Department of Microbiology and Molecular Biology, College of Bioscience and Biotechnology, Chungnam National University, Daejeon, 34134, South Korea.
Curr Genet. 2021 Aug;67(4):613-630. doi: 10.1007/s00294-021-01163-6. Epub 2021 Mar 8.
Aspergillus nidulans produces cleistothecia as sexual reproductive organs in a process affected by genetic and external factors. To gain a deeper insight into A. nidulans sexual development, we performed comparative proteome analyses based on the wild type developmental periods. We identified sexual development-specific proteins with a more than twofold increase in production during hypoxia or the sexual period compared to the asexual period. Among the sexual development-specific proteins analyzed by gene-deletion experiments and functional assays, MpdA, a putative mannitol-1-phosphate 5-dehydrogenase, plays multiple roles in growth and differentiation of A. nidulans. The most distinct mpdA-deletion phenotype was ascosporogenesis failure. Genetic mpdA deletion resulted in small cleistothecia with no functional ascospores. Transcriptional analyses indicated that MpdA modulates the expression of key development- and meiosis-regulatory genes during sexual development. The mpdA deletion increased hyphal branching and decreased conidial heat resistance. Mannitol production in conidia showed no difference, whereas it was decreased in mycelia and sexual cultures. Addition of mannitol during vegetative growth recovered the defects in conidial heat resistance and ascospore genesis. Taken together, these results indicate that MpdA plays an important role in sexual development, hyphal branching, and conidial heat resistance in Aspergillus nidulans.
构巢曲霉在受遗传和外部因素影响的过程中产生闭囊壳作为有性生殖器官。为了更深入地了解构巢曲霉的有性发育,我们基于野生型发育阶段进行了比较蛋白质组分析。我们鉴定了在缺氧或有性期与无性期相比,产量增加超过两倍的有性发育特异性蛋白。在通过基因缺失实验和功能测定分析的有性发育特异性蛋白中,MpdA,一种假定的甘露醇-1-磷酸 5-脱氢酶,在构巢曲霉的生长和分化中发挥多种作用。最明显的 mpdA 缺失表型是子囊果发生失败。遗传 mpdA 缺失导致小的闭囊壳,没有功能性子囊孢子。转录分析表明,MpdA 调节有性发育过程中关键发育和减数分裂调节基因的表达。mpdA 缺失增加了菌丝分枝,降低了分生孢子的耐热性。分生孢子中的甘露醇产量没有差异,而在菌丝和有性培养物中则减少。在营养生长期间添加甘露醇可恢复分生孢子耐热性和子囊果发生的缺陷。总之,这些结果表明 MpdA 在构巢曲霉的有性发育、菌丝分枝和分生孢子耐热性中发挥重要作用。