the physiological maturation of mycelia, and genes related to these pathways were significantly upregulated in mature mycelia. NDPK is predicted to be essential for mycelia maturation. Our findings contribute to a comprehensive understanding of mycelia maturation in a commercially important fungal species. Future efforts will focus on the function of NDPK and the mechanism by which it regulates mycelia maturation.
机译:Pleurotus tuoliensis是一种珍贵的食用菌,具有极高的营养和药用价值。 P. tuoliensis的培养期比其他胸膜型物种的培养期,主要是由于菌丝体生理成熟期(30-60天)较长。目前,菌丝体的生理成熟的分子过程仍然不清楚。我们使用RNA-SEQ进行了对未成熟和成熟菌丝体的比较转录组分析。 De Novo转录组组件导致鉴定为17,030个unigenes。 451鉴别表达基因 - 包括编码核苷二磷酸激酶(NDPK),糖苷水解酶家族蛋白,外透核酶和通酯过氧化物酶的那些。基因本体(GO)和京都基因组(KEGG)分析显示,核苷酸合成和能量代谢在菌丝体的生理成熟期间高度活跃,与这些途径相关的基因在成熟的菌丝体中显着上调。预计NDPK对于Mycelia成熟至关重要。我们的研究结果有助于全面了解在商业上重要的真菌物种中的Mycelia成熟。未来的努力将专注于NDPK的功能和它调节菌丝体成熟的机制。

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