发酵
角鲨烯单加氧酶
生物
菌丝体
生物化学
生物合成
基因
基因表达
食品科学
酶
生物量(生态学)
植物
农学
作者
Hamza Armghan Noushahi,Aamir Hamid Khan,Hamza Khan,Marcin Kiedrzyński,Adnan Akbar,Raheel Shahzad,Sri Koerniati,Abdulwahed Fahad Alrefaei,Shaohua Shu
标识
DOI:10.1093/lambio/ovae054
摘要
Abstract Wolfiporia cocos, a versatile fungus acclaimed for its nutritional and therapeutic benefits in Traditional Chinese Medicine, holds immense potential for pharmaceutical and industrial applications. In this study, we aimed to optimize liquid fermentation techniques and culture medium composition to maximize mycelial biomass (MB) yield, pachymic acid (PA) concentration, and overall PA production. Additionally, we investigated the molecular basis of our findings by quantifying the expression levels of genes associated with PA and MB biosynthesis using quantitative real-time polymerase chain reaction. Under the optimized fermentation conditions, significant results were achieved, with maximum MB reaching 6.68 g l−1, PA content peaking at 1.25 mg g−1, and a total PA yield of 4.76 g l−1. Notably, among the four examined genes, squalene monooxygenase, exhibited enhanced expression at 0.06 ratio under the optimized conditions. Furthermore, within the realm of carbohydrate-active enzymes, the glycoside hydrolases 16 family displayed elevated expression levels at 21 ratios, particularly during MB production. This study enhances understanding of genetic mechanism governing MB and PA production in W. cocos, highlighting the roles of squalene monooxygenase and glycoside hydrolases 16 carbohydrate-active enzymes.
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