Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences &Peking Union Medical College, Beijing 100193 P. R. China.
Pharmaceutical department of China-Japan Friendship Hospital, Beijing 100029 P. R. China.
Sci Rep. 2017 Jan 30;7:41283. doi: 10.1038/srep41283.
Understanding the initiation and maturing mechanisms is important for rational manipulating sclerotia differentiation and growth from hypha of Polyporus umbellatus. Proteomes in P. umbellatus sclerotia and hyphae at initial, developmental and mature phases were studied. 1391 proteins were identified by nano-liquid chromatograph-mass spectrometry (LC-MS) in Data Dependant Acquisition mode, and 1234 proteins were quantified successfully by Sequential Window Acquisition of all THeoretical fragment ion spectra-MS (SWATH-MS) technology. There were 347 differentially expressed proteins (DEPs) in sclerotia at initial phase compared with those in hypha, and the DEP profiles were dynamically changing with sclerotia growth. Oxidative stress (OS) in sclerotia at initial phase was indicated by the repressed proteins of respiratory chain, tricarboxylic acid cycle and the activation of glycolysis/gluconeogenesis pathways were determined based on DEPs. The impact of glycolysis/gluconeogenesis on sclerotium induction was further verified by glycerol addition assays, in which 5% glycerol significantly increased sclerotial differentiation rate and biomass. It can be speculated that OS played essential roles in triggering sclerotia differentiation from hypha of P. umbellatus, whereas antioxidant activity associated with glycolysis is critical for sclerotia growth. These findings reveal a mechanism for sclerotial differentiation in P. umbellatus, which may also be applicable for other fungi.
理解其起始和成熟机制对于理性地操纵香菇菌丝体分化和生长为菌核至关重要。本研究对香菇菌核和菌丝体在起始、发育和成熟阶段的蛋白质组进行了研究。通过纳升液相色谱-质谱(LC-MS)在数据依赖型采集模式下鉴定到 1391 种蛋白质,通过序贯窗口采集所有理论碎片离子谱-MS(SWATH-MS)技术成功定量了 1234 种蛋白质。与菌丝体相比,在菌核起始阶段有 347 种差异表达蛋白(DEPs),且 DEP 谱随菌核生长而动态变化。菌核起始阶段的氧化应激(OS)由呼吸链、三羧酸循环和糖酵解/糖异生途径的抑制蛋白表明,基于 DEPs 确定了糖酵解/糖异生途径的激活。通过甘油添加实验进一步验证了糖酵解/糖异生对菌核诱导的影响,其中 5%甘油显著提高了菌核的分化率和生物量。可以推测,OS 在触发香菇菌丝体分化为菌核中起重要作用,而与糖酵解相关的抗氧化活性对菌核生长至关重要。这些发现揭示了香菇菌核分化的机制,这可能也适用于其他真菌。