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一种丝裂原活化蛋白激酶PoxMK1介导草酸青霉中植物生物质降解酶的产生、营养生长和色素生物合成的调控。

A mitogen-activated protein kinase PoxMK1 mediates regulation of the production of plant-biomass-degrading enzymes, vegetative growth, and pigment biosynthesis in Penicillium oxalicum.

作者信息

Ma Bo, Ning Yuan-Ni, Li Cheng-Xi, Tian Di, Guo Hao, Pang Xiao-Ming, Luo Xue-Mei, Zhao Shuai, Feng Jia-Xun

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangxi Research Center for Microbial and Enzyme Engineering Technology, College of Life Science and Technology, Guangxi University, 100 Daxue Road, Nanning, 530004, Guangxi, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2021 Jan;105(2):661-678. doi: 10.1007/s00253-020-11020-0. Epub 2021 Jan 6.

Abstract

Mitogen-activated protein kinase (MAPK) cascades are broadly conserved and play essential roles in multiple cellular processes, including fungal development, pathogenicity, and secondary metabolism. Their function, however, also exhibits species and strain specificity. Penicillium oxalicum secretes plant-biomass-degrading enzymes (PBDEs) that contribute to the carbon cycle in the natural environment and to utilization of lignocellulose in industrial processes. However, knowledge of the MAPK pathway in P. oxalicum has been relatively limited. In this study, comparative transcriptomic analysis of P. oxalicum, cultured on different carbon sources, found ten putative kinase genes with significantly modified transcriptional levels. Six of these putative kinase genes were knocked out in the parental strain ∆PoxKu70, and deletion of the gene, Fus3/Kss1-like PoxMK1 (POX00158), resulted in the largest reduction (91.1%) in filter paper cellulase production. Further tests revealed that the mutant ∆PoxMK1 lost 37.1 to 92.2% of PBDE production, under both submerged- and solid-state fermentation conditions, compared with ∆PoxKu70. In addition, the mutant ∆PoxMK1 had reduced vegetative growth and increased pigment biosynthesis. Comparative transcriptomic analysis showed that PoxMK1 deletion from P. oxalicum downregulated the expression of major PBDE genes and known regulatory genes such as PoxClrB and PoxCxrB, whereas the transcription of pigment biosynthesis-related genes was upregulated. Comparative phosphoproteomic analysis revealed that PoxMK1 deletion considerably modified phosphorylation of key transcription- and signal transduction-associated proteins, including transcription factors Mcm1 and Atf1, RNA polymerase II subunits Rpb1 and Rpb9, MAPK-associated Hog1 and Ste7, and cyclin-dependent kinase Kin28. These findings provide novel insights into understanding signal transduction and regulation of PBDE gene expression in fungi.Key points• PoxMK1 is involved in expression of PBDE- and pigment synthesis-related genes.• PoxMK1 is required for vegetative growth of P. oxalicum.• PoxMK1 is involved in phosphorylation of key TFs, kinases, and RNA polymerase II.

摘要

丝裂原活化蛋白激酶(MAPK)级联反应在生物界广泛存在,并在多种细胞过程中发挥重要作用,包括真菌发育、致病性和次级代谢。然而,其功能也表现出物种和菌株特异性。草酸青霉分泌植物生物质降解酶(PBDEs),这些酶有助于自然环境中的碳循环以及工业过程中木质纤维素的利用。然而,关于草酸青霉中MAPK途径的了解相对有限。在本研究中,对在不同碳源上培养的草酸青霉进行比较转录组分析,发现了10个推定的激酶基因,其转录水平有显著改变。在亲本菌株∆PoxKu70中敲除了其中6个推定的激酶基因,其中Fus3/Kss1样的PoxMK1(POX00158)基因缺失导致滤纸纤维素酶产量下降幅度最大(91.1%)。进一步测试表明,与∆PoxKu70相比,突变体∆PoxMK1在深层发酵和固态发酵条件下PBDE产量均损失了37.1%至92.2%。此外,突变体∆PoxMK1的营养生长减少,色素生物合成增加。比较转录组分析表明,从草酸青霉中缺失PoxMK1会下调主要PBDE基因以及已知调控基因如PoxClrB和PoxCxrB的表达,而色素生物合成相关基因的转录则上调。比较磷酸化蛋白质组分析表明,缺失PoxMK1会显著改变关键转录和信号转导相关蛋白的磷酸化,包括转录因子Mcm1和Atf1、RNA聚合酶II亚基Rpb1和Rpb9、MAPK相关的Hog1和Ste7以及细胞周期蛋白依赖性激酶Kin28。这些发现为理解真菌中PBDE基因表达的信号转导和调控提供了新的见解。

要点

• PoxMK1参与PBDE和色素合成相关基因的表达。

• PoxMK1是草酸青霉营养生长所必需的。

• PoxMK1参与关键转录因子、激酶和RNA聚合酶II的磷酸化。

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