Zhang Jiexiong, Li Yanxia, Mao Yifan, Zhang Yesheng, Zhou Botong, Liu Wei, Wang Wen, Zhang Chen
School of Ecology and Environment, Northwestern Polytechnical University, Xi'an 710072, China.
Shandong Junsheng Biotechnologies Co., Ltd., Liaocheng 252400, China.
J Fungi (Basel). 2025 Jan 18;11(1):76. doi: 10.3390/jof11010076.
Morels ( spp.), as one of the rare macroascomycetes that can be cultivated artificially, possess significant economic and scientific values. Morel cultivation is highly sensitive to elevated temperatures; however, the mechanisms of their response to heat shock remain poorly understood. This study integrated transcriptomic and quantitative proteomic analyses of two strains with different thermotolerance (labeled as strains C and D) under normal (18 °C) and high temperature (28 °C) conditions. From over 9300 transcripts and 5000 proteins, both consistency and heterogeneity were found in response to heat shock between the two strains. Both strains displayed a capacity to maintain cellular homeostasis in response to heat shock through highly expressed cell wall integrity (CWI) pathways, heat shock proteins (HSPs), and antioxidant systems. However, strain D, which exhibited stronger thermotolerance, specifically upregulated the ubiquitin ligase , thereby further promoting the expression of HSPs, which may be a key factor influencing the thermotolerance difference among strains. A conceptual model of the heat shock adaptation regulatory network in was proposed for the first time; the results provide novel insights into the thermotolerance response mechanisms of macroascomycetes and valuable resources for the breeding enhancement of thermotolerant morel strains.
羊肚菌(羊肚菌属)作为少数能够人工栽培的大型子囊菌之一,具有重要的经济和科学价值。羊肚菌栽培对温度升高高度敏感;然而,它们对热休克的响应机制仍知之甚少。本研究整合了在正常(18℃)和高温(28℃)条件下,对两株具有不同耐热性的菌株(分别标记为菌株C和菌株D)进行的转录组学和定量蛋白质组学分析。在超过9300个转录本和5000种蛋白质中,发现两株菌株在对热休克的响应中既有一致性又有差异性。两株菌株都表现出通过高度表达的细胞壁完整性(CWI)途径、热休克蛋白(HSP)和抗氧化系统来维持细胞内稳态以应对热休克的能力。然而,表现出更强耐热性的菌株D特异性地上调了泛素连接酶,从而进一步促进了热休克蛋白的表达,这可能是影响菌株间耐热性差异的关键因素。首次提出了羊肚菌热休克适应调控网络的概念模型;研究结果为大型子囊菌的耐热性响应机制提供了新的见解,并为耐热羊肚菌菌株的育种改良提供了有价值的资源。