Li Huiping, Zhu Jiachun, Li Zihao, Xu Ping, Ma Lin, Zou Yajie, Qu Shaoxuan, Wu Xiaoqin
Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing, Jiangsu, China.
Institute of Vegetable Crops, Jiangsu Key Laboratory for Horticultural Crop Genetic Improvement, Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu, China.
Front Microbiol. 2024 Jun 19;15:1387643. doi: 10.3389/fmicb.2024.1387643. eCollection 2024.
is one of the most consumed mushroom species, as it serves as a high-quality food, favors a rich secondary metabolism, and has remarkable adaptability to the environment and predators. In this study, we investigated the function of two key reactive oxygen species producing enzyme NADPH oxidase (PoNoxA and PoNoxB) in hyphae growth, metabolite production, signaling pathway activation, and immune responses to different stresses. Characterization of the Nox mutants showed that PoNoxB played an important role in the hyphal formation of the multicellular structure, while PoNoxA regulated apical dominance. The ability of to tolerate a series of abiotic stress conditions (e.g., osmotic, oxidative, membrane, and cell-wall stresses) and mechanical damage repair was enhanced with PoNoxA over-expression. PoNoxB had a greater responsibility in regulating the polysaccharide composition of the cell wall and methyl jasmonate and gibberellin GA1 biosynthesis, and improved mushroom resistance against . Moreover, mutants were involved in the jasmonate and GA signaling pathway, and toxic protein defense metabolite production. Our findings shed light on how the oyster mushroom senses stress signals and responds to adverse environments by the complex regulators of Noxs.
是最常被食用的蘑菇品种之一,因为它是一种优质食物,具有丰富的次生代谢产物,并且对环境和捕食者具有显著的适应性。在本研究中,我们调查了两种关键的活性氧产生酶烟酰胺腺嘌呤二核苷酸磷酸氧化酶(PoNoxA和PoNoxB)在菌丝生长、代谢产物产生、信号通路激活以及对不同胁迫的免疫反应中的功能。对Nox突变体的表征表明,PoNoxB在多细胞结构的菌丝形成中起重要作用,而PoNoxA调节顶端优势。PoNoxA过表达增强了其耐受一系列非生物胁迫条件(如渗透、氧化、膜和细胞壁胁迫)以及机械损伤修复的能力。PoNoxB在调节细胞壁的多糖组成以及茉莉酸甲酯和赤霉素GA1生物合成方面承担更大责任,并提高了蘑菇对……的抗性。此外,突变体参与了茉莉酸和GA信号通路以及有毒蛋白质防御代谢产物的产生。我们的研究结果揭示了平菇如何通过Noxs的复杂调节因子感知胁迫信号并应对不利环境。